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Rethinking urban water systems - revisiting concepts in urban wastewater collection and treatment to ensure infrastructure sustainability

机译:重新思考城市水系统-重新审视城市废水收集和处理中的概念,以确保基础设施的可持续性

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Technology and economic development has led to the growth of megacities and urban centres with populations in the millions. Such population expansion and densification increases the strain on wastewater collection and treatment infrastructure, which has been largely based on an end-of-line centralised model. However, in megacities new challenges arise, because provision of suitable sanitation is expensive and it requires infrastructure expansion through construction of extensive sewer networks and larger capacity wastewater treatment plants, which consume more energy. Alternative disposal techniques for solid and liquid waste generated during the treatment process are required, because disposal solutions are decreasing as landfill costs rise and environmental standards are tightened, the latter reducing opportunities for land reuse. Additionally, mass wastewater discharge can have a detrimental impact on the ecology of water bodies and on the health of downstream populations, and requires suitable treatment before disposal. These challenges have the potential to offset the savings that the economies of scale offered by the traditional wastewater collection and treatment systems can impart. The need for affordable and effective wastewater systems in megacities requires the re-evaluation of traditional systems and the re-engineering of water and wastewater transport and resource concepts. Alternative concepts in wastewater collection and treatment, such as decentralised treatment, allied with innovative solutions using current and new technology could play a role in providing affordable and sustainable solutions to deal with the wastewater issue. This paper investigates the scope that integrated wastewater treatment and localised water reuse (in-line treatment, sewer mining), resource recovery (biogas, biosolids), operational changes (timed discharge of sewers, vacuum sewers) and biotreatment (e.g. vermiculture, faecal coliform removal) can play to guarantee the longevity of wastewater infrastructure in megacities. These alternatives offer increased treatment efficiency, recovery of value-added products, and reduce infrastructure cost, whilst maintaining health standards and reducing environmental discharge.
机译:技术和经济发展已导致人口超百万的特大城市和城市中心的发展。这样的人口膨胀和致密化增加了废水收集和处理基础设施的压力,而废水收集和处理基础设施主要是基于生产线末端的集中式模型。但是,在大城市中,由于提供适当的卫生设施很昂贵,并且需要通过建设广泛的下水道网络和容量更大的废水处理厂(这些设施消耗更多的能源)来扩展基础设施,因此带来了新的挑战。对于处理过程中产生的固体和液体废物,需要替代性的处理技术,因为随着垃圾填埋成本的上升和环境标准的严格化,处理解决方案的数量正在减少,后者减少了土地再利用的机会。另外,大量废水排放会对水体的生态和下游人口的健康产生不利影响,并且在处置前需要进行适当的处​​理。这些挑战有可能抵消传统废水收集和处理系统可带来的规模经济效益。特大城市对可负担得起且有效的废水系统的需求要求对传统系统进行重新评估,并对水和废水的运输和资源概念进行重新设计。废水收集和处理中的替代概念(例如分散处理)与使用当前和新技术的创新解决方案结合在一起,可以在提供负担得起且可持续的解决方案以解决废水问题方面发挥作用。本文研究了综合废水处理和局部水回用(在线处理,下水道采矿),资源回收(沼气,生物固体),运营变化(下水道定时排放,真空下水道)和生物处理(例如ver菜,粪大肠菌群)的范围。清除)可确保大型城市废水基础设施的使用寿命。这些替代方案可提高处理效率,回收增值产品并降低基础设施成本,同时保持健康标准并减少环境排放。

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