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Impact of biological filtrations for organic micropollutants and polyfluoroalkyl substances removal from secondary effluent

机译:生物滤池对去除次要废水中的有机微量污染物和多氟烷基物质的影响

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摘要

The impact of biological activated carbon (BAC), sand filtration (SF) and biological aerated filter (BAF) for removal of the selected organic micropollutants and polyfluoroalkyl substances (PFASs) from secondary effluent was studied. BAC led to greater removal of dissolved organic carbon (43%) than BAF (30%) which in turn was greater than SF (24%). All biological filtration systems could effectively remove most of the selected organic micropollutants, and there was a greater removal of these micropollutants by BAC (76-98%) than BAF (70-92%) or SF (68-90%). It was found that all treatment was effective for removal of the hydrophobic (log D>3.2) and readily biodegradable organic micropollutants. The major mechanism for the removal of these molecules was biodegradation by the micro-organism and sorption by the biofilm. Compared to organic micropollutants removal, there was a lower removal of PFASs by all treatments, and BAF and SF had a considerably lower removal than BAC treatment. The better removal for all molecule types by BAC was due to additional adsorption capacity by the activated carbon. This study demonstrated that the BAC process was most effective in removing organic micropollutants present in the secondary effluent.
机译:研究了生物活性炭(BAC),砂滤(SF)和生物曝气滤池(BAF)对从二级废水中去除所选有机微量污染物和多氟烷基物质(PFAS)的影响。 BAC比BAF(30%)去除溶解的有机碳(43%)更大,而BAF(30%)则比SF(24%)大。所有生物过滤系统都可以有效去除大多数选定的有机微污染物,与BAF(70-92%)或SF(68-90%)相比,BAC(76-98%)对这些微污染物的去除更大。发现所有处理均能有效去除疏水性(log D> 3.2)和易于生物降解的有机微污染物。去除这些分子的主要机理是微生物的生物降解和生物膜的吸附。与有机微量污染物的去除相比,所有处理对PFAS的去除率均较低,而BAF和SF的去除率与BAC处理相比要低得多。 BAC对所有分子类型的去除效果更好是由于活性炭具有额外的吸附能力。这项研究表明,BAC工艺在去除次要废水中存在的有机微污染物方面最有效。

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