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Life-cycle assessment as an environmental management tool in the production of potable water

机译:生命周期评估作为饮用水生产中的环境管理工具

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The environmental life cycle assessment (LCA) methodology was used in this study to calculate and compare the environmental burdens resulting from two different methods employed in the production of potable water in South Africa. One method employs conventional processes for the treatment of water and the other one is based on membrane filtration. All inputs (raw materials and energy) and outputs (products, by-products and emissions to air, water and soil) from the two methods were listed and quantified. These inputs and outputs cause different environmental impacts (global warming, ozone depletion, smog formation, acidification, nutrient enrichment, ecotoxicity and human toxicity) and the contribution of each method to each of these impact categories has been quantified, resulting in a score. The ISO (International Organisation for Standardisation) methodological framework for life cycle assessments guided this study. By using these methodologies and by tracing all the processes involved in the production of potable water to the interface with the environment, it was found that the main contributor to the overall environmental burden is the generation of electricity. This conclusion is valid for both methods investigated and in order to increase the environmental performance in the production of potable water the energy efficiency of waterworks should be increased. [References: 6]
机译:在这项研究中,使用了环境生命周期评估(LCA)方法来计算和比较南非在饮用水生产中采用的两种不同方法所造成的环境负担。一种方法采用常规方法处理水,另一种方法基于膜过滤。列出并量化了两种方法的所有输入(原材料和能源)和输出(产品,副产品以及向空气,水和土壤的排放)。这些输入和输出会造成不同的环境影响(全球变暖,臭氧消耗,烟雾形成,酸化,营养物质富集,生态毒性和人类毒性),并且每种方法对每种影响类别的贡献都已量化,得出了分数。用于生命周期评估的ISO(国际标准化组织)方法框架指导了这项研究。通过使用这些方法并跟踪与环境接触的饮用水生产过程中涉及的所有过程,发现对整个环境负担的主要贡献是发电。该结论对于所研究的两种方法都是有效的,并且为了提高饮用水生产中的环境性能,应该提高自来水厂的能源效率。 [参考:6]

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