营养物
土壤碳
环境科学
土壤水分
碳纤维
生态系统
碳循环
陆地生态系统
营养循环
沉积(地质)
磷
分解
土壤有机质
环境化学
基质(水族馆)
土壤科学
农学
生态学
化学
生物
材料科学
复合数
复合材料
古生物学
有机化学
沉积物
作者
Chen Chen,Junmin Pei,Bo Li,Changming Fang,Ming Nie,Jinquan Li
摘要
ABSTRACT Atmospheric nitrogen (N) and phosphorus (P) depositions have been shown to alter nutrient availability in terrestrial ecosystems and thus largely influence soil carbon cycling processes. However, the general pattern of nutrient‐induced changes in the temperature response of soil carbon decomposition is unknown. Yet, understanding this pattern is crucial in terms of its effect on soil carbon–climate feedback. Here, we report that N and P additions significantly increase the temperature sensitivity of soil organic carbon decomposition ( Q 10 ) by sampling soils from 36 sites across China's forests. We found that N, P, and their co‐addition (NP) significantly increased the Q 10 by 11.3%, 11.5%, and 23.9%, respectively. The enhancement effect of nutrient addition on Q 10 was more evident in soils from warm regions than in those from cold regions. Moreover, we found that nutrient‐induced changes in substrate availability and initial substrate and nutrient availability mainly regulated nutrient addition effects. Our findings highlight that N and P deposition enhances the temperature response of soil carbon decomposition, suggesting that N and P deposition should be incorporated into Earth system models to improve the projections of soil carbon feedback to climate change.
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