Significant loss of soil inorganic carbon at the continental scale

文献类型: 外文期刊

第一作者: Song, Xiao-Dong

作者: Song, Xiao-Dong;Yang, Fei;Wu, Hua-Yong;Zhang, Jing;Li, De-Cheng;Liu, Feng;Zhao, Yu-Guo;Yang, Jin-Ling;Ju, Bing;Huang, Biao;Zhang, Gan-Lin;Zhang, Jing;Zhao, Yu-Guo;Yang, Jin-Ling;Zhang, Gan-Lin;Cai, Chong-Fa;Chen, Jia-Ying;Wang, Tian-Wei;Long, Huai-Yu;Chen, Yin-Jun;Lu, Ying;Sui, Yue-Yu;Wang, Qiu-Bing;Han, Chun-Lan;Sun, Fu-Jun;Wu, Ke-Ning;Zhang, Feng-Rong;Zhang, Ming-Kui;Shi, Zhou;Ma, Wan-Zhu;Xin, Gang;Qi, Zhi-Ping;Wang, Deng-Feng;Chang, Qing-Rui;Ci, En;Yuan, Da-Gang;Zhang, Yang-Zhu;Zhou, Qing;Bai, Jun-Ping;Chen, Jie;Dong, Yun-Zhong;Li, Ling;Liu, Li-Ming;Pan, Jian-Jun;Song, Fu-Peng;Wei, Xiang-Hua;Wu, Hong-Qi;Zhao, Xia;Zhang, Gan-Lin

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关键词: China; soil inorganic carbon stocks; global change; carbonate; soil acidification

期刊名称:NATIONAL SCIENCE REVIEW ( 影响因子:23.178; 五年影响因子:23.92 )

ISSN: 2095-5138

年卷期: 2022 年 9 卷 2 期

页码:

收录情况: SCI

摘要: Widespread soil acidification due to atmospheric acid deposition and agricultural fertilization may greatly accelerate soil carbonate dissolution and CO2 release. However, to date, few studies have addressed these processes. Here, we use meta-analysis and nationwide-survey datasets to investigate changes in soil inorganic carbon (SIC) stocks in China. We observe an overall decrease in SIC stocks in topsoil (0-30 cm) (11.33 g C m(-2) yr(-1)) from the 1980s to the 2010s. Total SIC stocks have decreased by similar to 8.99 +/- 2.24% (1.37 +/- 0.37 Pg C). The average SIC losses across China (0.046 Pg C yr(-1)) and in cropland (0.016 Pg C yr(-1)) account for similar to 17.6%-24.0% of the terrestrial C sink and 57.1% of the soil organic carbon sink in cropland, respectively. Nitrogen deposition and climate change have profound influences on SIC cycling. We estimate that similar to 19.12%-19.47% of SIC stocks will be further lost by 2100. The consumption of SIC may offset a large portion of global efforts aimed at ecosystem carbon sequestration, which emphasizes the importance of achieving a better understanding of the indirect coupling mechanisms of nitrogen and carbon cycling and of effective countermeasures to minimize SIC loss. Significant loss of soil inorganic carbon forced by the input and transformation of anthropogenic reactive nitrogen at the continental scale offsets much of carbon sequestration in the terrestrial ecosystems.

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