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Life-cycle assessment and life-cycle cost analysis of decentralised rainwater harvesting, greywater recycling and hybrid rainwater-greywater systems

机译:分散雨水收获,灰水循环和杂交雨水 - 灰水系统的生命周期评估与生命周期成本分析

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摘要

Decentralised rainwater harvesting (RWH), greywater recycling (GWR), and hybrid rainwater-greywater systems (HRG) mitigate urban water scarcity at both domestic residential dwelling and commercial building scales. However, few studies have been conducted on HRG in mixed urban water provision schemes under tropical climatic conditions. Thus, this study evaluates and compares the environmental and economic impacts of a centralised mains water system (MWS) against a decentralised RWH, GWR and HRG at a domestic and commercial building using life-cycle assessment (LCA) and life-cycle cost (LCC) analysis under tropical climatic conditions. A functional unit (FU) of 1 m(3) of non-potable toilet flushing and irrigation water for a project lifespan of 50 years was used. Results indicate that CML 2001 and TRACI 2.1 methods produce similar results. LCA and LCC indicate that the optimal systems are the commercial HRG and domestic RWH. The commercial HRG has the highest mains water savings (55.3%), lowest environmental impact scores for seven categories, and is the second fastest system to become financially attractive at USD5.20/m(3). Similarly, the domestic RWH has the second highest mains water savings (95.3%), lowest environmental impact scores relative to a MWS for seven impact categories, and is the first system to become financially attractive at USD2.00/m(3). Sensitivity analysis revealed that global warming, water stress index, and eutrophication are most sensitive to a -/+ 20% variation in GW and RW energy intensity values at commercial and domestic buildings, respectively. The financial viability of decentralised RWH, GWR, and HRG systems increase with increasing discount rate and mains water tariff, as well as decreasing electricity tariff and installation factor. Financial incentives and subsidy schemes from the Malaysian government may promote uptake of decentralised water systems for mixed urban water provision, as none of the systems were financially attractive otherwise at a discount rate of 6% for 50 years. (C) 2019 Elsevier Ltd. All rights reserved.
机译:分散的雨水收获(RWH),灰水回收(GWR)和杂交雨水 - 灰水系统(HRG)在国内住宅住宅和商业建筑秤上缓解城市水资源稀缺。然而,在热带气候条件下,在混合城市水规划方案中对HRG进行了很少的研究。因此,本研究评估并比较了使用生命周期评估(LCA)和生命周期成本(LCC )在热带气候条件下分析。使用50岁的项目寿命的1米(3)米(3)米(3)米(3)个功能单元(FU)。结果表明CML 2001和TRACI 2.1方法产生类似的结果。 LCA和LCC表明最佳系统是商业HRG和国内RWH。商业HRG具有最高的电源储蓄(55.3%),七个类别的最低环境影响分数,是第二个最快的系统,其在5.20 / m(3)美元上的财务吸引力。同样,国内RWH的水资源储蓄(95.3%),相对于七种影响类别的MWS,最低的环境影响分数,是第一个在ud2.00 / m(3)的财务吸引力的系统。敏感性分析显示,全球变暖,水分应激指数和富营养化分别对商业和国内建筑物的GW和RW能源强度值的变化最敏感。分散式RWH,GWR和HRG系统的金融活力随着折扣率和电价的增加而增加,以及电费降低和安装因素。马来西亚政府的财政奖励和补贴计划可以促进混合城市水资源的分散水系统的吸收,因为这些系统都没有经济上有吸引力,否则50年的折现率为6%。 (c)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2019年第20期|1211-1224|共14页
  • 作者单位

    Monash Univ Malaysia Chem Engn Discipline Sch Engn Jalan Lagoon Selatan Bandar Sunway 47500 Selangor Darul Malaysia;

    Monash Univ Malaysia Chem Engn Discipline Sch Engn Jalan Lagoon Selatan Bandar Sunway 47500 Selangor Darul Malaysia;

    Monash Univ Malaysia Chem Engn Discipline Sch Engn Jalan Lagoon Selatan Bandar Sunway 47500 Selangor Darul Malaysia|Monash Univ Malaysia Adv Engn Platform Sustainable Water Alliance Jalan Lagoon Selatan Bandar Sunway 47500 Selangor Darul Malaysia;

    Monash Univ Malaysia Chem Engn Discipline Sch Engn Jalan Lagoon Selatan Bandar Sunway 47500 Selangor Darul Malaysia|Monash Univ Malaysia Adv Engn Platform Sustainable Water Alliance Jalan Lagoon Selatan Bandar Sunway 47500 Selangor Darul Malaysia;

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

    Water recycling and reuse; Urban water; Environmental impact; Cost analysis; Decentralised system;

    机译:水循环和重用;城市水;环境影响;成本分析;分散系统;

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