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Characterization of biofoulants illustrates different membrane fouling mechanisms for aerobic and anaerobic membrane bioreactors

机译:生物污垢剂的表征说明了好氧和厌氧膜生物反应器的不同膜污染机理

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This study compares the membrane fouling mechanisms of aerobic (AeMBR) and anaerobic membrane bioreactors (AnMBR) of the same reactor configuration at similar operating conditions. Although both the AeMBR and AnMBR achieved more than 90% COD removal efficiency, the fouling mechanisms were different. Molecular weight (MW) fingerprint profiles showed that a majority of fragments in anaerobic soluble microbial products (SMP) were retained by the membrane and some fragments were present in both SMP and in soluble extracellular polymeric substances (EPS), suggesting that the physical retention of SMP components contributed to the AnMBR membrane fouling. One of the dominant fragments was comprised of glycolipoprotein (size 630-640 kDa) and correlated in abundance in AnMBR-EPS with the extent of anaerobic membrane fouling. In contrast, all detected AeMBR-SMP fragments permeated through the membrane. Aerobic SMP and soluble EPS also showed very different fingerprinting profiles. A large amount of adenosine triphosphate was present in the AeMBR-EPS, suggesting that microbial activity arising from certain bacterial populations, such as unclassified Comamonadaceae and unclassified Chitinophagaceae, may play a role in aerobic membrane fouling. This study underlines the differences in fouling mechanisms between AeMBR and AnMBR systems and can be applied to facilitate the development of appropriate fouling control strategies. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究比较了在相似的操作条件下,相同反应器配置的好氧(AeMBR)和厌氧膜生物反应器(AnMBR)的膜污染机理。尽管AeMBR和AnMBR都达到了90%以上的COD去除效率,但结垢机理却有所不同。分子量(MW)指纹图谱表明,厌氧可溶性微生物产物(SMP)中的大部分片段都被膜保留,并且SMP和可溶性细胞外聚合物(EPS)中都存在一些片段,表明该物质的物理保留SMP成分导致AnMBR膜结垢。显性片段之一由糖脂蛋白(大小为630-640 kDa)组成,并且在AnMBR-EPS中的丰度与厌氧膜结垢程度相关。相反,所有检测到的AeMBR-SMP片段均透过膜渗透。有氧SMP和可溶性EPS也显示出非常不同的指纹图谱。 AeMBR-EPS中存在大量的三磷酸腺苷,这表明某些细菌种群(例如未分类的Comamonadaceae和未分类的甲壳菌科)产生的微生物活性可能在需氧膜污染中起作用。这项研究强调了AeMBR和AnMBR系统在结垢机理上的差异,可用于促进制定适当的结垢控制策略。 (C)2015 Elsevier B.V.保留所有权利。

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