首页> 外文期刊>The International Journal of Life Cycle Assessment >Operationalisation and application of water supply mix (WSmix) at worldwide scale: how does WSmix influence the environmental profile of water supply for different users?
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Operationalisation and application of water supply mix (WSmix) at worldwide scale: how does WSmix influence the environmental profile of water supply for different users?

机译:全球范围内的供水混合物(WSmix)的运营和应用:WSmix如何影响不同用户的供水环境概况?

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Purpose A worldwide-regionalized water supply mix (WSmix) has been developed for use in life cycle assessment (LCA) studies. The WSmix is the combination of water sources and water technologies to meet a water user need at a specific time (season, month) and location. A global database has been computed to collect information on water sources and users at country and river basin scales. However, its application to LCA case studies at different locations and for different users has not yet been fully tested and analysed. The aim of this study is to operationalise WSmix for application in LCA and to test the added value and usability of WSmix by applying it worldwide to two different systems, a service and a global product, considering different climatic and socio-economic conditions. Methods The WSmix is applied to two main water users, the results are analysed, and the variability of the WSmix for 91 countries with different socio-economic conditions is discussed. Some examples of the variability of the water sources mix (WOmix) and the temporal variation at river basin scale are presented. Results and discussion The results show that the WSmix has a great influence on the environmental profile of water supply for different users considering different climatic and socio-economic conditions. Moreover, the interdependence between water and energy (i.e. water-energy nexus) is clearly established, which reinforces the importance to link a regionalized WSmix with national/regionalized electricity mix. Conclusions In conclusion, the WSmix has been operationalised and applied in LCI databases. Its added value and usability has been demonstrated by applying it at a worldwide scale for two different users. Methodological developments are still required to increase its spatiotemporal resolution, and LCIA methods need to be improved to better consider its different components (including water sources).
机译:目的已经开发了一种全球区域化的供水组合(WSmix),用于生命周期评估(LCA)研究。 WSmix是水源和水技术的结合,可以在特定时间(季节,月份)和位置满足水用户的需求。已计算出一个全球数据库,以收集有关国家和流域尺度的水源和用户的信息。但是,它在不同位置和针对不同用户的LCA案例研究中的应用尚未经过全面测试和分析。这项研究的目的是使WSmix运用于LCA中,并考虑到不同的气候和社会经济条件,将其在全球范围内应用于两种不同的系统(服务和全球产品),以测试WSmix的附加值和可用性。方法将WSmix应用于两个主要用水户,分析结果,并讨论91种不同社会经济条件国家的WSmix的变异性。给出了水源混合量(WOmix)的可变性和流域尺度上的时间变化的一些例子。结果与讨论结果表明,WSmix对考虑不同气候和社会经济条件的不同用户的供水环境状况有很大影响。此外,水与能源之间的相互依存关系(即水与能源的联系)已明确建立,这加强了将区域化WSmix与国家/区域化电力混合联系起来的重要性。结束语总之,WSmix已在LCI数据库中投入使用和应用。通过在全球范围内为两个不同的用户应用它,证明了它的附加值和可用性。仍然需要方法发展以提高其时空分辨率,并且需要改进LCIA方法以更好地考虑其不同组成部分(包括水源)。

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