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Safety Evaluation of Water Environment Carrying Capacity of Five Cities in Ningxia Based on Ecological Footprint of Water Resources 被引量:1
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作者 Chang LU Rui XI +1 位作者 Zhengjun HEI Lian TANG 《Asian Agricultural Research》 2022年第5期11-16,共6页
[Objectives]To make safety evaluation of water environment carrying capacity of five cities in Ningxia based on ecological footprint of water resources.[Methods]With the help of the grey relational model,15 indicators... [Objectives]To make safety evaluation of water environment carrying capacity of five cities in Ningxia based on ecological footprint of water resources.[Methods]With the help of the grey relational model,15 indicators were selected from the natural,economic,and social aspects,and the most influential factors in the three fields were selected.Based on the concept of ecological priority,the water resources carrying capacity of the five cities in Ningxia from 2010 to 2019 was calculated with the help of the water resources ecological footprint model.Then,the indicators of the water resources ecological footprint model were coupled with the existing indicators to establish a comprehensive evaluation indicator system.Finally,the changes of the water environment carrying capacity of the five cities in Ningxia were analyzed with the help of the principal component analysis(PCA).[Results]The ecological pressure of water resources and the ecological deficit of water resources in the five cities were relatively large.Specifically,Yinchuan City had the most obvious deficit of water resources but good carrying capacity;Zhongwei City had a large ecological deficit of water resources,poor carrying capacity,and the largest ecological pressure index of water resources;Guyuan City had low water resources ecological deficit,water resources ecological carrying capacity and water resources ecological pressure index.[Conclusions]Through the analysis of the coupling indicator system,it can be seen that the water environment carrying capacity of the five cities is in an upward trend,indicating that the water environment in each region tends to become better. 展开更多
关键词 water environment carrying capacity Grey relation analysis(GRA) Principal component analysis(PCA) water resources ecological footprint Influencing factors
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Ecological considerations in integrated water resource management
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《Global Geology》 1998年第1期59-60,共2页
关键词 ecological considerations in integrated water resource management
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Research on the hydrogeochemical model for water resources and ecological environment
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《Global Geology》 1998年第1期84-84,共1页
关键词 Research on the hydrogeochemical model for water resources and ecological environment
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Water resources development and utilization and ecological environment problems in Xinjiang of China
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《Global Geology》 1998年第1期48-48,共1页
关键词 water resources development and utilization and ecological environment problems in Xinjiang of China
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Water resources utilization and eco-environmental safety in Northwest China 被引量:6
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作者 ZHANG Jishi XU Jinxiang +2 位作者 ZHANG Yongqiu WANG Mingquan CHENG Zhongshan 《Journal of Geographical Sciences》 SCIE CSCD 2006年第3期277-285,共9页
Northwest China includes Xinjiang Ugyur Autonomous Region, Qinghai Province, Gansu Province, Ningxia Hui Autonomous Region and Shaanxi Province, covering 308×10^4km^2. It is located in the warm-temperate zone and... Northwest China includes Xinjiang Ugyur Autonomous Region, Qinghai Province, Gansu Province, Ningxia Hui Autonomous Region and Shaanxi Province, covering 308×10^4km^2. It is located in the warm-temperate zone and the climate is arid or semi-arid. Precipitation is very scarce but evaporation is extremely high. The climate is dry, the water resources are deficient, the ecoenvironment is fragile, and the distribution of water resources is uneven. In this region, precipitation is the only input, and evaporation is the only output in the inland rivers, and precipitation, surface water and groundwater change with each other for many times, which benefits the storage and utilization of water resources. The average precipitation in this region is 232 mm, the total precipitation amount is 7003×108m^3/a, the surface water resources are 1891×10^8m^3/a, the total natural groundwater resources are 1150×10^8m^3/a, the total available water resources are 438×10^8 m^3/a, and the total water resources are 1996×10^8m^3/a and per capita water resources are 2278 m^3/a. The water resources of the whole area are 5.94×10^4m^3/(a.km^2), being only one-fifth of the mean value in China. Now, the available water resources are 876×10^8m^3/a, among which groundwater is proximate 130×10^8m^3/a. 展开更多
关键词 west area water resource exploitation and utilization ecological safety of water resource
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