Pulse Brain · Growing Health Evidence Index
Tier 3 — Observational / field trialPeer-reviewed

Risk to rely on soil carbon sequestration to offset global ruminant emissions

Yue Wang; Imke J. M. de Boer; U. Martin Persson; Raimon Ripoll-Bosch; Christel Cederberg; Pierre J. Gerber; Pete Smith; Corina E. van Middelaar

Springer Science and Business Media LLC · 2023

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Summary

Carbon sequestration in grasslands has been proposed as an important means to offset greenhouse gas emissions from ruminant systems. To understand the potential and limitations of this strategy, we need to acknowledge that soil carbon sequestration is a time-limited benefit, and there are intrinsic differences between short- and long-lived greenhouse gases. Here, our analysis shows that one tonne of carbon sequestrated can offset radiative forcing of a continuous emission of 0.99 kg methane or 0.1 kg nitrous oxide per year over 100 years. About 135 gigatonnes of carbon is required to offset the continuous methane and nitrous oxide emissions from ruminant sector worldwide, nearly twice the current global carbon stock in managed grasslands. For various regions, grassland carbon stocks would need to increase by approximately 25% - 2,000%, indicating that solely relying on carbon sequestration in grasslands to offset warming effect of emissions from current ruminant systems is not feasible.

Outcomes reported

Source report: Regenerative Agriculture, Greenwashing, and Food System Power Dynamics (2025); Regenerative Agriculture, greenwashing, and food system power dynamics (2025) File: Regenerative Agriculture greenwashing and food system dynamics.pdf Ref#: Regenerative Agriculture greenwashing and food system dynamics.pdf #21 Original: Wang, Y., de Boer, I.J.M., Persson, U.M. et al (2023). Risk to rely on soil carbon sequestration to offset global ruminant emissions. Nat Commun 14, 7625. https://doi.org/10.1038/s41467-023-43452-3

Theme
Farming systems, soils & land use
Subject
Peer-reviewed research
Study type
Research
Source type
Peer-reviewed research
Status
Published
Geography
UK
DOI
10.1038/s41467-023-43452-3
Catalogue ID
IRmohfq8ol-02755a
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