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A Research Agenda for the Future of Urban Water Management: Exploring the Potential of Nongrid, Small-Grid, and Hybrid Solutions

机译:城市水管理未来研究议程:探索非网格,小网格和混合解决方案的潜力

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摘要

Recent developments in high- and middle-income countries have exhibited a shift from conventional urban water systems to alternative solutions that are more diverse in source separation, decentralization, and modularization. These solutions include nongrid, small-grid, and hybrid systems to address such pressing global challenges as climate change, eutrophication, and rapid urbanization. They close loops, recover valuable resources, and adapt quickly to changing boundary conditions such as population size. Moving to such alternative solutions requires both technical and social innovations to coevolve over time into integrated socio-technical urban water systems. Current implementations of alternative systems in high- and middle-income countries are promising, but they also underline the need for research questions to be addressed from technical, social, and transformative perspectives. Future research should pursue a transdisciplinary research approach to generating evidence through socio-technical "lighthouse" projects that apply alternative urban water systems at scale. Such research should leverage experiences from these projects in diverse socio-economic contexts, identify their potentials and limitations from an integrated perspective, and share their successes and failures across the urban water sector.
机译:高收入和中等收入国家的最新发展已显示出从传统的城市供水系统向替代解决方案的转变,这些解决方案在源头分离,权力下放和模块化方面更加多样化。这些解决方案包括非网格,小网格和混合系统,以应对诸如气候变化,富营养化和快速城市化等紧迫的全球挑战。他们闭环,回收宝贵资源,并迅速适应不断变化的边界条件,例如人口规模。转向此类替代解决方案需要技术和社会创新,以随着时间的推移共同发展为综合的社会技术城市水系统。当前在高收入和中等收入国家实施替代系统的前景令人鼓舞,但它们也强调了需要从技术,社会和变革角度解决研究问题的需求。未来的研究应采用跨学科研究方法,通过社会技术“灯塔”项目产生证据,这些项目将大规模应用替代性城市供水系统。此类研究应利用这些项目在不同社会经济背景下的经验,从综合的角度确定其潜力和局限性,并在城市水务部门中分享其成功与失败。

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  • 来源
    《Environmental Science & Technology》 |2020年第9期|5312-5322|共11页
  • 作者单位

    Eawag Swiss Federal Institute for Aquatic Science and Technology 8600 Dübendorf Switzerland;

    Eawag Swiss Federal Institute for Aquatic Science and Technology 8600 Dübendorf Switzerland ETH Zürich Institute of Environmental Engineering 8093 Zürich Switzerland Monash Water for Liveability Department of Civil Engineering Monash University Clayton Victoria 3800 Australia;

    Eawag Swiss Federal Institute for Aquatic Science and Technology 8600 Dübendorf Switzerland Circle Centre for Innovation Research and Competence in the Learning Economy Lund University 221 00 Lund Sweden;

    School of Social Sciences Monash University Clayton Victoria 3800 Australia;

    Centre for Urban Transitions Swinburne University of Technology Hawthorn Victoria 3122 Australia Drift Dutch Research Institute For Transitions Erasmus University PA Rotterdam 3062 The Netherlands;

    Fraunhofer Institute for Systems and Innovation Research ISI 76139 Karlsruhe Germany;

    Eawag Swiss Federal Institute for Aquatic Science and Technology 8600 Dübendorf Switzerland Institute for Psychology University of Berne 3012 Berne Switzerland;

    Faculty of Civil Engineering Bauhaus University 99421 Weimar Germany;

    Eawag Swiss Federal Institute for Aquatic Science and Technology 8600 Dübendorf Switzerland;

    Eawag Swiss Federal Institute for Aquatic Science and Technology 8600 Dübendorf Switzerland ETH Zürich Institute of Environmental Engineering 8093 Zürich Switzerland;

    Eawag Swiss Federal Institute for Aquatic Science and Technology 8600 Dübendorf Switzerland Institute for Sustainable Futures University of Technology Sydney Ultimo New South Wales 2007 Australia;

    Department of Civil & Environmental Engineering University of California at Berkeley Berkeley California 94720 United States;

    Delft University of Technology 2628 CN Delft The Netherlands;

    Eawag Swiss Federal Institute for Aquatic Science and Technology 8600 Dübendorf Switzerland Faculty of Geosciences University of Utrecht 3S84 CS Utrecht The Netherlands;

    Eawag Swiss Federal Institute for Aquatic Science and Technology 8600 Dübendorf Switzerland ETH Zürich Institute of Environmental Engineering 8093 Zürich Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 05:26:35

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