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Can N 2 O emissions offset the benefits from soil organic carbon storage?

Bertrand Guenet; Benoit Gabrielle; Claire Chenu; Dominique Arrouays; Jérôme Balesdent; Martial Bernoux; Elisa Bruni; Jean‐Pierre Caliman; Rémi Cardinael; Songchao Chen; Philippe Ciais; Dominique Desbois; Julien Fouche; Stefan Frank; Catherine Henault; Emanuele Lugato; Victoria Naipal; Thomas Nesme; Michael Obersteiner; Sylvain Pellerin; David S. Powlson; Daniel P. Rasse; Frédéric Rees; Jean‐François Soussana; Yang Su; Hanqin Tian; Hugo Valin; Feng Zhou
Global Change Biology · Vol. 27, Issue 2 · pp. 237-256 · 2021

Abstract

To respect the Paris agreement targeting a limitation of global warming below 2°C by 2100, and possibly below 1.5°C, drastic reductions of greenhouse gas emissions are mandatory but not sufficient. Large‐scale deployment of other climate mitigation strategies is also necessary. Among these, increasing soil organic carbon (SOC) stocks is an important lever because carbon in soils can be stored for long periods and land management options to achieve this already exist and have been widely tested. However, agricultural soils are also an important source of nitrous oxide (N 2 O), a powerful greenhouse gas, and increasing SOC may influence N 2 O emissions, likely causing an increase in many cases, thus tending to offset the climate change benefit from increased SOC storage. Here we review the main agricultural management options for increasing SOC stocks. We evaluate the amount of SOC that can be stored as well as resulting changes in N 2 O emissions to better estimate the climate benefits of these management options. Based on quantitative data obtained from published meta‐analyses and from our current level of understanding, we conclude that the climate mitigation induced by increased SOC storage is generally overestimated if associated N 2 O emissions are not considered but, with the exception of reduced tillage, is never fully offset. Some options (e.g. biochar or non‐pyrogenic C amendment application) may even decrease N 2 O emissions.

Bibliographic Information

JournalGlobal Change Biology
PublisherWiley
Publication Date2021-01-01
Publication Year2021
Volume27
Issue2
Pages237-256
Document TypeJournal Article
Print ISSN1354-1013
eISSN1365-2486
DOI10.1111/gcb.15342
SubjectConservation Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652486
Publisher PageOpen Publisher Page
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