基于改进能量生态足迹模型的喀斯特地区水资源可持续发展评价——以云南省为例

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-10-10 DOI:10.2166/aqua.2023.388
Wenjie Zhang, Bo Li, Ye Luo, Zhongmei Wang, Junli Nie, Mengyu Chen, Jie Long, Lei Yang
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引用次数: 0

摘要

摘要本研究将能值理论与水生态足迹相结合,对2012 - 2021年云南省水资源可持续发展状况进行分析评价。在水生态足迹中补充了水污染物核算和水产物核算。结果表明:研究期间云南省水资源总体处于生态亏缺状态,但其绝对值很小;水资源生态压力指数较高,水资源可持续利用指数较低,水资源处于不可持续利用状态。但水资源的能量生态足迹和万元GDP水资源的能量生态足迹呈下降趋势,水资源的生态经济协调指数较高,表明未来水资源将呈现可持续发展趋势。水资源的可持续发展既受到自然生态因素的影响,也受到社会因素的影响。因此,提高水资源开发利用率、发展绿色低碳经济、防治水污染、保护水环境等建议有利于促进水资源的可持续发展。
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Evaluation of water resources sustainable development in karst area based on the improved emergy ecological footprint model: a case study of Yunnan Province
Abstract This study combined emergy theory with water ecological footprint to analyze and evaluate the sustainable development status of water resources in Yunnan Province from 2012 to 2021. The water pollutant account and the water product account were supplemented to the water ecological footprint. The results showed that the water resources in Yunnan Province were generally in an ecological deficit during the study period, but their absolute values were very small. The ecological pressure index of water resources was high, while the sustainable utilization index of water resources was low, indicating that the water resources were in a state of unsustainable utilization. However, the emergy ecological footprint of water resources and the emergy ecological footprint of water resources of 10,000 Yuan GDP showed a decreasing trend, and the eco-economic coordination index of water resources was relatively high, indicating that the water resources will show a sustainable development trend in the future. The sustainable development of water resources was influenced by both natural ecological factors and social factors. Therefore, suggestions such as improving the utilization rate of water resources development, developing a green low-carbon economy, preventing and controlling water pollution, and protecting the water environment are conducive to promoting the sustainable development of water resources.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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