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废弃活性污泥高速(WASHR)处理工艺:一种在城市污水处理厂协同处理高浓度废水的新颖、经济可行且环境可持续的方法。

Waste Activated Sludge-High Rate (WASHR) Treatment Process: A Novel, Economically Viable, and Environmentally Sustainable Method to Co-Treat High-Strength Wastewaters at Municipal Wastewater Treatment Plants.

作者信息

Johnson Melody Blythe, Mehrvar Mehrab

机构信息

Department of Chemical Engineering, Toronto Metropolitan University, 350 Victoria Street, Toronto, ON M5B 2K3, Canada.

出版信息

Bioengineering (Basel). 2023 Aug 29;10(9):1017. doi: 10.3390/bioengineering10091017.

Abstract

High-strength wastewaters from a variety of sources, including the food industry, domestic septage, and landfill leachate, are often hauled to municipal wastewater treatment plants (WWTPs) for co-treatment. Due to their high organic loadings, these wastewaters can cause process upsets in both a WWTP's liquid and solids treatment trains and consume organic treatment capacity, leaving less capacity available to service customers in the catchment area. A novel pre-treatment method, the Waste Activated Sludge-High Rate (WASHR) process, is proposed to optimize the co-treatment of high-strength wastewaters. The WASHR process combines the contact stabilization and sequencing batch reactor processes. It utilizes waste activated sludge from a municipal WWTP as its biomass source, allowing for a rapid start-up. Bench-scale treatment trials of winery wastewater confirm the WASHR process can reduce loadings on the downstream WWTP's liquid and solids treatment trains. A case study approach is used to confirm the economic viability and environmental sustainability of the WASHR process compared to direct co-treatment, using life-cycle cost analyses and greenhouse gas emissions estimates.

摘要

包括食品工业、生活污水污泥和垃圾渗滤液在内的各种来源的高强度废水,通常被运至城市污水处理厂(WWTPs)进行联合处理。由于这些废水的有机负荷较高,它们会导致污水处理厂的液体和固体处理流程出现工艺紊乱,并消耗有机处理能力,从而使可供服务集水区客户的处理能力降低。本文提出了一种新型预处理方法——废弃活性污泥高速率(WASHR)工艺,以优化高强度废水的联合处理。WASHR工艺结合了接触稳定和序批式反应器工艺。它利用城市污水处理厂的废弃活性污泥作为其生物质来源,从而实现快速启动。酒厂废水的实验室规模处理试验证实,WASHR工艺可以减少下游污水处理厂液体和固体处理流程的负荷。采用案例研究方法,通过生命周期成本分析和温室气体排放估算,来确认WASHR工艺与直接联合处理相比的经济可行性和环境可持续性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f03/10525545/cc0d280f713f/bioengineering-10-01017-g001.jpg

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