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Estimating aboveground net biomass change for tropical and subtropical forests: refinement of IPCC default rates using forest plot data

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dc.contributor.author Requena Suarez, Daniela en
dc.contributor.author Rozendaal, Danaë M. A. en
dc.contributor.author De Sy, Veronique en
dc.contributor.author Phillips, Oliver L. en
dc.contributor.author Alvarez-Dávila, Esteban en
dc.contributor.author Anderson-Teixeira, Kristina J. en
dc.contributor.author Araujo-Murakami, Alejandro en
dc.contributor.author Arroyo, Luzmila en
dc.contributor.author Baker, Timothy R. en
dc.contributor.author Bongers, Frans en
dc.contributor.author Brienen, Roel J. W. en
dc.contributor.author Carter, Sarah en
dc.contributor.author Cook-Patton, Susan en
dc.contributor.author Feldpausch, Ted R. en
dc.contributor.author Griscom, Bronson W. en
dc.contributor.author Harris, Nancy en
dc.contributor.author Hérault, Bruno en
dc.contributor.author Honorio Coronado, Eurídice N. en
dc.contributor.author Leavitt, Sara M. en
dc.contributor.author Lewis, Simon L. en
dc.contributor.author Marimon, Beatriz S. en
dc.contributor.author Monteagudo Mendoza, Abel en
dc.contributor.author N'dja, Justin Kassi en
dc.contributor.author N'Guessan, Anny Estelle en
dc.contributor.author Poorter, Lourens en
dc.contributor.author Qie, Lan en
dc.contributor.author Rutishauser, Ervan en
dc.contributor.author Sist, Plinio en
dc.contributor.author Sonké, Bonaventure en
dc.contributor.author Sullivan, Martin J. P. en
dc.contributor.author Vilanova, Emilio en
dc.contributor.author Wang, Maria M. H. en
dc.contributor.author Martius, Christopher en
dc.contributor.author Herold, Martin en
dc.date.accessioned 2019-07-26T02:01:44Z
dc.date.available 2019-07-26T02:01:44Z
dc.date.issued 2019
dc.identifier.citation Requena Suarez, Daniela, Rozendaal, Danaë M. A., De Sy, Veronique, Phillips, Oliver L., Alvarez-Dávila, Esteban, Anderson-Teixeira, Kristina J., Araujo-Murakami, Alejandro, Arroyo, Luzmila, Baker, Timothy R., Bongers, Frans, Brienen, Roel J. W., Carter, Sarah, Cook-Patton, Susan, Feldpausch, Ted R., Griscom, Bronson W., Harris, Nancy, Hérault, Bruno, Honorio Coronado, Eurídice N., Leavitt, Sara M., Lewis, Simon L., Marimon, Beatriz S., Monteagudo Mendoza, Abel, N'dja, Justin Kassi, N'Guessan, Anny Estelle, Poorter, Lourens et al. 2019. "<a href="https://repository.si.edu/handle/10088/98326">Estimating aboveground net biomass change for tropical and subtropical forests: refinement of IPCC default rates using forest plot data</a>." <em>Global Change Biology</em>. 25 (11):3609&ndash;3624. <a href="https://doi.org/10.1111/gcb.14767">https://doi.org/10.1111/gcb.14767</a> en
dc.identifier.issn 1354-1013
dc.identifier.uri https://hdl.handle.net/10088/98326
dc.description.abstract As countries advance in greenhouse gas (GHG) accounting for climate change mitigation, consistent estimates of aboveground net biomass change (?AGB) are needed. Countries with limited forest monitoring capabilities in the tropics and subtropics rely on IPCC 2006 default ?AGB rates, which are values per ecological zone, per continent. Similarly, research on forest biomass change at large scale also make use of these rates. IPCC 2006 default rates come from a handful of studies, provide no uncertainty indications, and do not distinguish between older secondary forests and old-growth forests. As part of the 2019 Refinement to the 2006 IPCC Guidelines for National Greenhouse Gas Inventories, we incorporate ?AGB data available from 2006 onwards, comprising 176 chronosequences in secondary forests and 536 permanent plots in old-growth and managed/logged forests located in 42 countries in Africa, North and South America, and Asia. We generated ?AGB rate estimates for younger secondary forests (=20 years), older secondary forests (&gt;20 years and up to 100 years) and old-growth forests, and accounted for uncertainties in our estimates. In tropical rainforests, for which data availability was the highest, our ?AGB rate estimates ranged from 3.4 (Asia) to 7.6 (Africa) Mg ha-1 yr-1 in younger secondary forests, from 2.3 (North and South Ameri09ca) to 3.5 (Africa) Mg ha-1 yr-1 in older secondary forests, and 0.7 (Asia) to 1.3 (Africa) Mg ha-1 yr-1 in old-growth forests. We provide a rigorous and traceable refinement of the IPCC 2006 default rates in tropical and subtropical ecological zones, and identify which areas require more research on ?AGB. In this respect, this study should be considered as an important step towards quantifying the role of tropical and subtropical forests as carbon sinks with higher accuracy; our new rates can be used for large-scale GHG accounting by governmental bodies, non-governmental organisations and in scientific research. This article is protected by copyright. All rights reserved. en
dc.relation.ispartof Global Change Biology en
dc.title Estimating aboveground net biomass change for tropical and subtropical forests: refinement of IPCC default rates using forest plot data en
dc.type Journal Article en
dc.identifier.srbnumber 151790
dc.identifier.doi 10.1111/gcb.14767
rft.jtitle Global Change Biology
rft.volume 25
rft.issue 11
rft.spage 3609
rft.epage 3624
dc.description.SIUnit STRI en
dc.description.SIUnit NZP en
dc.citation.spage 3609
dc.citation.epage 3624


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