中国东北地区陆地生态系统碳汇的现状与研究前景。

Q3 Environmental Science
Xu-Gao Wang, Xiao-Tao Lyu, Feng-Ming Xi, Zhi-Hua Liu, Yu Liang, Tian Gao, Tao Sun, Da-Pao Yu, Chao Wang, Qiang Ma, Chao Liang, Tian-Tian Zheng, Jiao-Yue Wang, Yan Yin, Ke-Wei Jiao, Bo Liu, Jiao-Jun Zhu
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引用次数: 0

摘要

提高陆地生态系统的碳汇能力是减缓气候变化和实现 "碳中和 "目标的首要战略。东北地区是中国陆地生态系统碳汇的核心贡献区,明确该地区陆地生态系统碳汇的现状和未来动态对实现 "碳中和 "至关重要。在此,我们系统地总结了中国东北地区陆地生态系统碳汇的研究现状,包括碳汇的测量和时空格局、碳汇的驱动机制、碳汇潜力评估以及增加碳固存的技术。由于数据来源和方法的差异,中国东北地区陆地生态系统碳汇的量化存在很大的不确定性,尤其是森林碳汇的测量,其范围在 0.020 至 0.157 Pg C-a-1 之间。碳汇功能取决于植物-土壤-大气界面的碳交换过程。中国东北地区在不同时空尺度下提高碳汇的关键途径尚不清楚。提高陆地生态系统质量是固碳增汇的关键和核心。然而,为实现 "双碳 "目标,迫切需要发展多生态系统协同固碳增汇技术体系。未来的研究需要发展多源数据与多尺度技术相结合的碳汇精确测量体系,准确评估东北地区碳汇功能与潜力,重点研究碳汇功能的多尺度驱动机制,发展东北陆地生态系统碳汇协同增汇新技术体系,开展碳汇增汇技术示范。这些工作将为实现 "碳中和 "目标提供科技支撑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Current status and research prospects of terrestrial ecosystem carbon sink in Northeast China.

Increasing the carbon sink capacity of terrestrial ecosystems is a primary strategy to mitigate climate change and achieve the "carbon neutrality" goal. Clarifying the status and future dynamics of carbon sink of terrestrial ecosystems in Northeast China is crucial for achieving "carbon neutrality" as this region is a core contributor to carbon sink in China's terrestrial ecosystems. Here, we systematically summarized current research on carbon sink of terrestrial ecosystems across Northeast China, including the measurements and spatial-temporal patterns of carbon sinks, driving mechanisms of carbon sinks, the assessments of carbon sink potential, and technologies for increasing carbon sequestration. There are substantial uncertainties in quantifying terrestrial ecosystem carbon sink in Northeast China due to differences in data sources and methods, especially for forest carbon sink measurements, ranging from 0.020 to 0.157 Pg C·a-1. Carbon sink function depends on carbon exchange processes across plant-soil-atmosphere interfaces. The key pathways to enhance carbon sequestration in Northeast China under different temporal and spatial scales remains unclear. Improving terrestrial ecosystem quality is the key and core of carbon sequestration and sink enhancement. However, there is an urgent need to develop a multi-ecosystem collaborative carbon sequestration and sink enhancement technology system for the "dual carbon" goal. Future research needs to develop an accurate carbon sink measurement system that integrates multi-source data and multi-scale technologies to accurately assess the function and potential of carbon sink in Northeast China, focus on the multi-scale driving mechanism of carbon sink functions, develop new technical systems for coordinated enhancement of carbon sink for the Northeast terrestrial ecosystems, and carry out demonstrations of carbon sink enhancement technologies. These efforts will provide the scientific and technological supports for achieving the "carbon neutrality" goal.

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来源期刊
应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
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0.00%
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11393
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