September 2025

Journal

The weak land carbon sink hypothesis

By:
Randerson, James; Li, Yue; Fu, Weiwei; Primeau, Francois; Kim, Jinhyuk; Mu, Mingquan; Hoffman, Forrest M; Trugman, Anna; Yang, Linqing; Wu, Chao; Wang, Jonathan; Anderegg, William; Baccini, Alessandro; Friedl, Mark; Saatchi, Sassan; Denning, A.; Goulden, Michael
Journal Name:
Science Advances
Volume:
11
Issue Number:
37
Publication Date:
September 11, 2025
View DOI Listing:
https://doi.org/10.1126/sciadv.adr5489

Abstract

Over the past three decades, assessments of the contemporary global carbon budget consistently report a strong net land carbon sink. Here, we review evidence supporting this paradigm and quantify the differences in global and Northern Hemisphere estimates of the net land sink derived from atmospheric inversion and satellite-derived vegetation biomass time series. Our analysis, combined with additional synthesis, supports a hypothesis that the net land sink is substantially weaker than commonly reported. At a global scale, our estimate of the net land carbon sink is 0.8 ± 0.7 petagrams of carbon per year from 2000 through 2019, nearly a factor of two lower than the Global Carbon Project estimate. With concurrent adjustments to ocean (+8%) and fossil fuel (−6%) fluxes, we develop a budget that partially reconciles key constraints provided by vegetation carbon, the north-south CO2 gradient, and O2 trends. We further outline potential modifications to models to improve agreement with a weaker land sink and describe several approaches for testing the hypothesis.


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