{"id":48113,"date":"2025-08-06T15:23:20","date_gmt":"2025-08-06T15:23:20","guid":{"rendered":"https:\/\/www.newsbeep.com\/au\/48113\/"},"modified":"2025-08-06T15:23:20","modified_gmt":"2025-08-06T15:23:20","slug":"limited-carbon-sequestration-potential-from-global-ecosystem-restoration","status":"publish","type":"post","link":"https:\/\/www.newsbeep.com\/au\/48113\/","title":{"rendered":"Limited carbon sequestration potential from global ecosystem restoration"},"content":{"rendered":"<p class=\"c-article-references__text\" id=\"ref-CR1\">Nature Restoration Law (European Commission, 2023); <a href=\"https:\/\/environment.ec.europa.eu\/topics\/nature-and-biodiversity\/nature-restoration-law_en\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"https:\/\/environment.ec.europa.eu\/topics\/nature-and-biodiversity\/nature-restoration-law_en\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/environment.ec.europa.eu\/topics\/nature-and-biodiversity\/nature-restoration-law_en<\/a><\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR2\">Holl, K. D. &amp; Brancalion, P. H. Tree planting is not a simple solution. Science 368, 580\u2013581 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3cXovFCqtr8%3D\" aria-label=\"CAS reference 2\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 2\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Tree%20planting%20is%20not%20a%20simple%20solution&amp;journal=Science&amp;volume=368&amp;pages=580-581&amp;publication_year=2020&amp;author=Holl%2CKD&amp;author=Brancalion%2CPH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR3\">Fischer, J., Riechers, M., Loos, J., Martin-Lopez, B. &amp; Temperton, V. M. Making the UN decade on ecosystem restoration a social-ecological endeavour. Trends Ecol. Evol. 36, 20\u201328 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 3\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Making%20the%20UN%20decade%20on%20ecosystem%20restoration%20a%20social-ecological%20endeavour&amp;journal=Trends%20Ecol.%20Evol.&amp;volume=36&amp;pages=20-28&amp;publication_year=2021&amp;author=Fischer%2CJ&amp;author=Riechers%2CM&amp;author=Loos%2CJ&amp;author=Martin-Lopez%2CB&amp;author=Temperton%2CVM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR4\">Smith, P. et al. Biophysical and economic limits to negative CO2 emissions. Nat. Clim. Change 6, 42\u201350 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC2MXhvFyks7bP\" aria-label=\"CAS reference 4\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 4\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Biophysical%20and%20economic%20limits%20to%20negative%20CO2%20emissions&amp;journal=Nat.%20Clim.%20Change&amp;volume=6&amp;pages=42-50&amp;publication_year=2016&amp;author=Smith%2CP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR5\">Cook-Patton, S. C. et al. Protect, manage and then restore lands for climate mitigation. Nat. Clim. Change 11, 1027\u20131034 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 5\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Protect%2C%20manage%20and%20then%20restore%20lands%20for%20climate%20mitigation&amp;journal=Nat.%20Clim.%20Change&amp;volume=11&amp;pages=1027-1034&amp;publication_year=2021&amp;author=Cook-Patton%2CSC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR6\">Nolan, C. J., Field, C. B. &amp; Mach, K. J. Constraints and enablers for increasing carbon storage in the terrestrial biosphere. Nat. Rev. Earth Environ. 2, 436\u2013446 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 6\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Constraints%20and%20enablers%20for%20increasing%20carbon%20storage%20in%20the%20terrestrial%20biosphere&amp;journal=Nat.%20Rev.%20Earth%20Environ.&amp;volume=2&amp;pages=436-446&amp;publication_year=2021&amp;author=Nolan%2CCJ&amp;author=Field%2CCB&amp;author=Mach%2CKJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR7\">Walker, W. S. et al. The global potential for increased storage of carbon on land. Proc. Natl Acad. Sci. USA 119, e2111312119 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XhsF2jtbnF\" aria-label=\"CAS reference 7\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 7\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20global%20potential%20for%20increased%20storage%20of%20carbon%20on%20land&amp;journal=Proc.%20Natl%20Acad.%20Sci.%20USA&amp;volume=119&amp;publication_year=2022&amp;author=Walker%2CWS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR8\">Fuss, S. et al. Betting on negative emissions. Nat. Clim. Change 4, 850\u2013853 (2014).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC2cXhsFyhsrjN\" aria-label=\"CAS reference 8\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 8\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Betting%20on%20negative%20emissions&amp;journal=Nat.%20Clim.%20Change&amp;volume=4&amp;pages=850-853&amp;publication_year=2014&amp;author=Fuss%2CS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR9\">Bastin, J. F. et al. The global tree restoration potential. Science 365, 76\u201379 (2019).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC1MXhtlWjtbnJ\" aria-label=\"CAS reference 9\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 9\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20global%20tree%20restoration%20potential&amp;journal=Science&amp;volume=365&amp;pages=76-79&amp;publication_year=2019&amp;author=Bastin%2CJF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR10\">Strassburg, B. B. et al. Global priority areas for ecosystem restoration. Nature 586, 724\u2013729 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3cXitFKlu7%2FF\" aria-label=\"CAS reference 10\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 10\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Global%20priority%20areas%20for%20ecosystem%20restoration&amp;journal=Nature&amp;volume=586&amp;pages=724-729&amp;publication_year=2020&amp;author=Strassburg%2CBB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR11\">Lewis, S. L., Mitchard, E. T., Prentice, C., Maslin, M. &amp; Poulter, B. Comment on \u2018the global tree restoration potential\u2019. Science 366, eaaz0388 (2019).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC1MXhvFyntr3F\" aria-label=\"CAS reference 11\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 11\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Comment%20on%20%E2%80%98the%20global%20tree%20restoration%20potential%E2%80%99&amp;journal=Science&amp;volume=366&amp;publication_year=2019&amp;author=Lewis%2CSL&amp;author=Mitchard%2CET&amp;author=Prentice%2CC&amp;author=Maslin%2CM&amp;author=Poulter%2CB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR12\">Veldman, J. W. et al. Comment on \u2018the global tree restoration potential\u2019. Science 366, eaay7976 (2019).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 12\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Comment%20on%20%E2%80%98the%20global%20tree%20restoration%20potential%E2%80%99&amp;journal=Science&amp;volume=366&amp;publication_year=2019&amp;author=Veldman%2CJW\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR13\">T\u00f6lgyesi, C. et al. Underground deserts below fertility islands? Woody species desiccate lower soil layers in sandy drylands. Ecography 43, 848\u2013859 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 13\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Underground%20deserts%20below%20fertility%20islands%3F%20Woody%20species%20desiccate%20lower%20soil%20layers%20in%20sandy%20drylands&amp;journal=Ecography&amp;volume=43&amp;pages=848-859&amp;publication_year=2020&amp;author=T%C3%B6lgyesi%2CC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR14\">Aguirre-Guti\u00e9rrez, J., Stevens, N. &amp; Berenguer, E. Valuing the functionality of tropical ecosystems beyond carbon. Trends Ecol. Evol. 38, 1109\u20131111 (2023).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 14\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Valuing%20the%20functionality%20of%20tropical%20ecosystems%20beyond%20carbon&amp;journal=Trends%20Ecol.%20Evol.&amp;volume=38&amp;pages=1109-1111&amp;publication_year=2023&amp;author=Aguirre-Guti%C3%A9rrez%2CJ&amp;author=Stevens%2CN&amp;author=Berenguer%2CE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR15\">Dass, P., Houlton, B. Z., Wang, Y. &amp; Warlind, D. Grasslands may be more reliable carbon sinks than forests in California. Environ. Res. Lett. 13, 074027 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 15\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Grasslands%20may%20be%20more%20reliable%20carbon%20sinks%20than%20forests%20in%20California&amp;journal=Environ.%20Res.%20Lett.&amp;volume=13&amp;publication_year=2018&amp;author=Dass%2CP&amp;author=Houlton%2CBZ&amp;author=Wang%2CY&amp;author=Warlind%2CD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR16\">Pellegrini, A. F. et al. Soil carbon storage capacity of drylands under altered fire regimes. Nat. Clim. Change 13, 1089\u20131094 (2023).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3sXitVeqsrjJ\" aria-label=\"CAS reference 16\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 16\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Soil%20carbon%20storage%20capacity%20of%20drylands%20under%20altered%20fire%20regimes&amp;journal=Nat.%20Clim.%20Change&amp;volume=13&amp;pages=1089-1094&amp;publication_year=2023&amp;author=Pellegrini%2CAF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR17\">Stevens, N. &amp; Bond, W. J. A trillion trees: carbon capture or fuelling fires? Trends Ecol. Evol. 39, 1\u20134 (2024).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3sXitF2ltbzE\" aria-label=\"CAS reference 17\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 17\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=A%20trillion%20trees%3A%20carbon%20capture%20or%20fuelling%20fires%3F&amp;journal=Trends%20Ecol.%20Evol.&amp;volume=39&amp;pages=1-4&amp;publication_year=2024&amp;author=Stevens%2CN&amp;author=Bond%2CWJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR18\">Zhou, Y. et al. Limited increases in savanna carbon stocks over decades of fire suppression. Nature 603, 445\u2013449 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XntlWnsLw%3D\" aria-label=\"CAS reference 18\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 18\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Limited%20increases%20in%20savanna%20carbon%20stocks%20over%20decades%20of%20fire%20suppression&amp;journal=Nature&amp;volume=603&amp;pages=445-449&amp;publication_year=2022&amp;author=Zhou%2CY\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR19\">Jackson, R. B. et al. Trading water for carbon with biological carbon sequestration. Science 310, 1944\u20131947 (2005).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD2MXhtlagurrF\" aria-label=\"CAS reference 19\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 19\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Trading%20water%20for%20carbon%20with%20biological%20carbon%20sequestration&amp;journal=Science&amp;volume=310&amp;pages=1944-1947&amp;publication_year=2005&amp;author=Jackson%2CRB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR20\">T\u00f6lgyesi, C., Buisson, E., Helm, A., Temperton, V. M. &amp; T\u00f6r\u00f6k, P. Urgent need for updating the slogan of global climate actions from \u2018tree planting\u2019 to \u2018restore native vegetation\u2019. Restor. Ecol. 30, e13594 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 20\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Urgent%20need%20for%20updating%20the%20slogan%20of%20global%20climate%20actions%20from%20%E2%80%98tree%20planting%E2%80%99%20to%20%E2%80%98restore%20native%20vegetation%E2%80%99&amp;journal=Restor.%20Ecol.&amp;volume=30&amp;publication_year=2022&amp;author=T%C3%B6lgyesi%2CC&amp;author=Buisson%2CE&amp;author=Helm%2CA&amp;author=Temperton%2CVM&amp;author=T%C3%B6r%C3%B6k%2CP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR21\">Wieczorkowski, J. D. &amp; Lehmann, C. E. Encroachment diminishes herbaceous plant diversity in grassy ecosystems worldwide. Glob. Change Biol. 28, 5532\u20135546 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XhvFartbzL\" aria-label=\"CAS reference 21\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 21\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Encroachment%20diminishes%20herbaceous%20plant%20diversity%20in%20grassy%20ecosystems%20worldwide&amp;journal=Glob.%20Change%20Biol.&amp;volume=28&amp;pages=5532-5546&amp;publication_year=2022&amp;author=Wieczorkowski%2CJD&amp;author=Lehmann%2CCE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR22\">Luyssaert, S. et al. Trade-offs in using European forests to meet climate objectives. Nature 562, 259\u2013262 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC1MXnslyhsLw%3D\" aria-label=\"CAS reference 22\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 22\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Trade-offs%20in%20using%20European%20forests%20to%20meet%20climate%20objectives&amp;journal=Nature&amp;volume=562&amp;pages=259-262&amp;publication_year=2018&amp;author=Luyssaert%2CS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR23\">Rohatyn, S., Yakir, D., Rotenberg, E. &amp; Carmel, Y. Limited climate change mitigation potential through forestation of the vast dryland regions. Science 377, 1436\u20131439 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XisFOrurrN\" aria-label=\"CAS reference 23\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 23\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Limited%20climate%20change%20mitigation%20potential%20through%20forestation%20of%20the%20vast%20dryland%20regions&amp;journal=Science&amp;volume=377&amp;pages=1436-1439&amp;publication_year=2022&amp;author=Rohatyn%2CS&amp;author=Yakir%2CD&amp;author=Rotenberg%2CE&amp;author=Carmel%2CY\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR24\">Pausas, J. G. &amp; Bond, W. J. Alternative biome states in terrestrial ecosystems. Trends Plant Sci. 25, 250\u2013263 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC1MXisVaqsrzJ\" aria-label=\"CAS reference 24\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 24\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Alternative%20biome%20states%20in%20terrestrial%20ecosystems&amp;journal=Trends%20Plant%20Sci.&amp;volume=25&amp;pages=250-263&amp;publication_year=2020&amp;author=Pausas%2CJG&amp;author=Bond%2CWJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR25\">Erd\u0151s, L. et al. How climate, topography, soils, herbivores, and fire control forest\u2013grassland coexistence in the Eurasian forest\u2010steppe. Biol. Rev. 97, 2195\u20132208 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 25\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=How%20climate%2C%20topography%2C%20soils%2C%20herbivores%2C%20and%20fire%20control%20forest%E2%80%93grassland%20coexistence%20in%20the%20Eurasian%20forest%E2%80%90steppe&amp;journal=Biol.%20Rev.&amp;volume=97&amp;pages=2195-2208&amp;publication_year=2022&amp;author=Erd%C5%91s%2CL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR26\">Mattos, C. R. et al. Double stress of waterlogging and drought drives forest\u2013savanna coexistence. Proc. Natl Acad. Sci. USA 120, e2301255120 (2023).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3sXhslOqsrjO\" aria-label=\"CAS reference 26\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 26\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Double%20stress%20of%20waterlogging%20and%20drought%20drives%20forest%E2%80%93savanna%20coexistence&amp;journal=Proc.%20Natl%20Acad.%20Sci.%20USA&amp;volume=120&amp;publication_year=2023&amp;author=Mattos%2CCR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR27\">Doelman, J. C. &amp; Stehfest, E. The risks of overstating the climate benefits of ecosystem restoration. Nature 609, E1\u2013E3 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XitlChsrvK\" aria-label=\"CAS reference 27\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 27\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20risks%20of%20overstating%20the%20climate%20benefits%20of%20ecosystem%20restoration&amp;journal=Nature&amp;volume=609&amp;pages=E1-E3&amp;publication_year=2022&amp;author=Doelman%2CJC&amp;author=Stehfest%2CE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR28\">Mo, L. et al. Integrated global assessment of the natural forest carbon potential. Nature 624, 92\u2013101 (2023).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3sXitlGhu7vI\" aria-label=\"CAS reference 28\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 28\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Integrated%20global%20assessment%20of%20the%20natural%20forest%20carbon%20potential&amp;journal=Nature&amp;volume=624&amp;pages=92-101&amp;publication_year=2023&amp;author=Mo%2CL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR29\">Williams, B. A. et al. Global potential for natural regeneration in deforested tropical regions. Nature 636, 131\u2013137 (2024).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB2cXitlOjtL3J\" aria-label=\"CAS reference 29\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 29\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Global%20potential%20for%20natural%20regeneration%20in%20deforested%20tropical%20regions&amp;journal=Nature&amp;volume=636&amp;pages=131-137&amp;publication_year=2024&amp;author=Williams%2CBA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR30\">IPBES in Global Assessment Report on Biodiversity and Ecosystem Services of the Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services (eds Brondizio, E. S. et al.) (IPBES Secretariat, 2019).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR31\">Zhang, J., Ma, K. &amp; Fu, B. Wetland loss under the impact of agricultural development in the Sanjiang Plain, NE China. Environ. Monit. Assess. 166, 139\u2013148 (2010).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 31\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Wetland%20loss%20under%20the%20impact%20of%20agricultural%20development%20in%20the%20Sanjiang%20Plain%2C%20NE%20China&amp;journal=Environ.%20Monit.%20Assess.&amp;volume=166&amp;pages=139-148&amp;publication_year=2010&amp;author=Zhang%2CJ&amp;author=Ma%2CK&amp;author=Fu%2CB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR32\">Mitchell, M. E. et al. Potential of water quality wetlands to mitigate habitat losses from agricultural drainage modernization. Sci. Total Environ. 838, 156358 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XhsFCktrbO\" aria-label=\"CAS reference 32\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 32\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Potential%20of%20water%20quality%20wetlands%20to%20mitigate%20habitat%20losses%20from%20agricultural%20drainage%20modernization&amp;journal=Sci.%20Total%20Environ.&amp;volume=838&amp;publication_year=2022&amp;author=Mitchell%2CME\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR33\">Anad\u00f3n, J. D., Sala, O. E. &amp; Maestre, F. T. Climate change will increase savannas at the expense of forests and treeless vegetation in tropical and subtropical Americas. J. Ecol. 102, 1363\u20131373 (2014).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 33\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Climate%20change%20will%20increase%20savannas%20at%20the%20expense%20of%20forests%20and%20treeless%20vegetation%20in%20tropical%20and%20subtropical%20Americas&amp;journal=J.%20Ecol.&amp;volume=102&amp;pages=1363-1373&amp;publication_year=2014&amp;author=Anad%C3%B3n%2CJD&amp;author=Sala%2COE&amp;author=Maestre%2CFT\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR34\">Xu, X., Jia, G., Zhang, X., Riley, W. J. &amp; Xue, Y. Climate regime shift and forest loss amplify fire in Amazonian forests. Glob. Change Biol. 26, 5874\u20135885 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 34\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Climate%20regime%20shift%20and%20forest%20loss%20amplify%20fire%20in%20Amazonian%20forests&amp;journal=Glob.%20Change%20Biol.&amp;volume=26&amp;pages=5874-5885&amp;publication_year=2020&amp;author=Xu%2CX&amp;author=Jia%2CG&amp;author=Zhang%2CX&amp;author=Riley%2CWJ&amp;author=Xue%2CY\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR35\">Flores, B. M. et al. Critical transitions in the Amazon forest system. Nature 626, 555\u2013564 (2024).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB2cXjs1aktbs%3D\" aria-label=\"CAS reference 35\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 35\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Critical%20transitions%20in%20the%20Amazon%20forest%20system&amp;journal=Nature&amp;volume=626&amp;pages=555-564&amp;publication_year=2024&amp;author=Flores%2CBM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR36\">Zeng, Y. et al. Economic and social constraints on reforestation for climate mitigation in Southeast Asia. Nat. Clim. Change 10, 842\u2013844 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 36\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Economic%20and%20social%20constraints%20on%20reforestation%20for%20climate%20mitigation%20in%20Southeast%20Asia&amp;journal=Nat.%20Clim.%20Change&amp;volume=10&amp;pages=842-844&amp;publication_year=2020&amp;author=Zeng%2CY\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR37\">Weber, J. et al. Chemistry-albedo feedbacks offset up to a third of forestation\u2019s CO2 removal benefits. Science 383, 860\u2013864 (2024).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB2cXktlylsLw%3D\" aria-label=\"CAS reference 37\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 37\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Chemistry-albedo%20feedbacks%20offset%20up%20to%20a%20third%20of%20forestation%E2%80%99s%20CO2%20removal%20benefits&amp;journal=Science&amp;volume=383&amp;pages=860-864&amp;publication_year=2024&amp;author=Weber%2CJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR38\">Ratnam, J. et al. Trees as nature-based solutions: a global south Perspective. One Earth 3, 140\u2013144 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 38\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Trees%20as%20nature-based%20solutions%3A%20a%20global%20south%20Perspective&amp;journal=One%20Earth&amp;volume=3&amp;pages=140-144&amp;publication_year=2020&amp;author=Ratnam%2CJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR39\">Fleischman, F. et al. Restoration prioritization must be informed by marginalized people. Nature 607, E5\u2013E6 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XhvVartbrL\" aria-label=\"CAS reference 39\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 39\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Restoration%20prioritization%20must%20be%20informed%20by%20marginalized%20people&amp;journal=Nature&amp;volume=607&amp;pages=E5-E6&amp;publication_year=2022&amp;author=Fleischman%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR40\">Temperton, V. M. et al. Step back from the forest and step up to the Bonn Challenge: how a broad ecological perspective can promote successful landscape restoration. Restor. Ecol. 27, 705\u2013719 (2019).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 40\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Step%20back%20from%20the%20forest%20and%20step%20up%20to%20the%20Bonn%20Challenge%3A%20how%20a%20broad%20ecological%20perspective%20can%20promote%20successful%20landscape%20restoration&amp;journal=Restor.%20Ecol.&amp;volume=27&amp;pages=705-719&amp;publication_year=2019&amp;author=Temperton%2CVM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR41\">Heilmayr, R., Echeverr\u00eda, C. &amp; Lambin, E. F. Impacts of Chilean forest subsidies on forest cover, carbon and biodiversity. Nat. Sustain. 3, 701\u2013709 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 41\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Impacts%20of%20Chilean%20forest%20subsidies%20on%20forest%20cover%2C%20carbon%20and%20biodiversity&amp;journal=Nat.%20Sustain.&amp;volume=3&amp;pages=701-709&amp;publication_year=2020&amp;author=Heilmayr%2CR&amp;author=Echeverr%C3%ADa%2CC&amp;author=Lambin%2CEF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR42\">Ramprasad, V., Joglekar, A. &amp; Fleischman, F. Plantations and pastoralists: afforestation activities make pastoralists in the Indian Himalaya vulnerable. Ecol. Soc. 25, 1 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 42\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Plantations%20and%20pastoralists%3A%20afforestation%20activities%20make%20pastoralists%20in%20the%20Indian%20Himalaya%20vulnerable&amp;journal=Ecol.%20Soc.&amp;volume=25&amp;publication_year=2020&amp;author=Ramprasad%2CV&amp;author=Joglekar%2CA&amp;author=Fleischman%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR43\">Fleischman, F. et al. Pitfalls of tree planting show why we need people-centered natural climate solutions. BioScience 70, 947\u2013950 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 43\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Pitfalls%20of%20tree%20planting%20show%20why%20we%20need%20people-centered%20natural%20climate%20solutions&amp;journal=BioScience&amp;volume=70&amp;pages=947-950&amp;publication_year=2020&amp;author=Fleischman%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR44\">Coleman, E. A. et al. Limited effects of tree planting on forest canopy cover and rural livelihoods in Northern India. Nat. Sustain. 4, 997\u20131004 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 44\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Limited%20effects%20of%20tree%20planting%20on%20forest%20canopy%20cover%20and%20rural%20livelihoods%20in%20Northern%20India&amp;journal=Nat.%20Sustain.&amp;volume=4&amp;pages=997-1004&amp;publication_year=2021&amp;author=Coleman%2CEA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR45\">Potapov, P. et al. Global maps of cropland extent and change show accelerated cropland expansion in the twenty-first century. Nat. Food 3, 19\u201328 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 45\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Global%20maps%20of%20cropland%20extent%20and%20change%20show%20accelerated%20cropland%20expansion%20in%20the%20twenty-first%20century&amp;journal=Nat.%20Food&amp;volume=3&amp;pages=19-28&amp;publication_year=2022&amp;author=Potapov%2CP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR46\">Riahi, K. et al. The Shared Socioeconomic Pathways and their energy, land use, and greenhouse gas emissions implications: an overview. Glob. Environ. Change 42, 153\u2013168 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 46\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20Shared%20Socioeconomic%20Pathways%20and%20their%20energy%2C%20land%20use%2C%20and%20greenhouse%20gas%20emissions%20implications%3A%20an%20overview&amp;journal=Glob.%20Environ.%20Change&amp;volume=42&amp;pages=153-168&amp;publication_year=2017&amp;author=Riahi%2CK\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR47\">Gidden, M. J. et al. Global emissions pathways under different socioeconomic scenarios for use in CMIP6: a dataset of harmonized emissions trajectories through the end of the century. Geosci. Model Dev. 12, 1443\u20131475 (2019).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3cXlslSmurw%3D\" aria-label=\"CAS reference 47\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 47\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Global%20emissions%20pathways%20under%20different%20socioeconomic%20scenarios%20for%20use%20in%20CMIP6%3A%20a%20dataset%20of%20harmonized%20emissions%20trajectories%20through%20the%20end%20of%20the%20century&amp;journal=Geosci.%20Model%20Dev.&amp;volume=12&amp;pages=1443-1475&amp;publication_year=2019&amp;author=Gidden%2CMJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR48\">Sardany\u00e9s, J., Ivan\u010di\u0107, F. &amp; Vidiella, B. Identifying regime shifts, transients and late warning signals for proactive ecosystem management. Biol. Conserv. 290, 110433 (2024).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 48\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Identifying%20regime%20shifts%2C%20transients%20and%20late%20warning%20signals%20for%20proactive%20ecosystem%20management&amp;journal=Biol.%20Conserv.&amp;volume=290&amp;publication_year=2024&amp;author=Sardany%C3%A9s%2CJ&amp;author=Ivan%C4%8Di%C4%87%2CF&amp;author=Vidiella%2CB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR49\">Stevens\u2010Rumann, C. S. et al. Evidence for declining forest resilience to wildfires under climate change. Ecol. Lett. 21, 243\u2013252 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 49\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Evidence%20for%20declining%20forest%20resilience%20to%20wildfires%20under%20climate%20change&amp;journal=Ecol.%20Lett.&amp;volume=21&amp;pages=243-252&amp;publication_year=2018&amp;author=Stevens%E2%80%90Rumann%2CCS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR50\">Bede\u2010Fazekas, \u00c1. &amp; Somodi, I. Precipitation and temperature timings underlying bioclimatic variables rearrange under climate change globally. Glob. Change Biol. 30, e17496 (2024).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 50\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Precipitation%20and%20temperature%20timings%20underlying%20bioclimatic%20variables%20rearrange%20under%20climate%20change%20globally&amp;journal=Glob.%20Change%20Biol.&amp;volume=30&amp;publication_year=2024&amp;author=Bede%E2%80%90Fazekas%2C%C3%81&amp;author=Somodi%2CI\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR51\">Munang, R. et al. Climate change and ecosystem-based adaptation: a new pragmatic approach to buffering climate change impacts. Curr. Opin. Environ. Sustain. 5, 67\u201371 (2013).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 51\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Climate%20change%20and%20ecosystem-based%20adaptation%3A%20a%20new%20pragmatic%20approach%20to%20buffering%20climate%20change%20impacts&amp;journal=Curr.%20Opin.%20Environ.%20Sustain.&amp;volume=5&amp;pages=67-71&amp;publication_year=2013&amp;author=Munang%2CR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR52\">D\u00edaz, S. et al. Assessing nature\u2019s contributions to people. Science 359, 270\u2013272 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 52\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Assessing%20nature%E2%80%99s%20contributions%20to%20people&amp;journal=Science&amp;volume=359&amp;pages=270-272&amp;publication_year=2018&amp;author=D%C3%ADaz%2CS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR53\">Drake, J. E. et al. Trees tolerate an extreme heatwave via sustained transpirational cooling and increased leaf thermal tolerance. Glob. Change Biol. 24, 2390\u20132402 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 53\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Trees%20tolerate%20an%20extreme%20heatwave%20via%20sustained%20transpirational%20cooling%20and%20increased%20leaf%20thermal%20tolerance&amp;journal=Glob.%20Change%20Biol.&amp;volume=24&amp;pages=2390-2402&amp;publication_year=2018&amp;author=Drake%2CJE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR54\">Liu, H. et al. Nature\u2010based framework for sustainable afforestation in global drylands under changing climate. Glob. Change Biol. 28, 2202\u20132220 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XhvFehsrjO\" aria-label=\"CAS reference 54\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 54\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Nature%E2%80%90based%20framework%20for%20sustainable%20afforestation%20in%20global%20drylands%20under%20changing%20climate&amp;journal=Glob.%20Change%20Biol.&amp;volume=28&amp;pages=2202-2220&amp;publication_year=2022&amp;author=Liu%2CH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR55\">Kaiser-Bunbury, C. N. et al. Ecosystem restoration strengthens pollination network resilience and function. Nature 542, 223\u2013227 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC2sXhvV2htrg%3D\" aria-label=\"CAS reference 55\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 55\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Ecosystem%20restoration%20strengthens%20pollination%20network%20resilience%20and%20function&amp;journal=Nature&amp;volume=542&amp;pages=223-227&amp;publication_year=2017&amp;author=Kaiser-Bunbury%2CCN\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR56\">Vanbergen, A. J. &amp; Initiative, T. I. P. Threats to an ecosystem service: pressures on pollinators. Front. Ecol. Environ. 11, 251\u2013259 (2013).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 56\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Threats%20to%20an%20ecosystem%20service%3A%20pressures%20on%20pollinators&amp;journal=Front.%20Ecol.%20Environ.&amp;volume=11&amp;pages=251-259&amp;publication_year=2013&amp;author=Vanbergen%2CAJ&amp;author=Initiative%2CTIP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR57\">Settele, J., Bishop, J. &amp; Potts, S. G. Climate change impacts on pollination. Nat. Plants 2, 16092 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 57\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Climate%20change%20impacts%20on%20pollination&amp;journal=Nat.%20Plants&amp;volume=2&amp;publication_year=2016&amp;author=Settele%2CJ&amp;author=Bishop%2CJ&amp;author=Potts%2CSG\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR58\">Staude, I. R. et al. Prioritize grassland restoration to bend the curve of biodiversity loss. Restor. Ecol. 31, e13931 (2023).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 58\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Prioritize%20grassland%20restoration%20to%20bend%20the%20curve%20of%20biodiversity%20loss&amp;journal=Restor.%20Ecol.&amp;volume=31&amp;publication_year=2023&amp;author=Staude%2CIR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR59\">Buchhorn, M. et al. Copernicus Global Land Service: land cover 100\u2009m: collection 3: epoch 2019: globe (V3.0.1). Zenodo <a href=\"https:\/\/doi.org\/10.5281\/zenodo.3939038\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"10.5281\/zenodo.3939038\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/doi.org\/10.5281\/zenodo.3939038<\/a> (2020).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR60\">Elmqvist, T. et al. Benefits of restoring ecosystem services in urban areas. Current Opinion in. Environ. Sustain. 14, 101\u2013108 (2015).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 60\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Benefits%20of%20restoring%20ecosystem%20services%20in%20urban%20areas.%20Current%20Opinion%20in&amp;journal=Environ.%20Sustain.&amp;volume=14&amp;pages=101-108&amp;publication_year=2015&amp;author=Elmqvist%2CT\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR61\">Klaus, V. H. &amp; Kiehl, K. A conceptual framework for urban ecological restoration and rehabilitation. Basic Appl. Ecol. 52, 82\u201394 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 61\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=A%20conceptual%20framework%20for%20urban%20ecological%20restoration%20and%20rehabilitation&amp;journal=Basic%20Appl.%20Ecol.&amp;volume=52&amp;pages=82-94&amp;publication_year=2021&amp;author=Klaus%2CVH&amp;author=Kiehl%2CK\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR62\">UNEP-WCMC and IUCN Protected Planet: The World Database on Protected Areas (WDPA) (UNEP-WCMC, 2019); <a href=\"http:\/\/www.protectedplanet.net\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"http:\/\/www.protectedplanet.net\" rel=\"nofollow noopener\" target=\"_blank\">www.protectedplanet.net<\/a><\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR63\">Lyons, K. G. et al. Challenges and opportunities for grassland restoration: a global perspective of best practices in the era of climate change. Glob. Ecol. Conserv. 46, e02612 (2023).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 63\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Challenges%20and%20opportunities%20for%20grassland%20restoration%3A%20a%20global%20perspective%20of%20best%20practices%20in%20the%20era%20of%20climate%20change&amp;journal=Glob.%20Ecol.%20Conserv.&amp;volume=46&amp;publication_year=2023&amp;author=Lyons%2CKG\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR64\">Fick, S. E. &amp; Hijmans, R. J. WorldClim 2: new 1-km spatial resolution climate surfaces for global land areas. Int. J. Climatol. 37, 4302\u20134315 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 64\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=WorldClim%202%3A%20new%201-km%20spatial%20resolution%20climate%20surfaces%20for%20global%20land%20areas&amp;journal=Int.%20J.%20Climatol.&amp;volume=37&amp;pages=4302-4315&amp;publication_year=2017&amp;author=Fick%2CSE&amp;author=Hijmans%2CRJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR65\">Hengl, T. et al. SoilGrids250m: global gridded soil information based on machine learning. PLoS ONEs 12, e0169748 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 65\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=SoilGrids250m%3A%20global%20gridded%20soil%20information%20based%20on%20machine%20learning&amp;journal=PLoS%20ONEs&amp;volume=12&amp;publication_year=2017&amp;author=Hengl%2CT\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR66\">Danielson, J. J. &amp; Gesch, D. B. Global Multi-Resolution Terrain Elevation Data 2010 (GMTED2010) Report No. OFR 2011-1073 (US Geological Survey, 2011).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR67\">Baboo, S. S. &amp; Devi, M. R. An analysis of different resampling methods in Coimbatore, District. Glob. J. Computer Sci. Technol. 10, 61\u201366 (2010).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 67\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=An%20analysis%20of%20different%20resampling%20methods%20in%20Coimbatore%2C%20District&amp;journal=Glob.%20J.%20Computer%20Sci.%20Technol.&amp;volume=10&amp;pages=61-66&amp;publication_year=2010&amp;author=Baboo%2CSS&amp;author=Devi%2CMR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR68\">Breiman, L. Random forests. Mach. Learn. 45, 5\u201332 (2001).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 68\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Random%20forests&amp;journal=Mach.%20Learn.&amp;volume=45&amp;pages=5-32&amp;publication_year=2001&amp;author=Breiman%2CL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR69\">Pi\u00f1eiro, G., Perelman, S., Guerschman, J. P. &amp; Paruelo, J. M. How to evaluate models: observed vs. predicted or predicted vs. observed? Ecol. Modell. 216, 316\u2013322 (2008).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 69\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=How%20to%20evaluate%20models%3A%20observed%20vs.%20predicted%20or%20predicted%20vs.%20observed%3F&amp;journal=Ecol.%20Modell.&amp;volume=216&amp;pages=316-322&amp;publication_year=2008&amp;author=Pi%C3%B1eiro%2CG&amp;author=Perelman%2CS&amp;author=Guerschman%2CJP&amp;author=Paruelo%2CJM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR70\">Eyring, V. et al. Overview of the Coupled Model Intercomparison Project Phase 6 (CMIP6) experimental design and organization. Geosci. Model Dev. 9, 1937\u20131958 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 70\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Overview%20of%20the%20Coupled%20Model%20Intercomparison%20Project%20Phase%206%20%28CMIP6%29%20experimental%20design%20and%20organization&amp;journal=Geosci.%20Model%20Dev.&amp;volume=9&amp;pages=1937-1958&amp;publication_year=2016&amp;author=Eyring%2CV\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR71\">D\u00f6scher, R. et al. The EC-Earth3 earth system model for the coupled model intercomparison project 6. Geosci. Model Dev. 15, 2973\u20133020 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 71\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20EC-Earth3%20earth%20system%20model%20for%20the%20coupled%20model%20intercomparison%20project%206&amp;journal=Geosci.%20Model%20Dev.&amp;volume=15&amp;pages=2973-3020&amp;publication_year=2022&amp;author=D%C3%B6scher%2CR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR72\">Zelinka, M. D. et al. Causes of higher climate sensitivity in CMIP6 models. Geophys. Res. Lett. 47, e2019GL085782 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 72\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Causes%20of%20higher%20climate%20sensitivity%20in%20CMIP6%20models&amp;journal=Geophys.%20Res.%20Lett.&amp;volume=47&amp;publication_year=2020&amp;author=Zelinka%2CMD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR73\">Pechanec, V. et al. Modelling of the carbon sequestration and its prediction under climate change. Ecol. Inform. 47, 50\u201354 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 73\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Modelling%20of%20the%20carbon%20sequestration%20and%20its%20prediction%20under%20climate%20change&amp;journal=Ecol.%20Inform.&amp;volume=47&amp;pages=50-54&amp;publication_year=2018&amp;author=Pechanec%2CV\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR74\">Land Use Systems of the World (FAO, 2010); <a href=\"https:\/\/data.apps.fao.org\/map\/catalog\/srv\/eng\/catalog.search#\/metadata\/fc32c5de-440c-46aa-9cad-81f4c8b84c6a\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"https:\/\/data.apps.fao.org\/map\/catalog\/srv\/eng\/catalog.search#\/metadata\/fc32c5de-440c-46aa-9cad-81f4c8b84c6a\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/data.apps.fao.org\/map\/catalog\/srv\/eng\/catalog.search#\/metadata\/fc32c5de-440c-46aa-9cad-81f4c8b84c6a<\/a><\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR75\">Dinerstein, E. et al. An ecoregion-based approach to protecting half the terrestrial realm. BioScience 67, 534\u2013545 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 75\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=An%20ecoregion-based%20approach%20to%20protecting%20half%20the%20terrestrial%20realm&amp;journal=BioScience&amp;volume=67&amp;pages=534-545&amp;publication_year=2017&amp;author=Dinerstein%2CE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR76\">Cook-Patton, S. C. et al. Mapping carbon accumulation potential from global natural forest regrowth. Nature 585, 545\u2013550 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3cXhvFegu7fM\" aria-label=\"CAS reference 76\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 76\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Mapping%20carbon%20accumulation%20potential%20from%20global%20natural%20forest%20regrowth&amp;journal=Nature&amp;volume=585&amp;pages=545-550&amp;publication_year=2020&amp;author=Cook-Patton%2CSC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR77\">Carbon storage in EU terrestrial and marine ecosystems \u2014 European Environment Agency (EEA, 2022); <a href=\"https:\/\/www.eea.europa.eu\/data-and-maps\/data\/carbon-storage-in-global-terrestrial\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"https:\/\/www.eea.europa.eu\/data-and-maps\/data\/carbon-storage-in-global-terrestrial\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/www.eea.europa.eu\/data-and-maps\/data\/carbon-storage-in-global-terrestrial<\/a><\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR78\">Zhou, T. et al. Age\u2010dependent forest carbon sink: estimation via inverse modeling. J. Geophys. Res.: Biogeosci. 120, 2473\u20132492 (2015).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC28XptlOlsw%3D%3D\" aria-label=\"CAS reference 78\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 78\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Age%E2%80%90dependent%20forest%20carbon%20sink%3A%20estimation%20via%20inverse%20modeling&amp;journal=J.%20Geophys.%20Res.%3A%20Biogeosci.&amp;volume=120&amp;pages=2473-2492&amp;publication_year=2015&amp;author=Zhou%2CT\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR79\">T\u00f6lgyesi, C. et al. Global ecosystem restoration has unexpectedly low potential to mitigate climate change. Dryad <a href=\"https:\/\/doi.org\/10.5061\/dryad.ksn02v7g4\" data-track=\"click_references\" data-track-action=\"external reference\" data-track-value=\"external reference\" data-track-label=\"10.5061\/dryad.ksn02v7g4\" rel=\"nofollow noopener\" target=\"_blank\">https:\/\/doi.org\/10.5061\/dryad.ksn02v7g4<\/a> (2025).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR80\">Page, S. E. et al. A record of Late Pleistocene and Holocene carbon accumulation and climate change from an equatorial peat bog (Kalimantan, Indonesia): implications for past, present and future carbon dynamics. J. Quat. Sci. 19, 625\u2013635 (2004).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 80\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=A%20record%20of%20Late%20Pleistocene%20and%20Holocene%20carbon%20accumulation%20and%20climate%20change%20from%20an%20equatorial%20peat%20bog%20%28Kalimantan%2C%20Indonesia%29%3A%20implications%20for%20past%2C%20present%20and%20future%20carbon%20dynamics&amp;journal=J.%20Quat.%20Sci.&amp;volume=19&amp;pages=625-635&amp;publication_year=2004&amp;author=Page%2CSE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR81\">Saunders, M. J., Jones, M. B. &amp; Kansiime, F. Carbon and water cycles in tropical papyrus wetlands. Wetlands Ecol. Manage. 15, 489\u2013498 (2007).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD2sXhsVSitrnK\" aria-label=\"CAS reference 81\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 81\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20and%20water%20cycles%20in%20tropical%20papyrus%20wetlands&amp;journal=Wetlands%20Ecol.%20Manage.&amp;volume=15&amp;pages=489-498&amp;publication_year=2007&amp;author=Saunders%2CMJ&amp;author=Jones%2CMB&amp;author=Kansiime%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR82\">Bernal, B. &amp; Mitsch, W. J. A comparison of soil carbon pools and profiles in wetlands in Costa Rica and Ohio. Ecol. Eng. 34, 311\u2013323 (2008).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 82\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=A%20comparison%20of%20soil%20carbon%20pools%20and%20profiles%20in%20wetlands%20in%20Costa%20Rica%20and%20Ohio&amp;journal=Ecol.%20Eng.&amp;volume=34&amp;pages=311-323&amp;publication_year=2008&amp;author=Bernal%2CB&amp;author=Mitsch%2CWJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR83\">L\u00fc, X. T., Yin, J. X., Jepsen, M. R. &amp; Tang, J. W. Ecosystem carbon storage and partitioning in a tropical seasonal forest in Southwestern China. For. Ecol. Manage. 260, 1798\u20131803 (2010).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 83\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Ecosystem%20carbon%20storage%20and%20partitioning%20in%20a%20tropical%20seasonal%20forest%20in%20Southwestern%20China&amp;journal=For.%20Ecol.%20Manage.&amp;volume=260&amp;pages=1798-1803&amp;publication_year=2010&amp;author=L%C3%BC%2CXT&amp;author=Yin%2CJX&amp;author=Jepsen%2CMR&amp;author=Tang%2CJW\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR84\">Adame, M. F. et al. Carbon stocks and soil sequestration rates of tropical riverine wetlands. Biogeosciences 12, 3805\u20133818 (2015).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 84\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20stocks%20and%20soil%20sequestration%20rates%20of%20tropical%20riverine%20wetlands&amp;journal=Biogeosciences&amp;volume=12&amp;pages=3805-3818&amp;publication_year=2015&amp;author=Adame%2CMF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR85\">Akpa, S. I., Odeh, I. O., Bishop, T. F., Hartemink, A. E. &amp; Amapu, I. Y. Total soil organic carbon and carbon sequestration potential in Nigeria. Geoderma 271, 202\u2013215 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC28XjslGis74%3D\" aria-label=\"CAS reference 85\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 85\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Total%20soil%20organic%20carbon%20and%20carbon%20sequestration%20potential%20in%20Nigeria&amp;journal=Geoderma&amp;volume=271&amp;pages=202-215&amp;publication_year=2016&amp;author=Akpa%2CSI&amp;author=Odeh%2CIO&amp;author=Bishop%2CTF&amp;author=Hartemink%2CAE&amp;author=Amapu%2CIY\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR86\">Hribljan, J. A., Su\u00e1rez, E., Heckman, K. A., Lilleskov, E. A. &amp; Chimner, R. A. Peatland carbon stocks and accumulation rates in the Ecuadorian p\u00e1ramo. Wetland Ecol. Manage. 24, 113\u2013127 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC28Xislagurc%3D\" aria-label=\"CAS reference 86\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 86\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Peatland%20carbon%20stocks%20and%20accumulation%20rates%20in%20the%20Ecuadorian%20p%C3%A1ramo&amp;journal=Wetland%20Ecol.%20Manage.&amp;volume=24&amp;pages=113-127&amp;publication_year=2016&amp;author=Hribljan%2CJA&amp;author=Su%C3%A1rez%2CE&amp;author=Heckman%2CKA&amp;author=Lilleskov%2CEA&amp;author=Chimner%2CRA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR87\">Kolka, R. K., Murdiyarso, D., Kauffman, J. B. &amp; Birdsey, R. A. Tropical wetlands, climate, and land-use change: adaptation and mitigation opportunities. Wetland Ecol. Manage. 24, 107\u2013112 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 87\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Tropical%20wetlands%2C%20climate%2C%20and%20land-use%20change%3A%20adaptation%20and%20mitigation%20opportunities&amp;journal=Wetland%20Ecol.%20Manage.&amp;volume=24&amp;pages=107-112&amp;publication_year=2016&amp;author=Kolka%2CRK&amp;author=Murdiyarso%2CD&amp;author=Kauffman%2CJB&amp;author=Birdsey%2CRA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR88\">Davila, A. &amp; Bohlen, P. J. Hydro-ecological controls on soil carbon storage in subtropical freshwater depressional wetlands. Wetlands 41, 66 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 88\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Hydro-ecological%20controls%20on%20soil%20carbon%20storage%20in%20subtropical%20freshwater%20depressional%20wetlands&amp;journal=Wetlands&amp;volume=41&amp;publication_year=2021&amp;author=Davila%2CA&amp;author=Bohlen%2CPJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR89\">Sj\u00f6gersten, S. et al. Coastal wetland ecosystems deliver large carbon stocks in tropical Mexico. Geoderma 403, 115173 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 89\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Coastal%20wetland%20ecosystems%20deliver%20large%20carbon%20stocks%20in%20tropical%20Mexico&amp;journal=Geoderma&amp;volume=403&amp;publication_year=2021&amp;author=Sj%C3%B6gersten%2CS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR90\">Black, T. A. et al. Annual cycles of water vapor and carbon dioxide fluxes in and above a boreal aspen forest. Glob. Change Biol. 2, 219\u2013229 (1996).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 90\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Annual%20cycles%20of%20water%20vapor%20and%20carbon%20dioxide%20fluxes%20in%20and%20above%20a%20boreal%20aspen%20forest&amp;journal=Glob.%20Change%20Biol.&amp;volume=2&amp;pages=219-229&amp;publication_year=1996&amp;author=Black%2CTA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR91\">Frolking, S. et al. Modelling temporal variability in the carbon balance of a spruce\/moss boreal forest. Glob. Change Biol. 2, 343\u2013366 (1996).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 91\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Modelling%20temporal%20variability%20in%20the%20carbon%20balance%20of%20a%20spruce%2Fmoss%20boreal%20forest&amp;journal=Glob.%20Change%20Biol.&amp;volume=2&amp;pages=343-366&amp;publication_year=1996&amp;author=Frolking%2CS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR92\">Yarie, J. &amp; Billings, S. Carbon balance of the taiga forest within Alaska: present and future. Can. J. For. Res. 32, 757\u2013767 (2002).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 92\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20balance%20of%20the%20taiga%20forest%20within%20Alaska%3A%20present%20and%20future&amp;journal=Can.%20J.%20For.%20Res.&amp;volume=32&amp;pages=757-767&amp;publication_year=2002&amp;author=Yarie%2CJ&amp;author=Billings%2CS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR93\">R\u00f6ser, C. et al. Net CO2 exchange rates in three different successional stages of the \u2018Dark Taiga\u2019 of central Siberia. Tellus B: Chem. Phys. Meteorol. 54, 642\u2013654 (2002).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 93\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Net%20CO2%20exchange%20rates%20in%20three%20different%20successional%20stages%20of%20the%20%E2%80%98Dark%20Taiga%E2%80%99%20of%20central%20Siberia&amp;journal=Tellus%20B%3A%20Chem.%20Phys.%20Meteorol.&amp;volume=54&amp;pages=642-654&amp;publication_year=2002&amp;author=R%C3%B6ser%2CC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR94\">Suni, T. et al. Vesala, Interannual variability and timing of growing\u2010season CO2 exchange in a boreal forest. J. Geophys. Res.: Atmos. 108, D9 (2003).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 94\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Vesala%2C%20Interannual%20variability%20and%20timing%20of%20growing%E2%80%90season%20CO2%20exchange%20in%20a%20boreal%20forest&amp;journal=J.%20Geophys.%20Res.%3A%20Atmos.&amp;volume=108&amp;publication_year=2003&amp;author=Suni%2CT\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR95\">Curtis, P. S. Biometric and eddy-covariance based estimates of annual carbon storage in five eastern North American deciduous forests. Agric. For. Meteorol. 113, 3\u201319 (2002).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 95\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Biometric%20and%20eddy-covariance%20based%20estimates%20of%20annual%20carbon%20storage%20in%20five%20eastern%20North%20American%20deciduous%20forests&amp;journal=Agric.%20For.%20Meteorol.&amp;volume=113&amp;pages=3-19&amp;publication_year=2002&amp;author=Curtis%2CPS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR96\">Urrutia-Jalabert, R., Malhi, Y. &amp; Lara, A. The oldest, slowest rainforests in the world? Massive biomass and slow carbon dynamics of Fitzroya cupressoides temperate forests in southern Chile. PLoS ONE 10, e0137569 (2015).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 96\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20oldest%2C%20slowest%20rainforests%20in%20the%20world%3F%20Massive%20biomass%20and%20slow%20carbon%20dynamics%20of%20Fitzroya%20cupressoides%20temperate%20forests%20in%20southern%20Chile&amp;journal=PLoS%20ONE&amp;volume=10&amp;publication_year=2015&amp;author=Urrutia-Jalabert%2CR&amp;author=Malhi%2CY&amp;author=Lara%2CA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR97\">Parada, T., Lusk, C. H. &amp; Donoso, P. J. Evidence that emergent Nothofagus dombeyi do not depress carbon sequestration rates of canopy species in an old-growth Chilean temperate forest. N.Z. J. Bot. 56, 311\u2013322 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 97\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Evidence%20that%20emergent%20Nothofagus%20dombeyi%20do%20not%20depress%20carbon%20sequestration%20rates%20of%20canopy%20species%20in%20an%20old-growth%20Chilean%20temperate%20forest&amp;journal=N.Z.%20J.%20Bot.&amp;volume=56&amp;pages=311-322&amp;publication_year=2018&amp;author=Parada%2CT&amp;author=Lusk%2CCH&amp;author=Donoso%2CPJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR98\">Gough, C. M., Vogel, C. S., Harrold, K. H., George, K. &amp; Curtis, P. S. The legacy of harvest and fire on ecosystem carbon storage in a north temperate forest. Glob. Change Biol. 13, 1935\u20131949 (2007).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 98\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20legacy%20of%20harvest%20and%20fire%20on%20ecosystem%20carbon%20storage%20in%20a%20north%20temperate%20forest&amp;journal=Glob.%20Change%20Biol.&amp;volume=13&amp;pages=1935-1949&amp;publication_year=2007&amp;author=Gough%2CCM&amp;author=Vogel%2CCS&amp;author=Harrold%2CKH&amp;author=George%2CK&amp;author=Curtis%2CPS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR99\">Michelsen, A., Andersson, M., Jensen, M., Kj\u00f8ller, A. &amp; Gashew, M. Carbon stocks, soil respiration and microbial biomass in fire-prone tropical grassland, woodland and forest ecosystems. Soil Biol. Biochem. 36, 1707\u20131717 (2004).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD2cXnslKhtLo%3D\" aria-label=\"CAS reference 99\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 99\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20stocks%2C%20soil%20respiration%20and%20microbial%20biomass%20in%20fire-prone%20tropical%20grassland%2C%20woodland%20and%20forest%20ecosystems&amp;journal=Soil%20Biol.%20Biochem.&amp;volume=36&amp;pages=1707-1717&amp;publication_year=2004&amp;author=Michelsen%2CA&amp;author=Andersson%2CM&amp;author=Jensen%2CM&amp;author=Kj%C3%B8ller%2CA&amp;author=Gashew%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR100\">Vargas, R., Allen, M. F. &amp; Allen, E. B. Biomass and carbon accumulation in a fire chronosequence of a seasonally dry tropical forest. Glob. Change Biol. 14, 109\u2013124 (2008).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 100\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Biomass%20and%20carbon%20accumulation%20in%20a%20fire%20chronosequence%20of%20a%20seasonally%20dry%20tropical%20forest&amp;journal=Glob.%20Change%20Biol.&amp;volume=14&amp;pages=109-124&amp;publication_year=2008&amp;author=Vargas%2CR&amp;author=Allen%2CMF&amp;author=Allen%2CEB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR101\">Coetsee, C., Gray, E. F., Wakeling, J., Wigley, B. J. &amp; Bond, W. J. Low gains in ecosystem carbon with woody plant encroachment in a South African savanna. J. Trop. Ecol. 29, 49\u201360 (2013).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 101\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Low%20gains%20in%20ecosystem%20carbon%20with%20woody%20plant%20encroachment%20in%20a%20South%20African%20savanna&amp;journal=J.%20Trop.%20Ecol.&amp;volume=29&amp;pages=49-60&amp;publication_year=2013&amp;author=Coetsee%2CC&amp;author=Gray%2CEF&amp;author=Wakeling%2CJ&amp;author=Wigley%2CBJ&amp;author=Bond%2CWJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR102\">Cao, S., Sanchez-Azofeifa, G. A., Duran, S. M. &amp; Calvo-Rodriguez, S. Estimation of aboveground net primary productivity in secondary tropical dry forests using the Carnegie\u2013Ames\u2013Stanford approach (CASA) model. Environ. Res. Lett. 11, 075004 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 102\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Estimation%20of%20aboveground%20net%20primary%20productivity%20in%20secondary%20tropical%20dry%20forests%20using%20the%20Carnegie%E2%80%93Ames%E2%80%93Stanford%20approach%20%28CASA%29%20model&amp;journal=Environ.%20Res.%20Lett.&amp;volume=11&amp;publication_year=2016&amp;author=Cao%2CS&amp;author=Sanchez-Azofeifa%2CGA&amp;author=Duran%2CSM&amp;author=Calvo-Rodriguez%2CS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR103\">Pereira J\u00fanior, L. R. Carbon stocks in a tropical dry forest in Brazil. Rev. Cienc. Agron. 47, 32\u201340 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 103\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20stocks%20in%20a%20tropical%20dry%20forest%20in%20Brazil&amp;journal=Rev.%20Cienc.%20Agron.&amp;volume=47&amp;pages=32-40&amp;publication_year=2016&amp;author=Pereira%20J%C3%BAnior%2CLR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR104\">Abreu et al. The biodiversity cost of carbon sequestration in tropical savanna. Sci. Adv. 3, e1701284 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 104\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20biodiversity%20cost%20of%20carbon%20sequestration%20in%20tropical%20savanna&amp;journal=Sci.%20Adv.&amp;volume=3&amp;publication_year=2017&amp;author=Abreu%2C\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR105\">Pelletier, J. et al. Carbon sink despite large deforestation in African tropical dry forests (miombo woodlands). Environ. Res. Lett. 13, 094017 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 105\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20sink%20despite%20large%20deforestation%20in%20African%20tropical%20dry%20forests%20%28miombo%20woodlands%29&amp;journal=Environ.%20Res.%20Lett.&amp;volume=13&amp;publication_year=2018&amp;author=Pelletier%2CJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR106\">Calvo-Rodriguez, S., Sanchez-Azofeifa, G. A., Duran, S. M., Do Espirito-Santo, M. M. &amp; Ferreira Nunes, Y. R. Dynamics of carbon accumulation in tropical dry forests under climate change extremes. Forests 12, 106 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 106\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Dynamics%20of%20carbon%20accumulation%20in%20tropical%20dry%20forests%20under%20climate%20change%20extremes&amp;journal=Forests&amp;volume=12&amp;publication_year=2021&amp;author=Calvo-Rodriguez%2CS&amp;author=Sanchez-Azofeifa%2CGA&amp;author=Duran%2CSM&amp;author=Espirito-Santo%2CMM&amp;author=Ferreira%20Nunes%2CYR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR107\">Maia, V. A. et al. The carbon sink of tropical seasonal forests in southeastern Brazil can be under threat. Sci. Adv. 6, eabd4548 (2020).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB3MXjt1ertr4%3D\" aria-label=\"CAS reference 107\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 107\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20carbon%20sink%20of%20tropical%20seasonal%20forests%20in%20southeastern%20Brazil%20can%20be%20under%20threat&amp;journal=Sci.%20Adv.&amp;volume=6&amp;publication_year=2020&amp;author=Maia%2CVA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR108\">Yadav, V. S. et al. Carbon sequestration potential and CO2 fluxes in a tropical forest ecosystem. Ecol. Eng. 176, 106541 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 108\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20sequestration%20potential%20and%20CO2%20fluxes%20in%20a%20tropical%20forest%20ecosystem&amp;journal=Ecol.%20Eng.&amp;volume=176&amp;publication_year=2022&amp;author=Yadav%2CVS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR109\">Houghton, R. A. The annual net flux of carbon to the atmosphere from changes in land use 1850\u20131990. Tellus B 51, 298\u2013313 (1999).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 109\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20annual%20net%20flux%20of%20carbon%20to%20the%20atmosphere%20from%20changes%20in%20land%20use%201850%E2%80%931990&amp;journal=Tellus%20B&amp;volume=51&amp;pages=298-313&amp;publication_year=1999&amp;author=Houghton%2CRA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR110\">DeFries, R. S. et al. Carbon emissions from tropical deforestation and regrowth based on satellite observations for the 1980s and 1990s. Proc. Natl Acad. Sci. USA 99, 14256\u201314261 (2002).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD38XosF2itbY%3D\" aria-label=\"CAS reference 110\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 110\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20emissions%20from%20tropical%20deforestation%20and%20regrowth%20based%20on%20satellite%20observations%20for%20the%201980s%20and%201990s&amp;journal=Proc.%20Natl%20Acad.%20Sci.%20USA&amp;volume=99&amp;pages=14256-14261&amp;publication_year=2002&amp;author=DeFries%2CRS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR111\">Hamilton, J. G. et al. Forest carbon balance under elevated CO2. Oecologia 131, 250\u2013260 (2002).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 111\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Forest%20carbon%20balance%20under%20elevated%20CO2&amp;journal=Oecologia&amp;volume=131&amp;pages=250-260&amp;publication_year=2002&amp;author=Hamilton%2CJG\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR112\">Nascimento, H. E. &amp; Laurance, W. F. Total aboveground biomass in central Amazonian rainforests: a landscape-scale study. For. Ecol. Manage. 168, 311\u2013321 (2002).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 112\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Total%20aboveground%20biomass%20in%20central%20Amazonian%20rainforests%3A%20a%20landscape-scale%20study&amp;journal=For.%20Ecol.%20Manage.&amp;volume=168&amp;pages=311-321&amp;publication_year=2002&amp;author=Nascimento%2CHE&amp;author=Laurance%2CWF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR113\">Lasco, R. D. &amp; Pulhin, F. B. Philippine forest ecosystems and climate change: carbon stocks, rate of sequestration and the Kyoto Protocol. Ann. Trop. Res. 25, 37\u201352 (2003).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 113\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Philippine%20forest%20ecosystems%20and%20climate%20change%3A%20carbon%20stocks%2C%20rate%20of%20sequestration%20and%20the%20Kyoto%20Protocol&amp;journal=Ann.%20Trop.%20Res.&amp;volume=25&amp;pages=37-52&amp;publication_year=2003&amp;author=Lasco%2CRD&amp;author=Pulhin%2CFB\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR114\">Gibbs, H. K., Brown, S., Niles, J. O. &amp; Foley, A. Monitoring and estimating tropical forest carbon stocks: making REDD a reality. Environ. Res. Lett. 2, 045023 (2007).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 114\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Monitoring%20and%20estimating%20tropical%20forest%20carbon%20stocks%3A%20making%20REDD%20a%20reality&amp;journal=Environ.%20Res.%20Lett.&amp;volume=2&amp;publication_year=2007&amp;author=Gibbs%2CHK&amp;author=Brown%2CS&amp;author=Niles%2CJO&amp;author=Foley%2CA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR115\">Sierra, C. A. et al. Total carbon stocks in a tropical forest landscape of the Porce region, Colombia. For. Ecol. Manage. 243, 299\u2013309 (2007).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 115\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Total%20carbon%20stocks%20in%20a%20tropical%20forest%20landscape%20of%20the%20Porce%20region%2C%20Colombia&amp;journal=For.%20Ecol.%20Manage.&amp;volume=243&amp;pages=299-309&amp;publication_year=2007&amp;author=Sierra%2CCA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR116\">Lewis, S. L. et al. Increasing carbon storage in intact African tropical forests. Nature 457, 1003\u20131006 (2009).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD1MXitFKktrs%3D\" aria-label=\"CAS reference 116\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 116\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Increasing%20carbon%20storage%20in%20intact%20African%20tropical%20forests&amp;journal=Nature&amp;volume=457&amp;pages=1003-1006&amp;publication_year=2009&amp;author=Lewis%2CSL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR117\">Malhi, Y. &amp; Grace, J. Tropical forests and atmospheric carbon dioxide. Trends Ecol. Evol. 15, 332\u2013337 (2000).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:STN:280:DC%2BC2sbisV2qsw%3D%3D\" aria-label=\"CAS reference 117\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 117\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Tropical%20forests%20and%20atmospheric%20carbon%20dioxide&amp;journal=Trends%20Ecol.%20Evol.&amp;volume=15&amp;pages=332-337&amp;publication_year=2000&amp;author=Malhi%2CY&amp;author=Grace%2CJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR118\">Ngo, K. M. et al. Carbon stocks in primary and secondary tropical forests in Singapore. For. Ecol. Manage. 296, 81\u201389 (2013).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 118\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20stocks%20in%20primary%20and%20secondary%20tropical%20forests%20in%20Singapore&amp;journal=For.%20Ecol.%20Manage.&amp;volume=296&amp;pages=81-89&amp;publication_year=2013&amp;author=Ngo%2CKM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR119\">Wheeler, C. E. et al. Carbon sequestration and biodiversity following 18 years of active tropical forest restoration. For. Ecol. Manage. 373, 44\u201355 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 119\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20sequestration%20and%20biodiversity%20following%2018%20years%20of%20active%20tropical%20forest%20restoration&amp;journal=For.%20Ecol.%20Manage.&amp;volume=373&amp;pages=44-55&amp;publication_year=2016&amp;author=Wheeler%2CCE\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR120\">Zaragoza, M. J. G., Aranico, E. C., Tampus, A. D. &amp; Amparado, R. F. Jr Carbon stock assessment of three different vegetative covers in Kapatagan, Lanao del Norte, Philippines. Adv. Environ. Sci. 8, 205\u2013220 (2016).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 120\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20stock%20assessment%20of%20three%20different%20vegetative%20covers%20in%20Kapatagan%2C%20Lanao%20del%20Norte%2C%20Philippines&amp;journal=Adv.%20Environ.%20Sci.&amp;volume=8&amp;pages=205-220&amp;publication_year=2016&amp;author=Zaragoza%2CMJG&amp;author=Aranico%2CEC&amp;author=Tampus%2CAD&amp;author=Amparado%2CRF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR121\">Ray, R. et al. Carbon sequestration and annual increase of carbon stock in a mangrove forest. Atmos. Environ. 45, 5016\u20135024 (2011).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC3MXpt1aiu7w%3D\" aria-label=\"CAS reference 121\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 121\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20sequestration%20and%20annual%20increase%20of%20carbon%20stock%20in%20a%20mangrove%20forest&amp;journal=Atmos.%20Environ.&amp;volume=45&amp;pages=5016-5024&amp;publication_year=2011&amp;author=Ray%2CR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR122\">Alongi, D. M. Carbon sequestration in mangrove forests. Carbon Manage. 3, 313\u2013322 (2012).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC38XotVOhtL4%3D\" aria-label=\"CAS reference 122\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 122\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20sequestration%20in%20mangrove%20forests&amp;journal=Carbon%20Manage.&amp;volume=3&amp;pages=313-322&amp;publication_year=2012&amp;author=Alongi%2CDM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR123\">Alongi, D. M. Carbon cycling and storage in mangrove forests. Annu. Rev. Mar. Sci. 6, 195\u2013219 (2014).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 123\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20cycling%20and%20storage%20in%20mangrove%20forests&amp;journal=Annu.%20Rev.%20Mar.%20Sci.&amp;volume=6&amp;pages=195-219&amp;publication_year=2014&amp;author=Alongi%2CDM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR124\">Kauffman, J. B., Heider, C., Norfolk, J. &amp; Payton, F. Carbon stocks of intact mangroves and carbon emissions arising from their conversion in the Dominican Republic. Ecol. Appl. 24, 518\u2013527 (2014).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 124\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20stocks%20of%20intact%20mangroves%20and%20carbon%20emissions%20arising%20from%20their%20conversion%20in%20the%20Dominican%20Republic&amp;journal=Ecol.%20Appl.&amp;volume=24&amp;pages=518-527&amp;publication_year=2014&amp;author=Kauffman%2CJB&amp;author=Heider%2CC&amp;author=Norfolk%2CJ&amp;author=Payton%2CF\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR125\">Gnanamoorthy, P. et al. Soil organic carbon stock in natural and restored mangrove forests in Pichavaram south-east coast of India. Indian J. Geo Mar. Sci. 48, 801\u2013808 (2019).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 125\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Soil%20organic%20carbon%20stock%20in%20natural%20and%20restored%20mangrove%20forests%20in%20Pichavaram%20south-east%20coast%20of%20India&amp;journal=Indian%20J.%20Geo%20Mar.%20Sci.&amp;volume=48&amp;pages=801-808&amp;publication_year=2019&amp;author=Gnanamoorthy%2CP\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR126\">Adame et al. Future carbon emissions from global mangrove forest loss. Glob. Change Biol. 27, 2856\u20132866 (2021).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BB38XhvFartLzI\" aria-label=\"CAS reference 126\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 126\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Future%20carbon%20emissions%20from%20global%20mangrove%20forest%20loss&amp;journal=Glob.%20Change%20Biol.&amp;volume=27&amp;pages=2856-2866&amp;publication_year=2021&amp;author=Adame%2C\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR127\">Luo, H. et al. Mature semiarid chaparral ecosystems can be a significant sink for atmospheric carbon dioxide. Glob. Change Biol. 13, 386\u2013396 (2007).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 127\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Mature%20semiarid%20chaparral%20ecosystems%20can%20be%20a%20significant%20sink%20for%20atmospheric%20carbon%20dioxide&amp;journal=Glob.%20Change%20Biol.&amp;volume=13&amp;pages=386-396&amp;publication_year=2007&amp;author=Luo%2CH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR128\">Robinson, D. Implications of a large global root biomass for carbon sink estimates and for soil carbon dynamics. Proc. R. Soc. B: Biol. Sci. 274, 2753\u20132759 (2007).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD2sXht1yktrvL\" aria-label=\"CAS reference 128\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 128\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Implications%20of%20a%20large%20global%20root%20biomass%20for%20carbon%20sink%20estimates%20and%20for%20soil%20carbon%20dynamics&amp;journal=Proc.%20R.%20Soc.%20B%3A%20Biol.%20Sci.&amp;volume=274&amp;pages=2753-2759&amp;publication_year=2007&amp;author=Robinson%2CD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR129\">Beier, C. et al. Carbon and nitrogen balances for six shrublands across Europe. Glob. Biogeochem. Cycles 23, GB4008 (2009).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 129\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20and%20nitrogen%20balances%20for%20six%20shrublands%20across%20Europe&amp;journal=Glob.%20Biogeochem.%20Cycles&amp;volume=23&amp;publication_year=2009&amp;author=Beier%2CC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR130\">Ruiz-Peinado, R., Moreno, G., Juarez, E., Montero, G. &amp; Roig, S. The contribution of two common shrub species to aboveground and belowground carbon stock in Iberian dehesas. J. Arid Environ. 91, 22\u201330 (2013).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 130\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20contribution%20of%20two%20common%20shrub%20species%20to%20aboveground%20and%20belowground%20carbon%20stock%20in%20Iberian%20dehesas&amp;journal=J.%20Arid%20Environ.&amp;volume=91&amp;pages=22-30&amp;publication_year=2013&amp;author=Ruiz-Peinado%2CR&amp;author=Moreno%2CG&amp;author=Juarez%2CE&amp;author=Montero%2CG&amp;author=Roig%2CS\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR131\">Stamati, F. E., Nikolaidis, N. P. &amp; Schnoor, J. L. Modeling topsoil carbon sequestration in two contrasting crop production to set-aside conversions with RothC\u2013Calibration issues and uncertainty analysis. Agric. Ecosyst. Environ. 165, 190\u2013200 (2013).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 131\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Modeling%20topsoil%20carbon%20sequestration%20in%20two%20contrasting%20crop%20production%20to%20set-aside%20conversions%20with%20RothC%E2%80%93Calibration%20issues%20and%20uncertainty%20analysis&amp;journal=Agric.%20Ecosyst.%20Environ.&amp;volume=165&amp;pages=190-200&amp;publication_year=2013&amp;author=Stamati%2CFE&amp;author=Nikolaidis%2CNP&amp;author=Schnoor%2CJL\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR132\">Nie, X. et al. Distribution and controlling factors of soil organic carbon storage in the northeast Tibetan shrublands. J. Soils Sediments 19, 322\u2013331 (2019).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC1cXhtV2hurrE\" aria-label=\"CAS reference 132\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 132\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Distribution%20and%20controlling%20factors%20of%20soil%20organic%20carbon%20storage%20in%20the%20northeast%20Tibetan%20shrublands&amp;journal=J.%20Soils%20Sediments&amp;volume=19&amp;pages=322-331&amp;publication_year=2019&amp;author=Nie%2CX\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR133\">Zhao, M. et al. Assessing the effects of ecological engineering on carbon storage by linking the CA-Markov and InVEST models. Ecol. Indic. 98, 29\u201338 (2019).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 133\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Assessing%20the%20effects%20of%20ecological%20engineering%20on%20carbon%20storage%20by%20linking%20the%20CA-Markov%20and%20InVEST%20models&amp;journal=Ecol.%20Indic.&amp;volume=98&amp;pages=29-38&amp;publication_year=2019&amp;author=Zhao%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR134\">Chen, X., Hutley, L. B. &amp; Eamus, D. Carbon balance of a tropical savanna of northern Australia. Oecologia 137, 405\u2013416 (2003).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 134\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20balance%20of%20a%20tropical%20savanna%20of%20northern%20Australia&amp;journal=Oecologia&amp;volume=137&amp;pages=405-416&amp;publication_year=2003&amp;author=Chen%2CX&amp;author=Hutley%2CLB&amp;author=Eamus%2CD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR135\">Hutley, L. B., Leuning, R., Beringer, J. &amp; Cleugh, H. A. The utility of the eddy covariance techniques as a tool in carbon accounting: tropical savanna as a case study. Aust. J. Bot. 53, 663\u2013675 (2005).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 135\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=The%20utility%20of%20the%20eddy%20covariance%20techniques%20as%20a%20tool%20in%20carbon%20accounting%3A%20tropical%20savanna%20as%20a%20case%20study&amp;journal=Aust.%20J.%20Bot.&amp;volume=53&amp;pages=663-675&amp;publication_year=2005&amp;author=Hutley%2CLB&amp;author=Leuning%2CR&amp;author=Beringer%2CJ&amp;author=Cleugh%2CHA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR136\">Grace, J., Jose, J. S., Meir, P., Miranda, H. S. &amp; Montes, R. A. Productivity and carbon fluxes of tropical savannas. J. Biogeogr. 33, 387\u2013400 (2006).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 136\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Productivity%20and%20carbon%20fluxes%20of%20tropical%20savannas&amp;journal=J.%20Biogeogr.&amp;volume=33&amp;pages=387-400&amp;publication_year=2006&amp;author=Grace%2CJ&amp;author=Jose%2CJS&amp;author=Meir%2CP&amp;author=Miranda%2CHS&amp;author=Montes%2CRA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR137\">Blaser, W. J., Shanungu, G. K., Edwards, P. J. &amp; Olde Venterink, H. Woody encroachment reduces nutrient limitation and promotes soil carbon sequestration. Ecol. Evol. 4, 1423\u20131438 (2014).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 137\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Woody%20encroachment%20reduces%20nutrient%20limitation%20and%20promotes%20soil%20carbon%20sequestration&amp;journal=Ecol.%20Evol.&amp;volume=4&amp;pages=1423-1438&amp;publication_year=2014&amp;author=Blaser%2CWJ&amp;author=Shanungu%2CGK&amp;author=Edwards%2CPJ&amp;author=Olde%20Venterink%2CH\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR138\">Fei, X. et al. Eddy covariance and biometric measurement s show that a savanna ecosystem in Southwest China is a carbon sink. Sci. Rep. 7, 41025 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC2sXitVyhtrk%3D\" aria-label=\"CAS reference 138\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 138\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Eddy%20covariance%20and%20biometric%20measurement%20s%20show%20that%20a%20savanna%20ecosystem%20in%20Southwest%20China%20is%20a%20carbon%20sink&amp;journal=Sci.%20Rep.&amp;volume=7&amp;publication_year=2017&amp;author=Fei%2CX\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR139\">Conant, R. T., Paustian, K. &amp; Elliott, E. T. Grassland management and conversion into grassland: effects on soil carbon. Ecol. Appl. 11, 343\u2013355 (2001).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 139\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Grassland%20management%20and%20conversion%20into%20grassland%3A%20effects%20on%20soil%20carbon&amp;journal=Ecol.%20Appl.&amp;volume=11&amp;pages=343-355&amp;publication_year=2001&amp;author=Conant%2CRT&amp;author=Paustian%2CK&amp;author=Elliott%2CET\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR140\">Derner, J. D., Boutton, T. W. &amp; Briske, D. D. Grazing and ecosystem carbon storage in the North American Great Plains. Plant Soil 280, 77\u201390 (2006).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD28XhslOrs7w%3D\" aria-label=\"CAS reference 140\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 140\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Grazing%20and%20ecosystem%20carbon%20storage%20in%20the%20North%20American%20Great%20Plains&amp;journal=Plant%20Soil&amp;volume=280&amp;pages=77-90&amp;publication_year=2006&amp;author=Derner%2CJD&amp;author=Boutton%2CTW&amp;author=Briske%2CDD\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR141\">Guzman, J. G. &amp; Al-Kaisi, M. Landscape position and age of reconstructed prairies effect on soil organic carbon sequestration rate and aggregate associated carbon. J. Soil Water Conserv. 65, 9\u201321 (2010).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 141\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Landscape%20position%20and%20age%20of%20reconstructed%20prairies%20effect%20on%20soil%20organic%20carbon%20sequestration%20rate%20and%20aggregate%20associated%20carbon&amp;journal=J.%20Soil%20Water%20Conserv.&amp;volume=65&amp;pages=9-21&amp;publication_year=2010&amp;author=Guzman%2CJG&amp;author=Al-Kaisi%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR142\">DeLuca, T. H. &amp; Zabinski, C. A. Prairie ecosystems and the carbon problem. Front. Ecol. Environ. 9, 407\u2013413 (2011).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 142\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Prairie%20ecosystems%20and%20the%20carbon%20problem&amp;journal=Front.%20Ecol.%20Environ.&amp;volume=9&amp;pages=407-413&amp;publication_year=2011&amp;author=DeLuca%2CTH&amp;author=Zabinski%2CCA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR143\">Ampleman, M. D., Crawford, K. M. &amp; Fike, D. A. Differential soil organic carbon storage at forb- and grass-dominated plant communities, 33 years after tallgrass prairie restoration. Plant Soil 374, 899\u2013913 (2014).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC3sXhsFOktbrE\" aria-label=\"CAS reference 143\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 143\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Differential%20soil%20organic%20carbon%20storage%20at%20forb-%20and%20grass-dominated%20plant%20communities%2C%2033%20years%20after%20tallgrass%20prairie%20restoration&amp;journal=Plant%20Soil&amp;volume=374&amp;pages=899-913&amp;publication_year=2014&amp;author=Ampleman%2CMD&amp;author=Crawford%2CKM&amp;author=Fike%2CDA\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR144\">Salemme, R. K., Olson, K. R., Gennadiyev, A. N. &amp; Kovach, R. G. Effects of land use change, cultivation, and landscape position on prairie soil organic carbon stocks. Open J. Soil Sci. 8, 163\u2013173 (2018).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BC1MXhs1Smt7nO\" aria-label=\"CAS reference 144\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 144\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Effects%20of%20land%20use%20change%2C%20cultivation%2C%20and%20landscape%20position%20on%20prairie%20soil%20organic%20carbon%20stocks&amp;journal=Open%20J.%20Soil%20Sci.&amp;volume=8&amp;pages=163-173&amp;publication_year=2018&amp;author=Salemme%2CRK&amp;author=Olson%2CKR&amp;author=Gennadiyev%2CAN&amp;author=Kovach%2CRG\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR145\">Fisher, M. J. et al. Carbon storage by introduced deep-rooted grasses in the South American savannas. Nature 371, 236\u2013238 (1994).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 145\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20storage%20by%20introduced%20deep-rooted%20grasses%20in%20the%20South%20American%20savannas&amp;journal=Nature&amp;volume=371&amp;pages=236-238&amp;publication_year=1994&amp;author=Fisher%2CMJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR146\">Post, W. M. &amp; Kwon, K. C. Soil carbon sequestration and land\u2010use change: processes and potential. Glob. Change Biol. 6, 317\u2013327 (2006).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 146\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Soil%20carbon%20sequestration%20and%20land%E2%80%90use%20change%3A%20processes%20and%20potential&amp;journal=Glob.%20Change%20Biol.&amp;volume=6&amp;pages=317-327&amp;publication_year=2006&amp;author=Post%2CWM&amp;author=Kwon%2CKC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR147\">Archer, S. et al. (eds) in Global Environmental Change in the Ocean and on Land 359\u2013373 (Terrapub, 2004).<\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR148\">V\u00e5gen, T. G., Lal, R. &amp; Singh, B. R. Soil carbon sequestration in sub\u2010Saharan Africa: a review. Land Degrad. Dev. 16, 53\u201371 (2005).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 148\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Soil%20carbon%20sequestration%20in%20sub%E2%80%90Saharan%20Africa%3A%20a%20review&amp;journal=Land%20Degrad.%20Dev.&amp;volume=16&amp;pages=53-71&amp;publication_year=2005&amp;author=V%C3%A5gen%2CTG&amp;author=Lal%2CR&amp;author=Singh%2CBR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR149\">Boutton, T. W., Liao, J. D., Filley, T. R. &amp; Archer, S. R. Belowground carbon storage and dynamics accompanying woody plant encroachment in a subtropical savanna. Soil Carbon Sequestration Greenhouse Eff. 57, 181\u2013205 (2009).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD1MXktFKmsrY%3D\" aria-label=\"CAS reference 149\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 149\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Belowground%20carbon%20storage%20and%20dynamics%20accompanying%20woody%20plant%20encroachment%20in%20a%20subtropical%20savanna&amp;journal=Soil%20Carbon%20Sequestration%20Greenhouse%20Eff.&amp;volume=57&amp;pages=181-205&amp;publication_year=2009&amp;author=Boutton%2CTW&amp;author=Liao%2CJD&amp;author=Filley%2CTR&amp;author=Archer%2CSR\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR150\">Maia, S. M., Ogle, S. M., Cerri, C. E. &amp; Cerri, C. C. Effect of grassland management on soil carbon sequestration in Rond\u00f4nia and Mato Grosso states, Brazil. Geoderma 149, 84\u201391 (2009).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" rel=\"nofollow noopener\" data-track-label=\"link\" data-track-item_id=\"link\" data-track-value=\"cas reference\" data-track-action=\"cas reference\" href=\"https:\/\/www.nature.com\/articles\/cas-redirect\/1:CAS:528:DC%2BD1MXhtF2nurY%3D\" aria-label=\"CAS reference 150\" target=\"_blank\">CAS<\/a>\u00a0<br \/>\n    <a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 150\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Effect%20of%20grassland%20management%20on%20soil%20carbon%20sequestration%20in%20Rond%C3%B4nia%20and%20Mato%20Grosso%20states%2C%20Brazil&amp;journal=Geoderma&amp;volume=149&amp;pages=84-91&amp;publication_year=2009&amp;author=Maia%2CSM&amp;author=Ogle%2CSM&amp;author=Cerri%2CCE&amp;author=Cerri%2CCC\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR151\">R\u00e4s\u00e4nen, M. et al. Carbon balance of a grazed savanna grassland ecosystem in South Africa. Biogeosciences 14, 1039\u20131054 (2017).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 151\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Carbon%20balance%20of%20a%20grazed%20savanna%20grassland%20ecosystem%20in%20South%20Africa&amp;journal=Biogeosciences&amp;volume=14&amp;pages=1039-1054&amp;publication_year=2017&amp;author=R%C3%A4s%C3%A4nen%2CM\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR152\">Awuah, J., Smith, S. W., Speed, J. D. &amp; Graae, B. J. Can seasonal fire management reduce the risk of carbon loss from wildfires in a protected Guinea savanna? Ecosphere 13, e4283 (2022).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 152\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Can%20seasonal%20fire%20management%20reduce%20the%20risk%20of%20carbon%20loss%20from%20wildfires%20in%20a%20protected%20Guinea%20savanna%3F&amp;journal=Ecosphere&amp;volume=13&amp;publication_year=2022&amp;author=Awuah%2CJ&amp;author=Smith%2CSW&amp;author=Speed%2CJD&amp;author=Graae%2CBJ\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n<p class=\"c-article-references__text\" id=\"ref-CR153\">Zhou, Y. Soil carbon in tropical savannas mostly derived from grasses. Nat. Geosci. 16, 710\u2013716 (2023).<\/p>\n<p class=\"c-article-references__links u-hide-print\"><a data-track=\"click_references\" data-track-action=\"google scholar reference\" data-track-value=\"google scholar reference\" data-track-label=\"link\" data-track-item_id=\"link\" rel=\"nofollow noopener\" aria-label=\"Google Scholar reference 153\" href=\"http:\/\/scholar.google.com\/scholar_lookup?&amp;title=Soil%20carbon%20in%20tropical%20savannas%20mostly%20derived%20from%20grasses&amp;journal=Nat.%20Geosci.&amp;volume=16&amp;pages=710-716&amp;publication_year=2023&amp;author=Zhou%2CY\" target=\"_blank\"><br \/>\n                    Google Scholar<\/a>\u00a0\n                <\/p>\n","protected":false},"excerpt":{"rendered":"Nature Restoration Law (European Commission, 2023); https:\/\/environment.ec.europa.eu\/topics\/nature-and-biodiversity\/nature-restoration-law_en Holl, K. D. &amp; Brancalion, P. H. Tree planting is not&hellip;\n","protected":false},"author":2,"featured_media":48114,"comment_status":"","ping_status":"","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[22],"tags":[64,63,6696,23405,21952,41036,37408,75,1325,41034,10588,41035,28940,128],"class_list":{"0":"post-48113","1":"post","2":"type-post","3":"status-publish","4":"format-standard","5":"has-post-thumbnail","7":"category-environment","8":"tag-au","9":"tag-australia","10":"tag-climate-change-ecology","11":"tag-climate-change-mitigation","12":"tag-earth-sciences","13":"tag-earth-system-sciences","14":"tag-ecosystem-services","15":"tag-environment","16":"tag-general","17":"tag-geochemistry","18":"tag-geology","19":"tag-geophysics-geodesy","20":"tag-projection-and-prediction","21":"tag-science"},"_links":{"self":[{"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/posts\/48113","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/users\/2"}],"replies":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/comments?post=48113"}],"version-history":[{"count":0,"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/posts\/48113\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/media\/48114"}],"wp:attachment":[{"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/media?parent=48113"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/categories?post=48113"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.newsbeep.com\/au\/wp-json\/wp\/v2\/tags?post=48113"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}