[基于“敏感性-重要性-连通性”框架的区域生态安全格局构建:以贵州省为例]。

Q3 Environmental Science
Zu-Qiao Gao, Chang-Bin Li, Zhi-Yuan Yang, Yi-Fei Wang, Na Shen, Xu-Yang Zhang, Mei-Jing Li, Yuan-Wen Liu
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引用次数: 0

摘要

构建生态安全格局是维护生态系统健康稳定的关键,对区域可持续发展具有重要意义。遵循“生态源区-生态阻力面-生态廊道”的研究范式,基于“敏感性-重要性-连通性”的指标框架,确定了生态源区,通过下垫面因子分级加权和兴趣点法生成了生态阻力面,利用电路理论确定了生态廊道、夹点和障碍区。构建了贵州省生态安全格局。结果表明:贵州省石漠化和水土流失极端敏感区和水资源形成、水土保持和生物多样性极端重要区面积普遍较小,分布差异较大,分别占总面积的1.6%、3.7%、25.2%、6.1%和10.4%;对外部干扰最敏感、生态系统服务功能最重要和景观连接功能最强的关键生态功能区分别占5.3%、34.2%和27.9%。共确定生态源区210个,面积27574.38 km2,面积比15.6%。生态廊道共463条,全长10049.81 km。生态捏点490个,生态屏障117个,面积分别为22.08 km2和91.04 km2。生态高抗性区主要分布在人类活动频繁的地区。在此基础上,对贵州省生态安全格局进行评估,进行生态安全区划,提出有针对性的保护和修复措施。研究结果可为贵州省土地空间规划和区域生态保护提供科学参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Construction of regional ecological security pattern based on the "sensitivity-importance-connectivity" framework: A case study of Guizhou Province].

The construction of an ecological security pattern is crucial to maintain ecosystem health and stability, with great significance for regional sustainable development. Following the research paradigm of "ecological source areas-ecological resistance surfaces-ecological corridors", based on the index framework of "sensitivity-importance-connectivity", we identified the ecological source areas, generated the ecological resistance surface through graded weighting of underlying surface factors and point of interest (POI) method, determined the ecological corridor, pinch point, and obstacle area using circuit theory, and constructed the ecological security pattern of Guizhou Pro-vince. Results showed that the areas of extremely sensitive of rocky desertification and soil erosion and the areas of extremely important areas of water resources forming, soil and water conservation and biodiversity in Guizhou Pro-vince were generally small and distributed differently, accounting for 1.6%, 3.7%, 25.2%, 6.1%, and 10.4% of the total area, respectively. The key ecological functional areas of the extremely sensitive to external disturbance, most important in ecosystem service and strongly connective in landscape accounted for 5.3%, 34.2%, and 27.9%, respectively. A total of 210 ecological source areas were identified, covering 27574.38 km2 and with an area ratio of 15.6%. The number of the ecological corridor was counted into 463, with a total length of 10049.81 km. The amount of ecological pinch points was 490, while that of the ecological barrier was 117, area of the both were computed into 22.08 and 91.04 km2, respectively. Ecologically high-resistance areas were mainly distributed in regions with highly frequent human activities. Based on the above construction, we assessed the ecological security pattern in Guizhou Province, conducted ecological security zoning, and proposed targeted protection and restoration mea-sures. The study could provide scientific references for the spatial planning of land and regional ecological protection in Guizhou Province.

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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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