喀斯特
碳循环
水槽(地理)
生物地球化学循环
碳纤维
碳汇
地质学
碳中和
溶解有机碳
环境科学
土壤碳
地球科学
温室气体
生态学
环境化学
生态系统
土壤水分
土壤科学
化学
地理
生物
材料科学
古生物学
地图学
气候变化
复合数
复合材料
作者
Lvfan Chen,Liangcheng Tan,Min Zhao,Ashish Sinha,Tianli Wang,Yongli Gao
标识
DOI:10.1016/j.quaint.2023.02.009
摘要
On shorter time scales, the karst carbon cycle coupled with photosynthesis, is a potential carbon sink. The surface water biological carbon pump (BCP) plays an important role by transforming dissolved inorganic carbon (DIC) to organic carbon (OC), forming a stable carbon sink through a series of biogeochemical processes on shorter timescales (i.e., years to thousands of years). A comprehensive understanding of the karst carbon sink (KCS) is important in understanding its role in the global carbon budget and carbon neutrality. In this paper, we review the current progress and prospect future research of KCS. The world is facing a quick change in climate and rapid variation in land-use, so the interaction mechanism between the above two and KCS needs to be further understood. Manual intervention to increase KCS also deserves attention. Meanwhile, due to the complexity of the karst system and karst carbon cycle, a comprehensive (water, rock, soil, atmosphere, biology) karst carbon cycle monitoring system needs to be established, integrating different types of carbon sink (e.g., soil, forest, karst) under a research framework. An in-depth understanding of these aspects will help KCS better serve the sustainable development of human society.
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