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应对合流制下水道溢流的挑战。

Addressing the challenges of combined sewer overflows.

作者信息

Perry William Bernard, Ahmadian Reza, Munday Max, Jones Owen, Ormerod Steve J, Durance Isabelle

机构信息

Water Research Institute, School of Biosciences, Cardiff University, Cardiff, CF10 3AX, UK.

School of Engineering, Cardiff University, Cardiff, CF10 3AX, UK.

出版信息

Environ Pollut. 2024 Feb 15;343:123225. doi: 10.1016/j.envpol.2023.123225. Epub 2023 Dec 25.

Abstract

Europe's ageing wastewater system often combines domestic sewage with surface runoff and industrial wastewaters. To reduce the associated risk of overloading wastewater treatment works during storms, and to prevent wastewater backing-up into properties, Combined Sewer Overflows (CSOs) are designed into wastewater networks to release excess discharge into rivers or coastal waters without treatment. In view of growing regulatory scrutiny and increasing public concern about their excessive discharge frequencies and potential impacts on environments and people, there is a need to better understand these impacts to allow prioritisation of cost-effective solutions.We review: i) the chemical, physical and biological composition of CSOs discharges; ii) spatio-temporal variations in the quantity, quality and load of overflows spilling into receiving waters; iii) the potential impacts on people, ecosystems and economies. Despite investigations illustrating the discharge frequency of CSOs, data on spill composition and loading of pollutants are too few to reach representative conclusions, particularly for emerging contaminants. Studies appraising impacts are also scarce, especially in contexts where there are multiple stressors affecting receiving waters. Given the costs of addressing CSOs problems, but also the likely long-term gains (e.g. economic stimulation as well as improvements to biodiversity, ecosystem services, public health and wellbeing), we highlight here the need to bolster these evidence gaps. We also advocate no-regrets options to alleviate CSO problems taking into consideration economic costs, carbon neutrality, ecosystem benefit and community well-being. Besides pragmatic, risk-based investment by utilities and local authorities to modernise wastewater systems, these include i) more systemic thinking, linking policy makers, consumers, utilities and regulators, to shift from local CSO issues to integrated catchment solutions with the aim of reducing contributions to wastewater from surface drainage and water consumption; ii) broader societal responsibilities for CSOs, for example through improved regulation, behavioural changes in water consumption and disposal of waste into wastewater networks, and iii) greater cost-sharing of wastewater use.

摘要

欧洲老化的废水系统常常将生活污水与地表径流及工业废水混合在一起。为降低暴雨期间污水处理厂过载的相关风险,并防止废水倒灌回建筑物,污水管网中设计了合流制溢流设施(CSOs),以便在未经处理的情况下将过量排放物排入河流或沿海水域。鉴于监管审查日益严格,公众对其过高的排放频率以及对环境和人类潜在影响的关注度不断提高,有必要更好地了解这些影响,以便确定具有成本效益的解决方案的优先级。我们综述了:i)合流制溢流设施排放物的化学、物理和生物成分;ii)溢流入受纳水体的溢流数量、质量和负荷的时空变化;iii)对人类、生态系统和经济的潜在影响。尽管已有调查说明了合流制溢流设施的排放频率,但关于溢流成分和污染物负荷的数据太少,无法得出具有代表性的结论,尤其是对于新兴污染物而言。评估影响的研究也很稀缺,特别是在存在多种压力源影响受纳水体的情况下。考虑到解决合流制溢流设施问题的成本,但也考虑到可能的长期收益(如经济刺激以及生物多样性、生态系统服务、公众健康和福祉的改善),我们在此强调需要填补这些证据空白。我们还倡导采取无悔策略来缓解合流制溢流设施问题,同时考虑经济成本、碳中和、生态系统效益和社区福祉。除了公用事业公司和地方当局基于务实的风险进行投资以使废水系统现代化之外,这些策略还包括:i)更具系统性的思维,将政策制定者、消费者、公用事业公司和监管机构联系起来,从地方合流制溢流设施问题转向综合流域解决方案,目的是减少地表排水和用水对废水的贡献;ii)对合流制溢流设施承担更广泛的社会责任,例如通过加强监管、改变用水行为以及将废物排入废水管网的方式,以及iii)更大程度地分担废水使用成本。

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