Understanding the mechanisms and potential pathways of soil carbon sequestration from the biogeochemistry perspective  

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作  者:Xiaojuan FENG Guohua DAI Ting LIU Juan JIA Erxiong ZHU Chengzhu LIU Yunpeng ZHAO Ya WANG Enze KANG Jun XIAO Wei LI 

机构地区:[1]State Key Laboratory of Vegetation and Environmental Change,Institute of Botany,Chinese Academy of Sciences,Beijing 100093,China [2]China National Botanical Garden,Beijing 100093,China [3]College of Resources and Environment,University of Chinese Academy of Sciences,Beijing 100049,China [4]Department of Earth Sciences,National Natural Science Foundation of China,Beijing 100085,China

出  处:《Science China Earth Sciences》2024年第11期3386-3396,共11页中国科学(地球科学英文版)

基  金:supported by the National Natural Science Foundation of China (Grant Nos. 42025303 & 42242014)。

摘  要:Soil carbon sequestration is listed by the United Nations Framework Convention on Climate Change as one of the key ways to achieve long-term “carbon neutrality” in the context of global warming. Soil carbon sequestration is a complex biogeochemical process that involves plants, microbes, and rock minerals at its core. Yet, its regulation mechanisms and promotion pathways remain unclear. This paper reviews recent progress in the related domestic and international research and provides an overview of the key processes and mechanisms of soil carbon sequestration. The main pathways for enhancing soil carbon sequestration(including plant inputs, mineral protection, microbial transformation, and rock weathering) are summarized. The paper also discusses and synthesizes how advanced biogeochemical methods and technologies may be employed to explore soil carbon sequestration mechanisms and potentials. The overall aim of this review is to improve our understanding of soil carbon sequestration as a nature-based solution to combatting climate change from the biogeochemistry perspective, and to highlight the role of fundamental research in Earth Sciences in helping to achieve China's carbon neutrality goals.

关 键 词:Carbon neutrality Plant input Microbial carbon pump Mineral protection Rock weathering 

分 类 号:P593[天文地球—地球化学] X144[天文地球—地质学]

 

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