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Virus removal by unsaturated wastewater filtration: effects of biofilm accumulation and hydrophobicity

机译:通过不饱和废水过滤去除病毒:生物膜积累和疏水性的影响

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摘要

Enhanced treatment of septic tank effluent can improve the hydraulic function and performance of infiltration systems and constructed wetlands. By intermittent spray application of septic tank effluent onto a coarse-grained filter media, an unsaturated flow regime beneficial for pathogen removal is created. A column filtration study showed an increase in PRD-1 removal by time of operation with corresponding biofilm accumulation in the filter material. The same increased removal was observed for 1 mu m polystyrene beads, irrespective of their hydrophilic/hydrophobic surface properties. A control experiment with sorption of 1 mu m hydrophobic and hydrophilic polystyrene beads to different glass surfaces with hydrophobic and hydrophilic properties indicate that mechanisms other than hydrophobic interactions may govern the rate of attachment to the filter media. For a given volumetric flow-rate in the columns, the presence of biofilm altered the hydrodynamic characteristics and this resulted in increased retention time and particle removal.
机译:化粪池污水的强化处理可以改善水力功能以及渗透系统和人工湿地的性能。通过将化粪池流出物间歇喷涂到粗颗粒过滤介质上,可形成有利于病原体去除的不饱和流态。柱过滤研究表明,随着操作时间的增加,PRD-1的去除量增加,并且相应的生物膜在过滤材料中积累。不管它们的亲水/疏水表面性质如何,对于1μm的聚苯乙烯珠观察到相同的增加的去除。对照实验将1μm疏水性和亲水性聚苯乙烯珠粒吸附到具有疏水性和亲水性的不同​​玻璃表面上,表明除疏水性相互作用外的其他机理可能决定着与过滤介质的附着速率。对于给定的色谱柱体积流量,生物膜的存在改变了流体动力学特性,这导致保留时间增加和颗粒去除。

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