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基于电路理论的生态安全格局识别与保护研究——以济南市为例

Research on recognition and protection of ecological security patterns based on circuit theory: a case study of Jinan City.

机构信息

School of Land Science and Technology, China University of Geosciences, 29 Xueyuan Rd., Beijing, 100083, China.

Key Laboratory of Land Consolidation and Rehabilitation, Ministry of Land and Resources, 37 Guanying Rd, Beijing, 100035, China.

出版信息

Environ Sci Pollut Res Int. 2020 Apr;27(11):12414-12427. doi: 10.1007/s11356-020-07764-x. Epub 2020 Jan 28.

Abstract

Accelerated urbanization and population growth have resulted in the loss of ecological land and biodiversity, accompanied by the degradation of ecosystem services. Identifying and improving existing ecological security patterns are of great significance for maintaining the sustainable development of cities. In this study, Jinan, the capital of China's Shandong Province, was used as a case study area. Based on three ecosystem services, namely, soil conservation, water conservation and carbon fixation, ecological sources were determined. Furthermore, a resistance surface was constructed based on biodiversity. On these bases, the circuit theory concept of random walks was applied to simulate ecosystem processes in a heterogeneous landscape and identify ecological corridors, pinch points and barriers. A total of 25 ecological sources, 48 ecological corridors and 19 pinch points were identified, and restoration areas were delimited to three levels. These elements together constituted the ecological security patterns. Specifically, the ecological sources were mainly distributed in southern Jinan and were covered mostly with forest land. The ecological corridors were located mainly in the eastern and southwestern plains below the southern mountainous areas and were covered mostly with cropland. Furthermore, the eastern corridors were much longer than the southwestern corridors. Pinch points were distributed mostly along rivers or around large-scale construction land. Barriers were distributed mainly in Zhangqiu District and northern Licheng District. Based on these findings, hierarchical restoration areas were delimited. Differentiated development contradictions in restoration areas were discussed, and corresponding ecological protection measures were proposed. An ecological security optimization pattern of "one center, two wings, and two belts" was finally proposed to provide planning strategies for decision-makers.

摘要

城市化和人口增长的加速导致生态土地和生物多样性的丧失,同时还伴随着生态系统服务的退化。识别和改善现有的生态安全格局对于维护城市的可持续发展具有重要意义。本研究以中国山东省省会济南市为案例研究区。基于土壤保持、水源涵养和固碳三种生态系统服务功能,确定了生态源地。此外,还基于生物多样性构建了阻力面。在此基础上,运用随机漫步的电路理论概念模拟异质景观中的生态过程,识别生态廊道、瓶颈和障碍点。共识别出 25 个生态源地、48 条生态廊道和 19 个瓶颈点,并划定了三个层次的修复区。这些要素共同构成了生态安全格局。具体而言,生态源地主要分布在济南市南部,以林地为主;生态廊道主要分布在南部山区以下的东部和西南部平原,以耕地为主;此外,东部廊道比西南部廊道长得多。瓶颈点主要分布在河流沿线或大型建设用地周围。障碍点主要分布在章丘区和历城区北部。在此基础上,划定了分层次的修复区。讨论了修复区的差异化发展矛盾,并提出了相应的生态保护措施。最后提出了“一心两翼两带”的生态安全优化格局,为决策者提供了规划策略。

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