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Life cycle assessment and costing of wastewater treatment systems coupled to constructed wetlands

机译:污水处理系统的生命周期评估和成本耗费,加上构造湿地

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This study evaluates the environmental and economic performance (ecoefficiency) of two decentralized, small-scale, wastewater treatment systems coupled to constructed wetlands. System One comprises a vertical and a horizontal flow wetland. System Two comprises a vertical subsurface flow wetland with artificial aeration. A life cycle assessment based on data from two actual pilot structures was carried out. The functional unit was 1 m(3) of treated water over a 20-year long lifetime. The systems were modeled in open LCA software, with the aid of Ecoinvent 3.3 data, and the impact assessment was based on the ReCIPe method. Results have demonstrated that foreground emissions such as direct greenhouse gas released from the septic tank and nutrients released in the effluent have driven potential impacts related to Climate Change, Photochemical Oxidants, and Freshwater Eutrophication. Artificial aeration reduces the area required for the installation of the system and electricity consumption was responsible for only 7% of total Climate Change related potential impact. Technologies that reduce direct (foreground) liquid and airborne emissions will improve the environmental performance of the systems. The analysis of the aerated wetland has shown that the operation stage had the greatest environmental impact potential for all analyzed impact categories, with results varying between 64% for Human Toxicity and 100% for Freshwater Eutrophication. The life cycle cost per cubic meter of treated sewage for the aerated system was 1.8 times smaller than that of the system without aeration. Thus, aeration is cost-effective for small-scale wastewater treatment systems coupled to constructed wetlands.
机译:本研究评估了两种分散,小规模的污水处理系统的环境和经济性能(eCoeffiques),其耦合到构造的湿地。系统包括垂直和水平流湿地。系统两个包括具有人工通气的垂直地下流动湿地。进行了基于来自两个实际导频结构的数据的生命周期评估。功能单位在20年的寿命中为1米(3)个处理过的水。该系统在开放式LCA软件中进行了建模,借助生态侵入3.3数据,影响评估基于配方方法。结果表明,从污水中释放的化粪池和营养素释放的直接温室气体等前景排放具有与气候变化,光化学氧化剂和淡水富营养化有关的潜在影响。人工曝气减少了安装系统所需的面积,电力消耗占总气候变化的7%相关的潜在影响。减少直接(前景)液体和空中排放的技术将改善系统的环境性能。对气化湿地的分析表明,操作阶段对所有分析的影响类别具有最大的环境影响潜力,结果对人类毒性的64%介于64%之间,淡水富营养化的100%变化。对于空气化系统的处理污水的每立方米的生命周期成本比没有通气的系统小于系统的1.8倍。因此,曝气对耦合到构造湿地的小型污水处理系统具有成本效益。

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