Land use change reshaped soil carbon dynamics in Northern China

Northern China has experienced some of the most intensive land use changes globally, yet the consequent impacts on soil carbon dynamics and regional source-sink patterns, particularly the divergent responses of soil organic carbon (SOC) and soil inorganic carbon (SIC), remain poorly quantified. This study examined how land use change reshapes SOC and SIC pools and modulates their sensitivity to environmental drivers. Using nationwide soil survey data from the 1980s and 2010s, we applied random forest models and partial least squares structural equation modeling to disentangle the responces SOC and SIC pools for land use and environmental change. Results revealed that Northern China functioned as a net soil carbon source over the 30-year interval, losing approximately 0.56 Gt of SOC and 0.56 Gt of SIC. Land use type emerged as the dominant control on carbon source-sink patterns. Grassland transitioned into strong carbon sources driven primarily by SIC losses of 1.51 Gt, whereas unutilized land exhibited estimated net carbon gains with apparent SIC accumulation of 2.06 Gt. Beyond altering carbon stocks, land use change reversed regional source-sink patterns and markedly heightened the sensitivity of soil carbon dynamics to environmental changes with explanatory strength increment of 0.11 for SOC and 0.09 for SIC, respectively. Specifically, SOC responded primarily to biotic drivers such as vegetation productivity, while SIC exhibited tighter coupling with increasing atmospheric CO 2 fluctuations. The main contribution of this study is revealing how SOC and SIC respond differently to environmental drivers following land use change. Practically, these results indicate that regional carbon management strategies must fully consider land use change effects and explicitly include soil inorganic carbon in carbon neutrality accounting frameworks.

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Publication Details

Journal
PLoS ONE
Published
2026-10-09
DOI
https://doi.org/10.1371/journal.pone.0359439
Primary Topic
Soil Carbon and Nitrogen Dynamics
Type
article
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article

Land use change reshaped soil carbon dynamics in Northern China

Yanbing Qi, Yuchun Yang, Yuanyuan Tang, Guohong Du
PLoS ONE
Soil Carbon and Nitrogen Dynamics
article

Land use change reshaped soil carbon dynamics in Northern China

Yanbing Qi, Yuchun Yang, Yuanyuan Tang, Guohong Du
article en

Abstract

Northern China has experienced some of the most intensive land use changes globally, yet the consequent impacts on soil carbon dynamics and regional source-sink patterns, particularly the divergent responses of soil organic carbon (SOC) and soil inorganic carbon (SIC), remain poorly quantified. This study examined how land use change reshapes SOC and SIC pools and modulates their sensitivity to environmental drivers. Using nationwide soil survey data from the 1980s and 2010s, we applied random forest models and partial least squares structural equation modeling to disentangle the responces SOC and SIC pools for land use and environmental change. Results revealed that Northern China functioned as a net soil carbon source over the 30-year interval, losing approximately 0.56 Gt of SOC and 0.56 Gt of SIC. Land use type emerged as the dominant control on carbon source-sink patterns. Grassland transitioned into strong carbon sources driven primarily by SIC losses of 1.51 Gt, whereas unutilized land exhibited estimated net carbon gains with apparent SIC accumulation of 2.06 Gt. Beyond altering carbon stocks, land use change reversed regional source-sink patterns and markedly heightened the sensitivity of soil carbon dynamics to environmental changes with explanatory strength increment of 0.11 for SOC and 0.09 for SIC, respectively. Specifically, SOC responded primarily to biotic drivers such as vegetation productivity, while SIC exhibited tighter coupling with increasing atmospheric CO 2 fluctuations. The main contribution of this study is revealing how SOC and SIC respond differently to environmental drivers following land use change. Practically, these results indicate that regional carbon management strategies must fully consider land use change effects and explicitly include soil inorganic carbon in carbon neutrality accounting frameworks.

PLoS ONEVol. 21(10)
Xichang University (CN), Northwest A&F University (CN)
Openalex Percentile: Top 14%
Soil Carbon and Nitrogen Dynamics
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Land use change reshaped soil carbon dynamics in Northern China — Yanbing Qi, Yuchun Yang, et al. · PLoS ONE (2026) | TGRS Research Map | TGRS