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Mechanism of Membrane Fouling Control by HMBR: Effect of Microbial Community on EPS

机译:HMBR控制膜污染的机理:微生物群落对EPS的影响

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摘要

A hybrid membrane bioreactor (HMBR) employing activated sludge and biofilm simultaneously is proved to represent a good performance on membrane fouling control compared to conventional membrane bioreactor (CMBR) by reducing extracellular polymeric substances (EPS), especially bound EPS (B-EPS). In order to better understand the mechanism of membrane fouling control by the HMBR in regard of microbial community composition, a pilot scale HMBR operated to treat domestic wastewater for six months, and a CMBR operated at the same time as control group. Results showed that HMBR can effectively control membrane fouling. When transmembrane pressure reached 0.1 MPa, the membrane module in the HMBR operated for about 26.7% longer than that in the CMBR. In the HMBR, the quantity of EPS was significantly lower than that in the CMBR. In this paper, soluble EPS was also found to have a close relationship with cake layer resistance. The species richness and diversity in the HMBR were higher than those in the CMBR, and a certain difference between the compositions of microbial communities in the two reactors was confirmed. Therefore, the difference in microbial community compositions may be the direct reason why EPS in the HMBR was lower than that in the CMBR.
机译:与传统的膜生物反应器(CMBR)相比,通过同时使用活性污泥和生物膜的混合膜生物反应器(HMBR)通过减少细胞外聚合物(EPS),特别是结合的EPS(B-EPS),表现出良好的膜污染控制性能。为了更好地了解HMBR在微生物群落组成方面控制膜污染的机理,中试规模的HMBR用于处理生活污水六个月,而CMBR与对照组同时运行。结果表明,HMBR可以有效地控制膜污染。当跨膜压力达到0.1 MPa时,HMBR中的膜组件工作时间比CMBR中的膜组件长约26.7%。在HMBR中,EPS的量显着低于CMBR中的EPS。在本文中,还发现可溶性EPS与滤饼层的电阻有密切关系。 HMBR中的物种丰富度和多样性高于CMBR,并且证实了两个反应器中微生物群落组成之间存在一定差异。因此,微生物群落组成的差异可能是HMBR中的EPS低于CMBR中的EPS的直接原因。

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