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Land use and cover change accelerated China's land carbon sinks limits soil carbon

Environmental Studies and Forestry

Land use and cover change accelerated China's land carbon sinks limits soil carbon

Y. Cheng, P. Luo, et al.

This groundbreaking study by Yue Cheng, Peng Luo, Hao Yang, Mingwang Li, Ming Ni, Honglin Li, Yu Huang, Wenwen Xie, and Lihuan Wang highlights the critical effects of land use and cover change on China's soil organic carbon levels, revealing a significant 39.2% loss and the crucial role of reforestation. Discover how these changes impact our planet's carbon cycle and the potential for enhancing carbon sink capacity through strategic afforestation.

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Abstract
Land use and cover change (LUCC) significantly impacts global carbon cycles and land surface properties, accounting for 25% of the historical atmospheric CO₂ increase. We explore a previously overlooked role of LUCC in driving the land carbon cycle by using a three-level meta-analysis and Land Use Harmonization data to drive an ecosystem model. Our findings reveal that a loss of 39.2% of soil organic carbon (SOC) change in China due to LUCC, mitigated by afforestation, doubles gross primary productivity at 0.02 Pg C yr⁻¹, countering central China's urbanization decline. Indirect climate effects, especially soil bulk density, significantly impact SOC compared to direct climate effects. LUCC has significantly increased the Chinese terrestrial carbon sink, with net ecosystem productivity reaching 0.02 ± 0.12 Pg C yr⁻¹. Our study underscores the importance of reforestation and afforestation in addressing climate change and enhancing carbon sinks in future carbon management.
Publisher
npj Climate and Atmospheric Science
Published On
Aug 27, 2024
Authors
Yue Cheng, Peng Luo, Hao Yang, Mingwang Li, Ming Ni, Honglin Li, Yu Huang, Wenwen Xie, Lihuan Wang
Tags
land use change
carbon cycle
soil organic carbon
afforestation
carbon sink
ecosystem productivity
China
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