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Article

Research on Landscape Pattern Construction and Ecological Restoration of Jiuquan City Based on Ecological Security Evaluation

1
College of Geographic and Environmental Science, Northwest Normal University, Lanzhou 730070, China
2
Gansu Engineering Research Center of Land Utilization and Comprehension Consolidation, Lanzhou 730070, China
3
College of Foreign Languages & Literature, Northwest Normal University, Lanzhou 730070, China
*
Author to whom correspondence should be addressed.
Sustainability 2021, 13(10), 5732; https://doi.org/10.3390/su13105732
Submission received: 19 April 2021 / Revised: 10 May 2021 / Accepted: 14 May 2021 / Published: 20 May 2021
(This article belongs to the Section Environmental Sustainability and Applications)

Abstract

Jiuquan City is a typical ecologically fragile area in the arid areas of Northwest China, and unreasonable human activities directly affect the regional ecological security. Scientifically, it is necessary to construct an ecological landscape pattern on the basis of ecological security evaluation. This paper selected evaluation factors based on the perspective of “environmental base and human interference”, used spatial principal component analysis (SPCA) to comprehensively evaluate the regional landscape ecological security, and used the minimum cumulative resistance (MCR) model to construct the regional ecological security pattern. The results show that the overall ecological security level of the study area is low, and the area with a moderate safety level and below is 122,100 km2, accounting for 72.57% of the total area of the study area. The total area of the identified ecological source area is 6683 km2, the spatial distribution is extremely uneven, and it is extremely concentrated in the southern region; 32 ecological corridors with a total length of 3817.8 km are identified, of which corridor NO. 1–4 run through the Qilian Mountains, 11 oasis areas, and 14 nature reserves. The length of ecological corridors is 1376.1 km, accounting for 36.04% of the total. Forty-two ecological nodes are identified, and the central corridor area is more distributed; four ecological restoration zones are divided, including an ecological conservation zone, ecological improvement zone, ecological control zone, and ecological restoration zone, with areas of 34,380.3 km2, 61,884.4 km2, 21,134.4 km2, and 50,648.3 km2, respectively. Through the delineation of the urban ecological network pattern composed of source areas, corridors, and nodes, as well as the delineation of ecological restoration zones, the ecological security level of the study area will be effectively improved. Furthermore, a new method of ecological restoration zoning will be used, hoping to provide a useful reference for improving the quality of the ecological environment in arid areas and optimizing the spatial pattern of the land.
Keywords: ecological security assessment; SPCA; MCR; landscape pattern; ecological restoration; Jiuquan City ecological security assessment; SPCA; MCR; landscape pattern; ecological restoration; Jiuquan City

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MDPI and ACS Style

Wang, Z.; Shi, P.; Zhang, X.; Tong, H.; Zhang, W.; Liu, Y. Research on Landscape Pattern Construction and Ecological Restoration of Jiuquan City Based on Ecological Security Evaluation. Sustainability 2021, 13, 5732. https://doi.org/10.3390/su13105732

AMA Style

Wang Z, Shi P, Zhang X, Tong H, Zhang W, Liu Y. Research on Landscape Pattern Construction and Ecological Restoration of Jiuquan City Based on Ecological Security Evaluation. Sustainability. 2021; 13(10):5732. https://doi.org/10.3390/su13105732

Chicago/Turabian Style

Wang, Ziyang, Peiji Shi, Xuebin Zhang, Huali Tong, Weiping Zhang, and Yue Liu. 2021. "Research on Landscape Pattern Construction and Ecological Restoration of Jiuquan City Based on Ecological Security Evaluation" Sustainability 13, no. 10: 5732. https://doi.org/10.3390/su13105732

APA Style

Wang, Z., Shi, P., Zhang, X., Tong, H., Zhang, W., & Liu, Y. (2021). Research on Landscape Pattern Construction and Ecological Restoration of Jiuquan City Based on Ecological Security Evaluation. Sustainability, 13(10), 5732. https://doi.org/10.3390/su13105732

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