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Sustainable urban water resources management considering life-cycle environmental impacts of water utilization under uncertainty

机译:考虑不确定性条件下水资源利用的生命周期环境影响的可持续城市水资源管理

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摘要

To improve applicability of life cycle assessment (LCA) in supporting direct and robust decision-making, an integrated approach was developed through incorporating operational research and uncertainty analysis methods within a general LCA framework. The methodology can (a) help comprehensive evaluation of environmental impacts at multiple product-service levels, (b) facilitate the reflections of multiple LCA associated uncertainties and transfer them into consequential decision-making process, and (c) identify desired water allocation schemes for minimizing life-cycle environmental impacts. This represented an improvement upon conventional LCA method, as well as water resources allocation. The developed method was then verified in a water-stressed city (i.e., the City of Dalian), northeastern China. The application indicated that the proposed method was effective in generating desired water supply schemes under uncertainties, reflecting the associated life-cycle environmental impacts, and strengthening capabilities of both LCA and operational research methods. The results also indicated that the top three contributors for life-cycle environmental impacts would be districts of Pulandian and Zhuanghe, and Municipal zone of the city. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了提高生命周期评估(LCA)在支持直接而有力的决策方面的适用性,通过在常规LCA框架内纳入运营研究和不确定性分析方法,开发了一种集成方法。该方法可以(a)帮助在多个产品服务水平上全面评估环境影响;(b)促进多种LCA相关不确定性的反映,并将其转移到相应的决策过程中;(c)识别所需的水资源分配方案最小化生命周期对环境的影响。这是对传统LCA方法以及水资源分配的一种改进。然后在中国东北的一个缺水城市(即大连市)验证了开发的方法。该申请表明,该方法可有效地在不确​​定性条件下产生所需的供水方案,反映相关的生命周期环境影响,并增强LCA和运筹学方法的能力。结果还表明,对生命周期环境影响最大的三个因素是普兰店区和庄河区以及该市的市政区。 (C)2016 Elsevier B.V.保留所有权利。

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