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Life cycle based analysis of demands and emissions for residential water-using appliances

机译:基于生命周期的住宅用水设备需求和排放分析

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Environmental impacts of energy and water demand and greenhouse gas emissions from three residential water-using appliances were analyzed using life cycle assessment (LCA) based approach in collaboration of economic input—output model. This study especially focused on indirect consumption and environmental impacts from end-use/demand phase of each appliance. Water-related activities such as water supply, water heating and wastewater treatment were included in the analysis. The results showed that environmental impacts from end-use/demand phase are most significant for the water system, particularly for the energy demand for water heating (73% for clothes washer and 93% for showerheads). Reducing water/hot water consumption during the end-use/demand phase is expected to improve the overall water-related energy burden and water use sustainability. In the analysis of optimal lifespan for appliances, the estimated values (8—21 years) using energy consumption balance approach were found to be lower than that using other methods (10—25 years). This implies that earlier replacement with efficiency models is encouraged to minimize the environmental impacts of the product.
机译:结合经济投入-产出模型,使用基于生命周期评估(LCA)的方法,分析了三种住宅用水设备的能源和需水以及温室气体排放对环境的影响。这项研究特别关注了每种设备最终用途/需求阶段的间接消耗和环境影响。分析中包括与水有关的活动,如供水,水加热和废水处理。结果表明,最终用途/需求阶段对环境的影响对于水系统最为重要,尤其是对于热水的能源需求(洗衣机的73%和淋浴喷头的93%)。减少最终用途/需求阶段的用水/热水消耗量有望改善总体与水有关的能源负担和用水的可持续性。在分析设备的最佳使用寿命时,发现使用能耗平衡法的估计值(8-21年)低于使用其他方法的估计值(10-25年)。这意味着鼓励尽早用效率模型代替,以最大程度地降低产品对环境的影响。

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