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首页> 外文期刊>Science of the total environment >Ecological network analysis of an urban water metabolic system: Integrated metabolic processes of physical and virtual water
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Ecological network analysis of an urban water metabolic system: Integrated metabolic processes of physical and virtual water

机译:城市水代谢系统的生态网络分析:物理和虚拟水的综合代谢过程

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摘要

The contradiction between social economy and water environment has become increasingly prominent, and the analysis of urban water metabolism system (UWMS) represents a problem-solving approach from the perspective of the entire flow process. However, a comprehensive UWMS model that considers both physical and virtual water flows is currently lacking. This paper presents an innovative application of an ecological network model of the UWMS-integrated metabolic process of physical and virtual water in Xining during the 2002-2018 period. By analysing and screening the metabolic characteristics, metabolic structure and metabolic relationships, the sus-tainability of the UWMS is evaluated in depth, and the main causes and critical compartments of the unhealthy metabolic process are identified. The findings show that the UWMS in Xining maintains a moderate level of robustness (the average R = 0.48) with limited metabolic efficiency. Since 2012, the water management policies in Xining have been significantly strengthened, contributing to a slight increase in robustness by improving the water use efficiency and metabolic structure. The integrated metabolic process is unhealthy because the metabolic structure is not reasonable, and the systematic metabolic relationship tends to be antagonistic due to the network mutualism index dropping to 1.0 during 2016-2018. We conclude that efficient irrigation management, more infrastructure projects for the sewer network, wastewater treatment and recycling could provide effective support to enhance the coordinate development of the social economy and water environment in Xining.
机译:社会经济与水环境之间的矛盾变得越来越突出,从整个流程的角度来看,城市水代谢系统(UWMS)的分析代表了解决问题的解决方法。然而,目前缺乏考虑物理和虚拟水流的全面UWMS模型。本文在2002 - 2018年期间,在西宁期间,在西宁期间,在西宁期间,在西宁期间的UWMS综合代谢过程的生态网络模型的创新应用。通过分析和筛选代谢特征,代谢结构和代谢关系,深入评估UWM的可诱导性,并确定了不健康代谢过程的主要原因和关键隔间。调查结果表明,西宁中的UWM具有有限的代谢效率鲁棒性(平均r = 0.48)。自2012年以来,西宁的水管理政策得到了显着加强,通过改善水使用效率和代谢结构,促使鲁棒性略有增加。综合代谢过程是不健康的,因为代谢结构不合理,并且由于网络互动指数在2016 - 2018年期间,由于网络互动指数下降至1.0,系统代谢关系趋于对抗。我们得出结论,有效的灌溉管理,下水道网络的更多基础设施项目,废水处理和再循环可以提供有效的支持,以提高西宁社会经济和水环境的协调发展。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|147432.1-147432.11|共11页
  • 作者单位

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

    State Key joint Laboratory of Environmental Simulation and Pollution Control School of Environment Beijing Normal University Beijing 100875 China Key Laboratory of Adaptation and Evolution of Plateau Biota Northwest Institute of Plateau Biology Chinese Academy of Sciences Xining 810001 Qinghai China;

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

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

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

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

    Water metabolism; Ecological network analysis; Physical water; Virtual water; Water management;

    机译:水代谢;生态网络分析;物理水;虚拟水;水管理;

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