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Geotextile biofiltration of primary treated municipal wastewater under simulated arctic summer conditions

机译:模拟北极夏季条件下对初级处理市政污水的土工布生物过滤

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Wastewater stabilization ponds (WSPs) are common for wastewater treatment in remote Canadian Arctic communities. In this paper, two geotextiles of different mass/unit areas are examined as a potential biofiltration upgrade to existing WSPs in arctic summer conditions. The intended role of the geotextile is to provide additional treatment of municipal wastewater seeping from these WSPs. Column filtration experiments were performed using municipal wastewater in a controlled laboratory environment at either 10 degrees C or 2 degrees C. The columns contained one of two different nonwoven geotextiles over 10 cm of gravel, simulating a WSP berm in contact with exfiltrating wastewater. Weekly wastewater samples were taken upstream and downstream of the geotextile/gravel filter and were analyzed for a suite of water quality parameters; the hydraulic conductivity of the columns was also measured weekly. Results showed that it is possible to accumulate biomass on geotextile material over a 3 month period at these temperatures, which corresponded with 1-2 log reductions in hydraulic conductivity. Significant removal of total suspended solids, 5-day biochemical oxygen demand, total nitrogen, and total phosphorus was observed; however, removal efficiencies for most parameters were reduced at the lower temperature. This study demonstrates that geotextiles could be used to enhance the performance of WSP systems operating in arctic climates.(C) 2016 Elsevier Ltd. All rights reserved.
机译:废水稳定池(WSP)在加拿大偏远的北极社区中普遍用于废水处理。在本文中,研究了两个不同质量/单位面积的土工布,作为在北极夏季条件下对现有水安全项目的潜在生物过滤升级。土工布的预期作用是提供对这些WSP渗入的市政废水的额外处理。色谱柱过滤实验是在10摄氏度或2摄氏度的受控实验室环境中使用市政废水进行的。色谱柱在10厘米的砾石上包含两种不同的非织造土工布之一,模拟了WSP护堤与渗出废水的接触。每周从土工布/砾石滤池的上游和下游采集废水样品,并分析一套水质参数。每周还测量柱的水力传导率。结果表明,在这些温度下,可能在3个月的时间内在土工织物材料上积累生物量,这对应于导水率降低1-2 log。观察到显着去除了总悬浮固体,5天生化需氧量,总氮和总磷。但是,大多数参数的去除效率在较低温度下会降低。这项研究表明,土工织物可用于增强在北极气候中运行的WSP系统的性能。(C)2016 Elsevier Ltd.保留所有权利。

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