表土
气候变化
环境科学
土壤碳
碳循环
碳纤维
无机碳总量
大气科学
全球变化
碳酸盐
总有机碳
土壤科学
环境化学
陆地生态系统
全球变暖
土壤水分
生态系统
降水
温室气体
气候模式
土壤有机质
底土
地球科学
全球变暖的影响
土层
气候学
碳汇
地球化学循环
作者
J. Y. Hu,Zelin Huang,Zhongxiu Sun,Xinzhe Song,Yuanyuan Huang,Kazem Zamanian,Feng Tao,Fei Yang,Huiying Wen,Ganlin ZHANG
摘要
Soil inorganic carbon (SIC) pools are comparable in size to soil organic carbon pools and are vulnerable to climate change; however, SIC responses to climate change remain uncertain because of the lack of process-based simulations. Here, we developed a new process-based model integrating daily water balance dynamics with carbonate chemical equilibria at a 10 cm vertical resolution to predict the effects of climate change on the SIC pool down to a soil depth of 2 m in China until 2100. We found that across the four shared socioeconomic pathways, SIC stock in China's topsoil (0-10 cm) decreased by 314 ± 8 Tg C, accompanied by a loss of 217 ± 9 Tg C from the 2 m soils. These findings challenge the traditional view of SIC stability in terrestrial carbon cycles, reveal substantial losses of SIC in both topsoils and deep soils, and highlight the projection of future climate and global inorganic carbon cycle feedback.
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