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Decentralised urban water reuse: The implications of system scale for cost and pathogen risk

机译:分散式城市中水回用:系统规模对成本和病原体风险的影响

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The non-potable reuse of treated sewage in urban areas provides significant conservation of potable supplies beyond that available through water use efficiency. Effluent reuse is also an inevitable requirement in novel decentralised wastewater systems. At present, urban water reuse, where pursued, usually involves large-scale schemes based on new or existing centralised sewage treatment plants. This is despite the diseconomy of scale inherent in pipe networks that balances economies of scale in sewage treatment and negates any cost advantage for wastewater systems with more than around 1,000 connections. In light of this, the theoretical relationship between effluent reuse system scale and pathogen risks was examined at various effluent qualities. Waterborne disease was seen to be a significant factor when reusing effluent in urban areas and smaller systems were found to pose a lower risk of waterborne infection, all other things being equal. Pathogen risks were then included within an economic analysis of system scale. It was concluded that with the inclusion of pathogen risks as a costed externality, taking a decentralised approach to urban water reuse would be economically advantageous in most cases: This conclusion holds despite an exact evaluation of increased waterborne disease due to effluent reuse remaining problematic. [References: 14]
机译:城市地区经处理的污水的非饮用水回用,大大节约了饮用水的消耗,其利用率超过了用水效率。在新型分散废水系统中,废水回用也是必不可少的要求。目前,追求城市中水回用通常涉及基于新的或现有的集中式污水处理厂的大规模计划。尽管管网固有的规模经济不平衡,但平衡了污水处理的规模经济,并抵消了连接约1000个以上废水系统的任何成本优势。有鉴于此,在各种废水质量下,对废水回用系统规模与病原体风险之间的理论关系进行了研究。当在城市地区重复使用废水时,水传播疾病被认为是重要因素,并且在其他所有条件相同的情况下,发现较小的系统对水传播感染的风险较低。然后将病原体风险纳入系统规模的经济分析中。得出的结论是,将病原体风险作为代价高昂的外部因素包括在内,在大多数情况下采取分散式方法进行城市水再利用在经济上将是有利的:尽管对因污水再利用而导致水传播疾病增加的确切评估仍然存在问题,但该结论仍然成立。 [参考:14]

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