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中试规模现场研究粉碎再生玻璃作为城市泻湖废水处理的三级过滤介质。

Pilot-scale, on-site investigation of crushed recycled glass as tertiary filter media for municipal lagoon wastewater treatment.

机构信息

Department of Biosystems Engineering, University of Manitoba, Winnipeg, Canada.

出版信息

Environ Technol. 2022 Jan;43(1):51-59. doi: 10.1080/09593330.2020.1775711. Epub 2020 Jun 18.

Abstract

Glass recycling is a process that faces many obstacles, especially in the closed-loop context. Waste glass separation and transportation can become quite expensive, turning glass collection for remanufacture unfeasible. For this reason, it is important that alternative markets for waste glass are sought. This study evaluated crushed recycled glass as tertiary media in subsurface pilot-scale filters for on-site municipal wastewater treatment, using control sand media filters. Filters were operated over 128 days at a 24-h hydraulic retention time, treating secondary lagoon effluent from the rural municipality of Dunnottar, Manitoba, Canada. Crushed recycled glass filters removed 92%, 90% and 45% of the total suspended solids (TSS), ammonium nitrogen (NH-N) and chemical oxygen demand (COD), respectively. Total suspended solids were removed equally well in sand and crushed recycled glass filters ( = 0.05), whereas NH-N and COD reductions were 10% and 21% greater in sand media, respectively. Both sand and crushed recycled glass filters failed to achieve phosphorus (P) discharge guidelines. This study shows that there is potential for crushed recycled glass in wastewater filtration, especially to achieve TSS, COD and NH-N removal. Small communities served by waste stabilization ponds could benefit from glass media filters, as waste glass could be diverted from curbside collection and utilized locally to polish municipal lagoon effluent.

摘要

玻璃回收是一个面临许多障碍的过程,特别是在闭环环境中。废玻璃的分离和运输可能会变得非常昂贵,从而使废玻璃的再制造收集变得不可行。出于这个原因,寻找废玻璃的替代市场非常重要。本研究评估了碎玻璃再循环作为亚表层中试规模过滤系统中的第三级介质,使用控制砂质介质过滤器。过滤器在 24 小时水力停留时间下运行了 128 天,处理来自加拿大马尼托巴省邓纳特农村自治市的二级泻湖废水。碎玻璃过滤器分别去除了总悬浮固体(TSS)、铵氮(NH-N)和化学需氧量(COD)的 92%、90%和 45%。砂质和碎玻璃过滤器对总悬浮固体的去除效果相同( = 0.05),而砂质介质对 NH-N 和 COD 的去除率分别提高了 10%和 21%。砂质和碎玻璃过滤器均未达到磷(P)排放标准。本研究表明,碎玻璃在废水过滤中具有潜力,特别是可以去除 TSS、COD 和 NH-N。使用废物稳定塘处理的小型社区可以从玻璃介质过滤器中受益,因为可以从路边收集的废物中转移废玻璃,并在当地用于抛光市政泻湖废水。

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