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Reducing the environmental impacts of reverse osmosis desalination by using brackish groundwater resources

机译:通过使用咸淡的地下水资源减少反渗透淡化的环境影响

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The aim of the present work is to find out whether or not, and to what extent, the environmental impacts of reverse osmosis desalination are reduced when brackish groundwater is used instead of sea water. In order to answer this question, the Life-Cycle Assessment (LCA) methodology is used, and two water production plants are compared. The brackish groundwater scenario is based on a plant located in Almeria (southern Spain), while the sea water scenario is based on literature data. Four impact categories and two environmental indicators, one of them related to brine discharge, are included. The results show that the key life-cycle issue of brackish groundwater desalination is electricity consumption, and since this is substantially reduced with regard to using sea water, the life-cycle impacts are found to be almost 50% lower. An uncertainty analysis based on Monte-Carlo simulation shows that these environmental savings are significant for all impact categories. Potential local impacts provoked by brine discharge are also found to be lower, due to a reduced content of salts. It is concluded that, when and wherever possible, exploitation of brackish groundwater resources should be assigned priority to sea water resources as an input for reverse osmosis desalination, although it must be taken into account that groundwater, as opposed to sea water, is a limited resource.
机译:本工作的目的是发现当使用咸淡的地下水代替海水时,反渗透淡化的环境影响是否降低以及降低到何种程度。为了回答这个问题,使用了生命周期评估(LCA)方法,并比较了两个水厂。咸淡的海水情景基于位于西班牙南部阿尔梅里亚的一家工厂,而海水情景则基于文献数据。其中包括四个影响类别和两个环境指标,其中之一与盐水排放有关。结果表明,咸淡海水淡化的关键生命周期问题是电力消耗,并且由于使用海水大大减少了这种消耗,因此发现生命周期影响降低了近50%。基于蒙特卡洛模拟的不确定性分析表明,这些节约的环境对于所有影响类别都意义重大。由于盐含量的减少,还发现盐水排放引起的潜在局部影响较小。结论是,尽管必须考虑到地下水相对于海水而言是有限的,但无论何时何地,应将咸淡地下水资源的开采优先于海水资源,作为反渗透淡化的投入。资源。

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