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The fate of pharmaceuticals, steroid hormones, phytoestrogens, UV-filters and pesticides during MBR treatment

机译:MBR治疗期间药物,类固醇激素,植物雌激素,紫外线过滤剂和农药的去向

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摘要

This study examined the relationship between molecular properties and the fate of trace organic contaminants (TrOCs) in the aqueous and solid phases during wastewater treatment by MBR. A set of 29 TrOCs was selected to represent pharmaceuticals, steroid hormones, phytoestrogens, UV-filters and pesticides that occur ubiquitously in municipal wastewater. Both adsorption and biodegradation/transformation were found responsible for the removal of TrOCs by MBR treatment. A connection between biodegradation and molecular structure could be observed while adsorption was the dominant removal mechanism for the hydrophobic (logD \u3e 3.2) compounds. Highly hydrophobic (logD \u3e 3.2) but readily biodegradable compounds did not accumulate in sludge. In contrast, recalcitrant compounds with a moderate hydrophobicity, such as carbamazepine, accumulated significantly in the solid phase. The results provide a framework to predict the removal and fate of TrOCs by MBR treatment.
机译:这项研究检查了分子性质与MBR废水处理过程中水相和固相中痕量有机污染物(TrOCs)的命运之间的关系。选择了一组29种TrOC,以代表在城市废水中普遍存在的药物,类固醇激素,植物雌激素,紫外线过滤剂和农药。发现吸附和生物降解/转化都是通过MBR处理去除TrOC的原因。可以观察到生物降解与分子结构之间的联系,而吸附是疏水性化合物(logD \ u3e 3.2)的主要去除机理。高度疏水(logD 3.2),但易于生物降解的化合物不会积聚在污泥中。相反,具有适度疏水性的顽固性化合物,例如卡马西平在固相中大量积累。结果提供了一个框架,用于预测MBR处理对TrOCs的去除和命运。

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