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Managing the water-energy-food nexus in China by adjusting critical final demands and supply chains: An input-output analysis

机译:通过调整关键的最终需求和供应链来管理中国的水能食品关系:投入产出分析

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摘要

The rapid population growth in China has increased the demand for limited water, energy and food resources. Because the resource supply is constrained by future uncertainties such as climate change, it is necessary to examine the connections among water, energy and food resources from the perspective of the relevant final demands. Based on an input-output model and structural path analysis, this study aims to explore the hidden connections among water, energy and food resources by identifying important final demands and examine how these resources are embodied in upstream production and downstream consumption processes along the supply chain. The water-energy-food nexus approach in this research identifies where and how these resources intersect in economic sectors. By simultaneously considering the water, energy and food footprints, synergistic effects can be maximized among these resource systems. The results reveal that urban household consumption and fixed capital formation have large impacts on water-energy-food resources. Besides, agriculture, construction and service sectors have the largest water-energy-food footprints. For each resource, we rank the top-20 supply chain paths from the final demands to the upstream production sectors, and six critical supply chain paths are identified as important contributors to the consumption of all these resources. Compared with independent approach to manage water, energy and food resources, the nexus approach identifies the critical linkages of the water, energy and food systems and helps to formulate integrated policies to effectively manage these resources across sectors and actors. Synergistic strategies for conserving water, energy, and food resources can be achieved through avoiding unnecessary waste in end uses and improving resource use efficiency along critical supply chains. This research can help consumers, industries and the government make responsible consumption and production decisions to conserve water, energy and food resources.
机译:中国人口的快速增长增加了对有限的水,能源和粮食资源的需求。由于资源供应受到未来不确定性(例如气候变化)的限制,因此有必要从相关最终需求的角度研究水,能源和粮食资源之间的联系。本研究基于投入产出模型和结构路径分析,旨在通过确定重要的最终需求来探索水,能源和粮食资源之间的隐藏联系,并研究这些资源如何体现在整个供应链的上游生产和下游消费过程中。本研究中的水,能源,食品之间的联系方法确定了这些资源在经济部门之间的位置和方式。通过同时考虑水,能源和食物的足迹,可以在这些资源系统之间最大程度地发挥协同效应。结果表明,城市家庭消费和固定资本形成对水能食品资源的影响很大。此外,农业,建筑和服务业的水能源食品足迹最大。对于每种资源,我们对从最终需求到上游生产部门的前20条供应链路径进行排名,并确定了6条关键的供应链路径是所有这些资源消耗的重要贡献者。与独立的方法来管理水,能源和粮食资源相比,联系方法确定了水,能源和粮食系统的关键联系,并有助于制定综合政策来有效管理跨部门和参与者的这些资源。通过避免最终用途中的不必要浪费并提高关键供应链上的资源利用效率,可以实现节约用水,能源和粮食资源的协同策略。这项研究可以帮助消费者,企业和政府做出负责任的消费和生产决策,以节约水,能源和食物资源。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第10期|137635.1-137635.11|共11页
  • 作者单位

    School of Environment Tsinghua University Beijing 100084 China;

    School of Environment Tsinghua University Beijing 100084 China State Key Joint Laboratory of Environment Simulation and Pollution Control Beijing 100084 China;

    State Key Joint Laboratory of Environment Simulation and Pollution Control Beijing 100084 China;

    School of Economics Hitotsubashi University Tokyo 186-8601 Japan;

    State Key Joint Laboratory of Environment Simulation and Pollution Control Beijing 100084 China 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

    Water-energy-food nexus; Input-output model; Structural path analysis; Final demands; Supply chain; China;

    机译:水-能源-食品关系;投入产出模型;结构路径分析;最终要求;供应链;中国;

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