1. 基于 PLUS 与 InVEST 模型的黄河流域九省(区)碳储量变化分析.
- Author
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丛中笑, 刘金花, 孙增禹, 郑永兴, 孔凡豪, and 刁克浩
- Abstract
Land use change is the main cause of carbon stock change in terrestrial ecosystems. Accurate assessment of carbon storage in terrestrial ecosystem is of great significance to strengthen ecosystem protection and realize the goal of double carbon. This paper analyzed the land use pattern under three scenarios (inertial development, cropland protection and ecological protection) from 2000 to 2020 and 2030 with the help of the InVEST model and the PLUS model, and evaluated the characteristics of the changes in carbon stock at each stage. The results show that the carbon stocks in the nine provinces (regions) of the Yellow River Basin in 2000, 2010 and 2020 are 19 324.40×106 t, 19 178.39×106 t and 19 303.26×106 t respectively, with an overall U-shaped distribution, mainly because of the large reduction of ecological land mainly in grassland from 2000 to 2010. The carbon stock in the three scenarios of inertial development, cropland protection and ecological protection in 2030 is 19 522.68×106 t, 19 630.36×106 t and 19 673.35×106 t respectively, and all of them showing an increasing trend. Among them, the ecological protection scenario and the cropland protection scenario have higher carbon stock increment than the inertia development scenario. The land type changes that significantly enhance carbon stock are mainly the conversion from cropland land to forest land and the conversion from grassland to forest land. The study shows that in the context of arable land protection and ecological protection, ecological fallowing, afforestation, unused land development and reclamation of construction land to increase greening are effective in increasing the regional carbon stock and improving the regional carbon sink capacity, which provides a scientific basis for the decision-making on the management of land use in the Yellow River Basin and the optimization of its structure. [ABSTRACT FROM AUTHOR]
- Published
- 2024
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