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Supply-chain environmental effects of wastewater utilities

机译:废水公用事业的供应链环境影响

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This letter describes a comprehensive modeling framework and the Wastewater-Energy Sustainability Tool?(WWEST) designed for conducting hybrid life-cycle assessments of the wastewater collection, treatment, and discharge infrastructure in the United States. Results from a case study treatment plant which produces electricity using methane offgas are discussed. The case study system supplements influent with 'high-strength organic waste' to augment electricity production. The system balance is 55 kg of greenhouse gases per million liters of wastewater. Sensitivity analysis confirms that reusing biogas from anaerobic digestion for electricity reduces life-cycle greenhouse gas emissions by nine times. When biogas is captured and reused for electricity, material production (e.g., chemicals and pipes) and the corresponding supply chains, rather than energy production, are responsible for most of the environmental effects. When biogas is flared, the material and energy production contributions are similar.
机译:这封信介绍了一个全面的建模框架和《废水能源可持续性工具》(WWEST),该工具旨在对美国的废水收集,处理和排放基础设施进行混合生命周期评估。讨论了一个案例研究处理厂的结果,该厂使用甲烷废气发电。案例研究系统用“高强度有机废物”补充了进水,以增加电力生产。系统平衡为每百万升废水中55千克温室气体。敏感性分析证实,厌氧消化过程中的沼气再利用可减少电力的使用,将生命周期的温室气体排放量减少了九倍。当捕获沼气并将其重新用于电力时,原材料生产(例如化学品和管道)和相应的供应链(而不是能源生产)是造成大多数环境影响的原因。当沼气燃烧时,材料和能量产生的贡献是相似的。

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