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Unit Process Wetlands for Removal of Trace Organic Contaminants and Pathogens from Municipal Wastewater Effluents

机译:从市政废水中去除痕量有机污染物和病原体的单位工艺湿地

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摘要

Treatment wetlands have become an attractive option for the removal of nutrients from municipal wastewater effluents due to their low energy requirements and operational costs, as well as the ancillary benefits they provide, including creating aesthetically appealing spaces and wildlife habitats. Treatment wetlands also hold promise as a means of removing other wastewater-derived contaminants, such as trace organic contaminants and pathogens. However, concerns about variations in treatment efficacy of these pollutants, coupled with an incomplete mechanistic understanding of their removal in wetlands, hinder the widespread adoption of constructed wetlands for these two classes of contaminants. A better understanding is needed so that wetlands as a unit process can be designed for their removal, with individual wetland cells optimized for the removal of specific contaminants, and connected in series or integrated with other engineered or natural treatment processes. In this article, removal mechanisms of trace organic contaminants and pathogens are reviewed, including sorption and sedimentation, biotransformation and predation, photolysis and photoinactivation, and remaining knowledge gaps are identified. In addition, suggestions are provided for how these treatment mechanisms can be enhanced in commonly employed unit process wetland cells or how they might be harnessed in novel unit process cells. It is hoped that application of the unit process concept to a wider range of contaminants will lead to more widespread application of wetland treatment trains as components of urban water infrastructure in the United States and around the globe.
机译:由于湿地的低能耗和运营成本,以及它们提供的附带好处,包括创造美观的空间和野生动植物栖息地,处理湿地已成为从市政废水中去除营养物的有吸引力的选择。处理湿地也有望成为去除废水中其他污染物的手段,例如痕量有机污染物和病原体。然而,对这些污染物的处理效果变化的担忧,以及对它们在湿地中去除的机理的不完全理解,阻碍了对这两种污染物的人工湿地的广泛采用。需要更好地理解,以便可以将湿地作为一个整体过程进行设计,以去除单个湿地单元进行优化以去除特定污染物,并与其他工程或自然处理过程串联或集成在一起。在本文中,对痕量有机污染物和病原体的去除机理进行了综述,包括吸附和沉降,生物转化和捕食,光解和光灭活,并确定了剩余的知识差距。此外,对于如何在常用的单位工艺湿地单元中增强这些处理机制或如何在新型单位工艺单元中利用它们提供了建议。希望将单元过程概念应用于更广泛的污染物,将导致湿地处理系列作为美国和全球城市水基础设施的组成部分得到更广泛的应用。

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