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Performance of Hybrid Photocatalytic-Ceramic Membrane System for the Treatment of Secondary Effluent

机译:混合光催化-陶瓷膜系统处理二次废水的性能

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摘要

Evaluation of an advanced wastewater treatment system that combines photocatalysis with ceramic membrane filtration for the treatment of secondary effluent was undertaken. The results showed that, after photocatalysis and ceramic membrane filtration, the removal of dissolved organic carbon and UV254 was 60% and 54%, respectively, at a concentration of 4 g/L of TiO2. Dissolved organic matter (DOM) present in the secondary effluent was characterised with a liquid chromatography-organic carbon detector (LC-OCD) technique. The results showed low removal of humics, building blocks, the other oxidation by-products and no removal of biopolymers after TiO2/UV photocatalytic treatment. This suggested that the radical non-selective oxidation mechanisms of TiO2/UV process resulted in secondary effluent in which all of the DOM fractions were present. However, the hybrid system was effective for removing biopolymers with the exception of low molecular weight (LMW) compounds acids, which accumulated from the beginning of the reaction. In addition, monitoring of the DOM fractions with LC-OCD analysis demonstrated that the reduction of the effluent aromaticity was not firmly correlated with the removal of humic substances for the combined processes.
机译:对先进的废水处理系统进行了评估,该系统结合了光催化和陶瓷膜过滤技术来处理二次废水。结果表明,在TiO2浓度为4 g / L的条件下,经过光催化和陶瓷膜过滤后,溶解有机碳和UV254的去除率分别为60%和54%。利用液相色谱-有机碳检测器(LC-OCD)技术对二级废水中存在的溶解有机物(DOM)进行了表征。结果表明,经TiO2 / UV光催化处理后,腐殖质,结构单元,其他氧化副产物的去除率较低,而生物聚合物的去除率却较低。这表明TiO2 / UV工艺的自由基非选择性氧化机理导致了次级废水中所有DOM组分均存在。但是,该杂化系统可有效去除生物聚合物,但低分子量(LMW)化合物酸是从反应开始时开始累积的。此外,通过LC-OCD分析监测DOM馏分表明,在联合工艺中,流出物芳香性的降低与腐殖质的去除并没有密切相关。

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