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Impact of support media in an integrated biofilter-submerged membrane system

机译:支撑介质对集成式生物滤池浸没式膜系统的影响

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The impact of a support material on an integrated biofilter-membrane system, simulating a difficult-to-treat surface water, was examined in terms of membrane fouling rate and water quality parameters. The support media in the membrane tanks did not generally affect any of the water quality parameters measured; however, there was an observable difference in the membrane fouling rates between the two processes with the support media system fouling at least two times slower than the non-support system. Total organic carbon (TOC) removals at around 60% were observed for two integrated biofilter-immersed membrane processes with the majority of the TOC removal occurring in the biofilters. One of the membrane tanks contained a support media (Process A) while the other did not (Process B). The feedwater contained humic acid (65% w/w) and readily biodegradable carbons (35% w/w) in the forms of acetic acid, formic acid and formaldehyde. The influent TOC values were between 3.35 and 3.94 mg/L. Acetate removals varied between 66 and 83%, while over 90% of the formate was removed and the formaldehyde was completely removed in the biofilters. There was a decrease in the UV absorbance values by over 70% for both processes.
机译:从膜污染率和水质参数方面,研究了载体材料对模拟难处理地表水的集成生物滤膜系统的影响。膜罐中的支撑介质通常不会影响所测量的任何水质参数;然而,在两个过程之间的膜结垢率存在可观察到的差异,其中支持介质系统的结垢速度比非支持系统慢至少两倍。对于两个集成的生物滤池浸没式膜工艺,观察到总有机碳(TOC)去除率约为60%,其中大多数TOC去除发生在生物滤池中。一个膜罐包含一个支撑介质(过程A),而另一个则不包含(过程B)。给水包含腐殖酸(65%w / w)和易于生物降解的碳(35%w / w),其形式为乙酸,甲酸和甲醛。进水TOC值在3.35和3.94 mg / L之间。乙酸盐的去除率在66%至83%之间,而在生物滤池中,超过90%的甲酸被去除,甲醛被完全去除。两种方法的紫外线吸收值均降低了70%以上。

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