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在废水处理过程中,水的消耗对环境有多大影响?应用生命周期评价(LCA)的最新进展对 3 个不同地理位置使用的污水处理技术进行评估。

How environmentally significant is water consumption during wastewater treatment? Application of recent developments in LCA to WWT technologies used at 3 contrasted geographical locations.

机构信息

Irstea, UMR ITAP, 361 rue Jean-François Breton, F-34196 Montpellier, France.

Irstea, UMR ITAP, 361 rue Jean-François Breton, F-34196 Montpellier, France; Veolia Eau d'Île-de-France, 28 Boulevard du Pesaro, F-92751 Nanterre, France.

出版信息

Water Res. 2014 Jun 15;57:20-30. doi: 10.1016/j.watres.2014.03.023. Epub 2014 Mar 19.

Abstract

Environmental impact assessment models are readily available for the assessment of pollution-related impacts in life cycle assessment (LCA). These models have led to an increased focus on water pollution issues resulting in numerous LCA studies. Recently, there have been significant developments in methods assessing freshwater use. These improvements widen the scope for the assessment of wastewater treatment (WWT) technologies, now allowing us to apprehend, for the first time, a combination of operational (energy and chemicals use), qualitative (environmental pollution) and quantitative (water deprivation) issues in wastewater treatment. This enables us to address the following question: Is water consumption during wastewater treatment environmentally significant compared to other impacts? To answer this question, a standard life cycle inventory (LCI) was performed with a focus on consumptive water uses at plant level, where several WWT technologies were operating, in different climatic conditions. The impacts of water consumption were assessed by integrating regionalized characterization factors for water deprivation within an existing life cycle impact assessment (LCIA) method. Results at the midpoint level, show that water deprivation impacts are highly variable in relation to the chosen WWT technology (water volume used) and of WWTP location (local water scarcity). At the endpoint level, water deprivation impacts on ecosystem quality and on the resource damage categories are significant for WWT technologies with great water uses in water-scarce areas. Therefore, our study shows the consideration of water consumption-related impacts is essential and underlines the need for a greater understanding of the water consumption impacts caused by WWT systems. This knowledge will help water managers better mitigate local water deprivation impacts, especially in selecting WWT technologies suitable for arid and semi-arid areas.

摘要

环境影响评估模型可用于评估生命周期评估(LCA)中的污染相关影响。这些模型使人们更加关注水污染问题,导致了许多 LCA 研究。最近,用于评估淡水使用的方法有了重大发展。这些改进拓宽了评估废水处理(WWT)技术的范围,现在我们第一次能够理解废水处理中的运营(能源和化学品使用)、定性(环境污染)和定量(水资源短缺)问题的组合。这使我们能够回答以下问题:与其他影响相比,废水处理过程中的耗水量在环境方面是否重要?为了回答这个问题,进行了标准的生命周期清单(LCI)分析,重点关注工厂层面的耗水,其中几种 WWT 技术在不同的气候条件下运行。通过在现有的生命周期影响评估(LCIA)方法中整合水资源短缺的区域化特征化因子,评估了耗水的影响。在中点水平的结果表明,与所选的 WWT 技术(用水量)和 WWTP 位置(当地水资源短缺)相关,水资源短缺的影响具有高度的可变性。在终点水平,对于在水资源短缺地区用水量较大的 WWT 技术,水资源短缺对生态系统质量和资源损害类别的影响是显著的。因此,我们的研究表明,考虑与耗水相关的影响是必要的,并强调了需要更好地了解 WWT 系统造成的耗水影响。这方面的知识将帮助水资源管理人员更好地减轻当地水资源短缺的影响,特别是在选择适合干旱和半干旱地区的 WWT 技术时。

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