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Environmental life cycle assessment of septic tanks in urban wastewater system - a case study for Poland

机译:城市污水系统化粪池环境生命周期评估 - 以波兰为例

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Results of life cycle inventory (LCI) and life cycle assessment (LCA) for septic tanks collecting domestic sewage were presented. The study included the whole life cycle: construction, use and end-of-life stages of septic tanks. The analyses were conducted basing on actual data concerning performance of 793 septic tanks in Zory. Environmental impact assessment of the life cycle of septic tanks was conducted with TRACi and ReCiPe methods. Greenhouse gas (GHG) emission, eutrophication_ fossil fuel depletion and metal depletion indicators were calculated and determinants of LCA of septic tanks were analysed. The system boundary was from cradle to grave. It was concluded that at the construction stage, GHG emission and fossil fuel depletion indicators are determined by the amount of concrete, steel, polyester resin, polyethylene, cast iron and PCV. At the use stage. GHG emission is determined by the amount and type of electricity used to treat sewage in a wastewater treatment plant (WWTP). Untreated wastewater, introduced into the environment (leaking tanks and users discharging sewage), is a determinant of influence on eutrophication. Life cycle inventory and environmental assessment of septic tanks with life cycle perspective are presented in the literature for the first time. The results highlight the importance of including each stage in the environmental assessment of elements of the urban wastewater system.
机译:介绍了收集国内污水的化粪池生命周期库存(LCI)和生命周期评估(LCA)。该研究包括整个生命周期:化粪池的施工,使用和寿命结束阶段。分析基于Zory中793个化粪池性能的实际数据。用Traci和配方方法进行化粪池生命周期的环境影响评估。计算温室气​​体(GHG)排放,计算富营养化株式化石燃料耗尽和金属耗尽指标,分析了化粪池LCA的决定因素。系统边界来自摇篮到坟墓。结论是,在施工阶段,温室气体排放和化石燃料耗尽指标由混凝土,钢,聚酯树脂,聚乙烯,铸铁和PCV的量决定。在使用阶段。温室气体排放由用于治疗废水处理厂(WWTP)中污水的电力量和类型确定。未经处理的废水引入环境(泄漏罐和排放污水),是对富营养化影响的决定因素。第一次在文献中介绍了生命周期视角的生命周期库存和环境评估。结果突出了包括城市废水系统元素环境评估中的每个阶段的重要性。

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