[不同发展情景下黄河流域山西段的生态环境质量]。

Q3 Environmental Science 应用生态学报 Pub Date : 2024-05-01 DOI:10.13287/j.1001-9332.202405.027
Shao-Tong Fu, Chen-Xi He, Jia-Kai Ma, Ben Wang, Zhi-Lei Zhen
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引用次数: 0

摘要

山西省在整个黄河流域生态格局中具有重要的战略地位。为了研究 2000-2020 年黄河流域山西段生态环境的变化,我们选取 MODIS 遥感影像数据,基于绿度、湿度、干度和热度的主成分分析,确定了遥感生态指数(RSEI)。然后,我们分析了该地区生态质量的时空变化,探讨了影响因素。我们进一步利用 CA-Markov 模型模拟和预测了 2030 年黄河流域山西段不同发展情景下的生态环境。结果表明,RSEI 在黄河流域山西段具有良好的适用性,可用于监测和评价黄河流域山西段生态环境的时空变化。从 2000 年至 2020 年,黄河流域山西段以低质量生境区为主,其中 2000 年至 2010 年生态环境质量持续改善,2010 年至 2020 年有所下降。优质生境区主要分布在自然条件优越、生物多样性丰富的山区,而低生态环境质量区主要分布在矿业发达的太原盆地和研究区北部。气候因素与研究区北部和中部的生态环境质量呈负相关,与山区的生态环境质量呈正相关。在三种发展情景下,2030 年的耕地面积、森林面积、水域面积和建设用地面积均比 2020 年有所增加。与自然发展情景和耕地保护情景相比,以 RSEI 为限制因子的生态约束情景下,新增森林面积最高,耕地和建设用地扩张率最低。研究结果将为黄河流域山西段土地空间规划和生态环境保护提供参考。
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[Ecological environment quality of the Shanxi section of the Yellow River Basin under different development scenarios].

Shanxi Province holds an important strategic position in the overall ecological pattern of the Yellow River Basin. To investigate the changes of the ecological environment in the Shanxi section of the Yellow River Basin from 2000 to 2020, we selected MODIS remote sensing image data to determine the remote sensing ecological index (RSEI) based on the principal component analysis of greenness, humidity, dryness, and heat. Then, we analyzed the spatial and temporal variations of ecological quality in this region to explore the influencing factors. We further used the CA-Markov model to simulate and predict the ecological environment under different development scenarios in the Shanxi section of the Yellow River Basin in 2030. The results showed that RSEI had good applicability in the Shanxi section of the Yellow River Basin which could be used to monitor and evaluate the spatiotemporal variations in its ecological environment. From 2000 to 2020, the Shanxi section of the Yellow River Basin was dominated by low quality habitat areas, in which the ecological environment quality continued to improve from 2000 to 2010 and decreased from 2010 to 2020. The high quality habitat areas mainly located on the mountainous areas with superior natural conditions and rich biodiversity, while the low ecological quality areas were mainly in the Taiyuan Basin and the northern part of the study area, where the mining industry developed well. Climate factors were negatively correlated with ecological environment quality in the northern and central parts of the study area, and positively correlated with that in the mountainous area. Under all three development scenarios, the area of cultivated land, forest, water and construction land increased in 2030 compared to that in 2020. Compared to the natural development scenario and the cultivated land protection scenario, the ecological constraint scenario with RSEI as the limiting factor had the highest area of new forest and the lowest expansion rate of cultivated land and construction land. The results would provide a reference for land space planning and ecological environment protection in the Shanxi section of the Yellow River Basin.

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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%
发文量
11393
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