A holistic approach for performance evaluation of wastewater treatment plants: integrating grey water footprint and life cycle impact assessment

S. Jamshidi, Mohammad Farsimadan, Hanieh Mohammadi
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Abstract

Wastewater treatment plants (WWTPs) have positive and negative impacts on the environment. Therefore, life cycle impact assessment (LCIA) can provide a more holistic framework for performance evaluation than the conventional approach. This study added water footprint (WF) to LCIA and defined ϕ index for accounting for the damage ratio of carbon footprint (CF) to WF. The application of these innovations was verified by comparing the performance of 26 WWTPs. These facilities are located in 4 different climates in Iran, serve between 1,900 and 980,000 people, and have treatment units like activated sludge, aerated lagoon, and stabilization pond. Here, grey water footprint (GWF) calculated the ecological impacts through typical pollutants. Blue water footprint (BWF) included the productive impacts of wastewater reuse, and CF estimated CO2 emissions from WWTPs. Results showed that GWF was the leading factor. ϕ was 4–7.5% and the average WF of WWTPs was 0.6 m3/ca, which reduced 84%, to 0.1 m³/ca, through wastewater reuse. Here, wastewater treatment and reuse in larger WWTPs, particularly with activated sludge had lower cumulative impacts. Since this method takes more items than the conventional approach, it is recommended for integrated evaluation of WWTPs, mainly in areas where the water–energy nexus is a paradigm for sustainable development.
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污水处理厂性能评估的整体方法:整合灰水足迹和生命周期影响评估
污水处理厂(WWTP)对环境既有积极影响,也有消极影响。因此,与传统方法相比,生命周期影响评估(LCIA)可为绩效评估提供更全面的框架。本研究在 LCIA 中增加了水足迹 (WF),并定义了用于核算碳足迹 (CF) 与水足迹损害比的ϕ指数。通过比较 26 个污水处理厂的绩效,验证了这些创新的应用。这些设施位于伊朗 4 个不同的气候区,服务人口在 1900 到 98 万之间,拥有活性污泥、曝气池和稳定池等处理单元。在此,灰水足迹(GWF)计算了典型污染物对生态的影响。蓝水足迹(BWF)包括污水回用对生产的影响,以及污水处理厂的二氧化碳排放量。结果表明,GWF 是主要因素。ϕ为 4-7.5%,污水处理厂的平均水足迹为 0.6 立方米/卡,通过废水回用,水足迹减少了 84%,为 0.1 立方米/卡。在这里,大型污水处理厂的废水处理和回用,尤其是活性污泥法的累积影响较低。由于这种方法比传统方法需要更多的项目,因此建议对污水处理厂进行综合评估,主要是在水与能源的关系是可持续发展范例的地区。
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