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Fouling cake layer in a submerged anaerobic membrane bioreactor treating saline wastewaters: Curse or a blessing?

机译:淹没式厌氧膜生物反应器中处理盐水的污垢层:诅咒还是祝福?

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The treatment of inhibitory (saline) wastewaters is known to produce considerable amounts of soluble microbial products (SMPs), and this has been implicated in membrane fouling; the fate of these SMPs was of considerable interest in this work. This study also investigated the contribution of SMPs to membrane fouling of the; (a) cake layer/biofilm layer, (b) the compounds below the biofilm/ cake layer and strongly attached to the surface of the membrane, (c) the compounds in the inner pores of the membrane, and (d) the membrane. It was found that the cake/biofilm layer was the main reason for fouling of the membrane. Interestingly, the bacteria attached to the cake/biofilm layer showed higher biodegradation rates compared with the bacteria in suspension. Moreover, the bacteria attached to the cake layer showed higher amounts of attached extracellular polysaccharides (EPS) compared with the bacteria in suspension, possibly due to accumulation of the released EPS from suspended biomass in the cake/biofilm layer. Molecular weight (MW) analysis of the effluent and reactor bulk showed that the cake layer can retain a large fraction of the SMPs in the reactor and prevent them from being released into the effluent. Hence, while cake layers lead to lower fluxes in submerged anaerobic membrane bioreactors (SAMBRs), and hence higher costs, they can improve the quality of the reactor effluent.
机译:已知抑制性(盐水)废水的处理会产生大量的可溶性微生物产品(SMP),这与膜污染有关。这些SMP的命运在这项工作中引起了极大的兴趣。这项研究还调查了SMPs对膜污染的贡献。 (a)滤饼层/生物膜层,(b)在生物膜/滤饼层下方并牢固附着在膜表面的化合物,(c)在膜内孔中的化合物,和(d)膜。发现滤饼/生物膜层是膜结垢的主要原因。有趣的是,与悬浮液中的细菌相比,附着在滤饼/生物膜层上的细菌显示出更高的生物降解率。此外,与悬浮液中的细菌相比,附着在滤饼层上的细菌显示出更高的附着细胞外多糖(EPS)数量,这可能是由于从滤饼/生物膜层中悬浮的生物质释放的EPS积累所致。流出物和反应器体积的分子量(MW)分析表明,滤饼层可以在反应器中保留大部分SMP,并防止它们释放到流出物中。因此,尽管滤饼层导致淹没式厌氧膜生物反应器(SAMBR)中的通量较低,从而导致成本较高,但它们可以提高反应器流出物的质量。

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