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A composite indicator approach to assess the sustainability and resilience of wastewater management alternatives

机译:评估废水管理替代品的可持续性和复原力的综合指标方法

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摘要

Evaluating the sustainability of wastewater management alternatives is a challenging task. This paper proposes an innovative methodology to assess and compare the sustainability of four wastewater management alternatives: a) centralised water resource recovery facility (WRRF) based on activated sludge (AS); b) centralised WRRF with membrane bioreactors (MBR); c) decentralised WRRFs with upflow anaerobic sludge blanket reactors and trickling filters; d) centralised-decentralised hybrid system. In doing so, a composite indicator embracing total annual equivalent costs, carbon emission intensity, eutrophication and resilience (based on robustness and rapidity metrics) was developed using the analytic hierarchy process (AHP) method. The results show that decentralised and hybrid systems contribute less to carbon emission and eutrophication because of energy and fertilizer harvest and with a trade-off of higher costs of 7-17% than the ones of AS and MBR. In addition, decentralised and hybrid systems are more resilient, contributing to lower environmental impacts facing natural disasters. Based on the weights obtained by AHP, the decentralised alternative appears to be the most sustainable option due to its best performance in terms of carbon emission intensity and resilience. By contrast, the MBR alternative appeared the least sustainable evaluated wastewater management alternative. However, this alternative is sustainable option when the eutrophication criterion is heavily prioritized. The proposed approach contributes to the selection of the most sustainable wastewater management alternative from a holistic perspective.
机译:评估废水管理替代品的可持续性是一项挑战的任务。本文提出了一种创新方法,以评估和比较四个废水管理替代方案的可持续性:a)基于活性污泥(AS)的集中水资源恢复设施(WRRF); b)带膜生物反应器的集中式WRRF(MBR); c)分散式WRRFS带上膨胀厌氧污泥橡皮布反应堆和滴流过滤器; d)集中式分散的混合系统。在这样做时,使用分析层次方法(AHP)方法开发了一种复合指标,拥有总年度等效成本,碳排放强度,富营养化和弹性(基于鲁棒性和速度度量)。结果表明,由于能量和肥料收获,分散和混合动力系统对碳排放和富营养化产生较低,并且折扣高出比AS和MBR中的更高成本为7-17%。此外,分散和混合系统更具弹性,有助于降低自然灾害面临的环境影响。基于AHP获得的重量,分散的替代方案似乎是最可持续的选择,因为它在碳排放强度和弹性方面的最佳性能。相比之下,MBR替代品出现了最不可持续的评估废水管理替代品。但是,当富营养化标准严重优先考虑时,这种替代方案是可持续选择。拟议的方法有助于从整体角度选择最可持续的废水管理。

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  • 来源
    《The Science of the Total Environment》 |2020年第jul10期|138286.1-138286.15|共15页
  • 作者单位

    Department of Civil & Environmental Engineering University of California Irvine CA 92697-2175 USA;

    Department of Civil & Environmental Engineering University of California Irvine CA 92697-2175 USA Water-Energy Nexus Centre University of California Irvine CA 92697-2175 USA;

    Department of Hydraulic and Environmental Engineering Pontificia Universidad Catolica de Chile Av. Vicuna Mackenna 4860 Santiago Chile Center for Sustainable Urban Development CONICYT/FONDAP/15110020 Av. Vicuna Mackenna 4860 Santiago Chile Gestion Integrada de Desastres Naturales (CIGIDEN) CONICYT/FONDAP/15110017 Av. Vicuna Mackenna 4860 Santiago Chile;

    Department of Civil & Environmental Engineering University of California Irvine CA 92697-2175 USA;

    LEQUiA Institute of the Environment University of Girona E-17071 Girona Spain;

    Department of Civil & Environmental Engineering University of California Irvine CA 92697-2175 USA Water-Energy Nexus Centre University of California Irvine CA 92697-2175 USA;

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

    Composite indicator; Decentralised wastewater treatment system; Decision support system; Resilience; Sustainability assessment; Wastewater treatment alternatives;

    机译:复合指标;分散的废水处理系统;决策支持系统;弹力;可持续发展评估;污水处理替代品;

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