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Performance evaluation of A2O MBR system with graphene oxide (GO) blended polysulfone (PSf) composite membrane for treatment of high strength synthetic wastewater containing lead

机译:氧化石墨烯(GO)混合聚砜(PSf)复合膜用于A2O MBR系统处理含铅高强度合成废水的性能评估

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摘要

High strength synthetic wastewater containing 5 mg L-1 of lead was studied for treatment using an A2O MBR system. The system showed 99% removal of ammonia and COD, a maximum removal of 52% of total phosphorus and an average minimum removal of 72% of total nitrogen. A maximum lead removal of 98% was achieved for hydraulic retention time (HRT) of 144 h, which decreased to 85% when the influent COD concentration was decreased. Mass balance for lead revealed that much of its removal was through accumulation by the biomass present in the anaerobic and anoxic tanks. Comparative study on virgin PSf and GO blended PSf membrane showed that the GO blended membrane lasted 1.4 times longer than the other. SEM-EDS of membranes showed lead peaks on the fouled and un-fouled sections of the membrans indicating the association of lead with the foulant and the role of membrane in lead separation. MBR Good separation efficiency was achieved irrespective of the membranes used. (C) 2019 Elsevier Ltd. All rights reserved.
机译:研究了使用A2O MBR系统处理含5 mg L-1铅的高强度合成废水。该系统显示出99%的氨和COD去除率,最大去除率为总磷的52%,平均最小去除率为总氮的72%。对于144 h的水力停留时间(HRT),最大去除铅量达到98%,当进水COD浓度降低时,铅去除率降至85%。铅的质量平衡表明,铅的大部分去除是通过厌氧和缺氧池中存在的生物质的积累而实现的。原始PSf和GO混合PSf膜的对比研究表明,GO混合膜的使用寿命是另一种的1.4倍。膜的SEM-EDS在膜的结垢和未结垢部分显示铅峰,表明铅与结垢物的关联以及膜在铅分离中的作用。 MBR不管使用哪种膜,都能获得良好的分离效率。 (C)2019 Elsevier Ltd.保留所有权利。

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