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Multi-dimensional diagnosis model for the sustainable development of regions facing water scarcity problem: A case study for Guangdong, China

机译:水资源稀缺问题的地区可持续发展多维诊断模型问题 - 以中国广东为例

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摘要

Freshwater consumption and wastewater discharge of economic activities have caused water scarcity problem in many regions. This study aims to develop a multi-dimensional diagnosis model (MDDM) to provide new insights for the sustainable development of regions which face water scarcity problem. In detail, the sectorial blue water, grey water and total water consumptions are assessed to reveal the direct effects of economic activities on water quantity and water quality. Then, hypothetical extraction method is integrated into input-output model and ecological network analysis to quantify the system-based effects of sectors in three dimensions: economy, water and metabolism. A case study of Guangdong province, China is conducted to illustrate the availability of the developed model. We found that the multi-dimensional performances of Guangdong's socioeconomic system are dominated by a few sectors. Wastewater, especially that discharged from the primary industry, is the main reason for the local water scarcity. Specifically, the unique role that every sector plays in the socioeconomic system is quantitatively revealed by MDDM, which could guide the relevant policy development at sectorial level.
机译:淡水消耗和经济活动的废水排放使得许多地区的水资源稀缺问题导致了水资源稀缺问题。本研究旨在开发多维诊断模型(MDDM),以便为面临水资源短缺问题的地区可持续发展提供新的见解。详细地,评估了扇形大海,灰水和总消耗,以揭示经济活动对水量和水质的直接影响。然后,假设的提取方法集成到输入 - 输出模型和生态网络分析中,以量化三维行业的基于系统的影响:经济,水和新陈代谢。中国广东省案例研究,阐述了发达模式的可用性。我们发现广东社会经济系统的多维性能由几个扇区主导。废水,特别是从主要行业排出的废水是当地水资源稀缺的主要原因。具体而言,MDDM量化的每个部门在社会经济系统中扮演的独特作用,可以通过MDDM揭示,这可以指导镇级的相关政策发展。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第10期|139394.1-139394.12|共12页
  • 作者单位

    State Key Joint Laboratory of Environmental Simulation and Pollution Control School of Environment Beijing Normal University Beijing 100875 China;

    Center for Energy Environment and Ecology Research UR-BNU School of Environment Beijing Normal University Beijing 100875 China;

    Institute for Energy Environment and Sustainable Communities University of Regina Regina Saskatchewan S4S 0A2 Canada Centre for Environment & Sustainability University of Surrey Guildford GU2 7XH UK;

    Center for Energy Environment and Ecology Research UR-BNU School of Environment Beijing Normal University Beijing 100875 China;

    Institute for Energy Environment and Sustainable Communities University of Regina Regina Saskatchewan S4S 0A2 Canada;

    State Key Joint Laboratory of Environmental Simulation and Pollution Control School of Environment Beijing Normal University Beijing 100875 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Input-output analysis; Ecological network analysis; Hypothetical extraction model; Water scarcity;

    机译:输入输出分析;生态网络分析;假设的提取模型;水资源短缺;

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