Deforestation-induced climate change reduces carbon storage in remaining tropical forests

Biophysical effects from deforestation have the potential to amplify carbon losses but are often neglected in carbon accounting systems. Here we use both Earth system model simulations and satellite–derived estimates of aboveground biomass to assess losses of vegetation carbon caused by the influence of tropical deforestation on regional climate across different continents. In the Amazon, warming and drying arising from deforestation result in an additional 5.1 ± 3.7% loss of aboveground biomass. Biophysical effects also amplify carbon losses in the Congo (3.8 ± 2.5%) but do not lead to significant additional carbon losses in tropical Asia due to its high levels of annual mean precipitation. These findings indicate that tropical forests may be undervalued in carbon accounting systems that neglect climate feedbacks from surface biophysical changes and that the positive carbon–climate feedback from deforestation-driven climate change is higher than the feedback originating from fossil fuel emissions.

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Related Dataset #1 : TRMM (TMPA/3B43) Rainfall Estimate L3 1 month 0.25 degree x 0.25 degree V7

Related Dataset #2 : Data supporting figures of deforestation_carbon_biophysics

Related Dataset #3 : GPCC Full Data Reanalysis Version 7.0 at 1.0°: Monthly Land-Surface Precipitation from Rain-Gauges built on GTS-based and Historic Data

Related Software #1 : Code supporting deforestation_carbon_biophysics

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Author Li, Y.
Brando, P. M.
Morton, D. C.
Lawrence, David M.
Yang, H.
Randerson, J. T.
Publisher UCAR/NCAR - Library
Publication Date 2022-04-12T00:00:00
Digital Object Identifier (DOI) Not Assigned
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Topic Category geoscientificInformation
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Metadata Date 2025-07-11T16:04:33.642351
Metadata Record Identifier edu.ucar.opensky::articles:25300
Metadata Language eng; USA
Suggested Citation Li, Y., Brando, P. M., Morton, D. C., Lawrence, David M., Yang, H., Randerson, J. T.. (2022). Deforestation-induced climate change reduces carbon storage in remaining tropical forests. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7kp85sq. Accessed 07 August 2025.

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