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污水处理厂的资源回收潜力最大在哪里?

Where is the greatest potential for resource recovery in wastewater treatment plants?

机构信息

Department of Civil & Environmental Engineering, Institute of Environment, Health and Societies, Brunel University London, Uxbridge Campus, Middlesex, UB8 3PH, Uxbridge, UK.

Jacobs Engineering Group Inc. 2nd Floor Cottons Centre, Cottons Lane, London, SE1 2QG, England.

出版信息

Water Res. 2022 Jul 15;220:118673. doi: 10.1016/j.watres.2022.118673. Epub 2022 May 25.

Abstract

The restorative and regenerative ability of the circular economy has led to the rapid growth of this concept over the past decade, as it facilitates the broadly adopted principles of sustainable development and beyond, through restorative and regenerative actions. The water sector is poised to benefit from this transition, due to its intrinsic circularity and the resources it handles, predominantly found in wastewater, that are valuable and critical. Currently, the vast range of resource recovery technologies coupled with few industrial examples hinder strategic decision making. Resource recovery on a regional scale improves market share and mitigates investment risk, therefore, a structured approach has been developed for the selection of priority technologies to act as a guide for strategic planning. A representative UK wastewater model acts as the baseline, with multi-criteria analysis used to select resources and create an enhanced resource recovery scenario. It was found that implementing the recovery of 5 'priority resources' (and technology pathways) increased nitrogen and phosphorus recovery by 68% and 71%, respectively. Lastly, the need for a cross-cutting approach for the holistic assessment of circular solutions is discussed.

摘要

循环经济的恢复力和再生能力使得这一概念在过去十年中迅速发展,因为它通过恢复性和再生性行动促进了广泛采用可持续发展原则及其他原则。由于其内在的循环性和所处理的资源(主要存在于废水中)具有价值和重要性,水行业有望从这种转变中受益。目前,大量的资源回收技术加上少数工业实例,阻碍了战略决策的制定。在区域范围内进行资源回收可以提高市场份额并降低投资风险,因此,已经开发了一种结构化方法来选择优先技术,作为战略规划的指南。以具有代表性的英国废水模型作为基准,使用多标准分析选择资源并创建增强的资源回收方案。结果发现,实施 5 种“优先资源”(和技术途径)的回收,可分别将氮和磷的回收率提高 68%和 71%。最后,讨论了需要采用跨领域方法来全面评估循环解决方案。

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