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How to measure, report and verify soil carbon change to realize the potential of soil carbon sequestration for atmospheric greenhouse gas removal

There is growing international interest in better managing soils to increase soil organic carbon (SOC) content to contribute to climate change mitigation, to enhance resilience to climate change and to underpin food security, through initiatives such as international ‘4p1000’ initiative and the FAO&...

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Autores principales: Smith, Pete, Soussana, Jean‐Francois, Angers, Denis, Schipper, Louis, Chenu, Claire, Rasse, Daniel P., Batjes, Niels H., van Egmond, Fenny, McNeill, Stephen, Kuhnert, Matthias, Arias‐Navarro, Cristina, Olesen, Jorgen E., Chirinda, Ngonidzashe, Fornara, Dario, Wollenberg, Eva, Álvaro‐Fuentes, Jorge, Sanz‐Cobena, Alberto, Klumpp, Katja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6973036/
https://www.ncbi.nlm.nih.gov/pubmed/31469216
http://dx.doi.org/10.1111/gcb.14815
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author Smith, Pete
Soussana, Jean‐Francois
Angers, Denis
Schipper, Louis
Chenu, Claire
Rasse, Daniel P.
Batjes, Niels H.
van Egmond, Fenny
McNeill, Stephen
Kuhnert, Matthias
Arias‐Navarro, Cristina
Olesen, Jorgen E.
Chirinda, Ngonidzashe
Fornara, Dario
Wollenberg, Eva
Álvaro‐Fuentes, Jorge
Sanz‐Cobena, Alberto
Klumpp, Katja
author_facet Smith, Pete
Soussana, Jean‐Francois
Angers, Denis
Schipper, Louis
Chenu, Claire
Rasse, Daniel P.
Batjes, Niels H.
van Egmond, Fenny
McNeill, Stephen
Kuhnert, Matthias
Arias‐Navarro, Cristina
Olesen, Jorgen E.
Chirinda, Ngonidzashe
Fornara, Dario
Wollenberg, Eva
Álvaro‐Fuentes, Jorge
Sanz‐Cobena, Alberto
Klumpp, Katja
author_sort Smith, Pete
collection PubMed
description There is growing international interest in better managing soils to increase soil organic carbon (SOC) content to contribute to climate change mitigation, to enhance resilience to climate change and to underpin food security, through initiatives such as international ‘4p1000’ initiative and the FAO's Global assessment of SOC sequestration potential (GSOCseq) programme. Since SOC content of soils cannot be easily measured, a key barrier to implementing programmes to increase SOC at large scale, is the need for credible and reliable measurement/monitoring, reporting and verification (MRV) platforms, both for national reporting and for emissions trading. Without such platforms, investments could be considered risky. In this paper, we review methods and challenges of measuring SOC change directly in soils, before examining some recent novel developments that show promise for quantifying SOC. We describe how repeat soil surveys are used to estimate changes in SOC over time, and how long‐term experiments and space‐for‐time substitution sites can serve as sources of knowledge and can be used to test models, and as potential benchmark sites in global frameworks to estimate SOC change. We briefly consider models that can be used to simulate and project change in SOC and examine the MRV platforms for SOC change already in use in various countries/regions. In the final section, we bring together the various components described in this review, to describe a new vision for a global framework for MRV of SOC change, to support national and international initiatives seeking to effect change in the way we manage our soils.
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spelling pubmed-69730362020-01-27 How to measure, report and verify soil carbon change to realize the potential of soil carbon sequestration for atmospheric greenhouse gas removal Smith, Pete Soussana, Jean‐Francois Angers, Denis Schipper, Louis Chenu, Claire Rasse, Daniel P. Batjes, Niels H. van Egmond, Fenny McNeill, Stephen Kuhnert, Matthias Arias‐Navarro, Cristina Olesen, Jorgen E. Chirinda, Ngonidzashe Fornara, Dario Wollenberg, Eva Álvaro‐Fuentes, Jorge Sanz‐Cobena, Alberto Klumpp, Katja Glob Chang Biol Invited Research Reviews There is growing international interest in better managing soils to increase soil organic carbon (SOC) content to contribute to climate change mitigation, to enhance resilience to climate change and to underpin food security, through initiatives such as international ‘4p1000’ initiative and the FAO's Global assessment of SOC sequestration potential (GSOCseq) programme. Since SOC content of soils cannot be easily measured, a key barrier to implementing programmes to increase SOC at large scale, is the need for credible and reliable measurement/monitoring, reporting and verification (MRV) platforms, both for national reporting and for emissions trading. Without such platforms, investments could be considered risky. In this paper, we review methods and challenges of measuring SOC change directly in soils, before examining some recent novel developments that show promise for quantifying SOC. We describe how repeat soil surveys are used to estimate changes in SOC over time, and how long‐term experiments and space‐for‐time substitution sites can serve as sources of knowledge and can be used to test models, and as potential benchmark sites in global frameworks to estimate SOC change. We briefly consider models that can be used to simulate and project change in SOC and examine the MRV platforms for SOC change already in use in various countries/regions. In the final section, we bring together the various components described in this review, to describe a new vision for a global framework for MRV of SOC change, to support national and international initiatives seeking to effect change in the way we manage our soils. John Wiley and Sons Inc. 2019-10-06 2020-01 /pmc/articles/PMC6973036/ /pubmed/31469216 http://dx.doi.org/10.1111/gcb.14815 Text en © 2019 The Authors. Global Change Biology published by John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Invited Research Reviews
Smith, Pete
Soussana, Jean‐Francois
Angers, Denis
Schipper, Louis
Chenu, Claire
Rasse, Daniel P.
Batjes, Niels H.
van Egmond, Fenny
McNeill, Stephen
Kuhnert, Matthias
Arias‐Navarro, Cristina
Olesen, Jorgen E.
Chirinda, Ngonidzashe
Fornara, Dario
Wollenberg, Eva
Álvaro‐Fuentes, Jorge
Sanz‐Cobena, Alberto
Klumpp, Katja
How to measure, report and verify soil carbon change to realize the potential of soil carbon sequestration for atmospheric greenhouse gas removal
title How to measure, report and verify soil carbon change to realize the potential of soil carbon sequestration for atmospheric greenhouse gas removal
title_full How to measure, report and verify soil carbon change to realize the potential of soil carbon sequestration for atmospheric greenhouse gas removal
title_fullStr How to measure, report and verify soil carbon change to realize the potential of soil carbon sequestration for atmospheric greenhouse gas removal
title_full_unstemmed How to measure, report and verify soil carbon change to realize the potential of soil carbon sequestration for atmospheric greenhouse gas removal
title_short How to measure, report and verify soil carbon change to realize the potential of soil carbon sequestration for atmospheric greenhouse gas removal
title_sort how to measure, report and verify soil carbon change to realize the potential of soil carbon sequestration for atmospheric greenhouse gas removal
topic Invited Research Reviews
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6973036/
https://www.ncbi.nlm.nih.gov/pubmed/31469216
http://dx.doi.org/10.1111/gcb.14815
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