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Treatment of refinery effluents by pilot membrane bioreactors: pollutants removal and fouling mechanism investigation

机译:中试膜生物反应器处理炼油厂废水:污染物去除和结垢机理研究

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The main purpose of this study is to evaluate the performance of a pilot-scale membrane bioreactor (MBR) in the treatment of effluent from a petroleum refinery plant focusing on the efficiency of organic matter and nutrient removal, and assessment and minimization of fouling. Two MBRs were assessed, one with flat sheet microfiltration membranes installed in the biological tank (8m(3)) (inside configuration) and another one with hollow fiber ultrafiltration membrane installed in the membrane tank (0.72m(3)) (outside configuration). Both MBRs share the same biological tank with HRT of 5.6h and sludge age of 40d. Performance of the MBRs was evaluated in terms of efficiency of organic matter (total organic carbon (TOC)) and nitrogen removal and membrane permeability. In order to assess fouling, resistance tests were performed, and soluble microbial products and extracellular polymeric substances concentrations were monitored, as was sludge filterability. As a fouling control strategy, MBR operation with operational flux lower than critical flux as assessed, and a permeability improver was used. Results showed that both MBRs had an average TOC and ammonia removal efficiency of 80 and 90%, respectively. The main contributor to fouling was the formation of cake on the surface of the membrane; the operation with operational flux lower than critical flux and the use of the permeability improver were shown to be good fouling control strategies.
机译:这项研究的主要目的是评估中试规模的膜生物反应器(MBR)在处理炼油厂废水中的性能,重点是有机物和营养物的去除效率以及污垢的评估和最小化。评估了两个MBR,一个在生物池中安装了平板微滤膜(8m(3))(内部配置),另一个在膜池中安装了中空纤维超滤膜(0.72m(3))(外部配置) 。两个MBR共用同一生物池,HRT为5.6h,污泥龄为40d。根据有机物的效率(总有机碳(TOC))以及脱氮和膜渗透性评估了MBR的性能。为了评估结垢,进行了阻力测试,并监测了可溶性微生物产物和细胞外聚合物的浓度,以及污泥的可过滤性。作为一种结垢控制策略,MBR操作的运行通量低于评估的临界通量,并使用了渗透性改进剂。结果表明,两种MBR的平均TOC和氨去除效率分别为80%和90%。结垢的主要原因是在膜表面上形成了蛋糕。操作通量低于临界通量的操作和使用渗透性改进剂被证明是良好的结垢控制策略。

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