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Economic Input-Output Life Cycle Assessment of Water Reuse Strategies in Residential Buildings

机译:住宅建筑中水回用策略的经济投入产出生命周期评估

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The growth of cities is putting great strains on existing freshwater supplies in many areas, including the United States (Kloss, 2008). The United States Green Building Council (USGBC) has stated that buildings consume roughly 39% of all electricity and approximately 10% of all potable water (USGBC, 2008). The growing need for freshwater has lead to an increase in water reuse applications. However, some water reuse strategies actually result in an increase in energy usage and other environmental impacts. The objective of this study is to determine the environmental sustainability of three water reuse designs through economic input-output life cycle assessments (EIO-LCA). The water reuse designs include a simple greywater reuse system for subsurface landscape irrigation; an indoor greywater reuse system for toilet flushing and laundry washing; and a hybrid greywater and rainwater reuse system for landscape irrigation, toilet flushing, and laundry washing.
机译:城市的发展给包括美国在内的许多地区的现有淡水供应带来了巨大压力(Kloss,2008年)。美国绿色建筑委员会(USGBC)表示,建筑物消耗的电量约占所有用电量的39%,约占所有饮用水的10%(USGBC,2008年)。对淡水的日益增长的需求导致了水回用应用的增加。但是,某些中水回用策略实际上导致能源使用量增加和其他环境影响。这项研究的目的是通过经济投入产出生命周期评估(EIO-LCA)来确定三种中水回用设计的环境可持续性。中水回用设计包括用于地下景观灌溉的简单中水回用系统;室内灰水回用系统,用于冲厕和洗衣服;以及混合的灰水和雨水回用系统,用于景观灌溉,厕所冲水和洗衣。

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