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浸没式膜生物反应器中生物膜生物聚合物组成与膜污染之间的相关性。

The correlation between biofilm biopolymer composition and membrane fouling in submerged membrane bioreactors.

作者信息

Luo Jinxue, Zhang Jinsong, Tan Xiaohui, McDougald Diane, Zhuang Guoqiang, Fane Anthony G, Kjelleberg Staffan, Cohen Yehuda, Rice Scott A

机构信息

a Research Center for Eco-Environmental Sciences , Chinese Academy of Sciences , Beijing , PR China.

出版信息

Biofouling. 2014 Oct;30(9):1093-110. doi: 10.1080/08927014.2014.971238.

Abstract

Biofouling, the combined effect of microorganism and biopolymer accumulation, significantly reduces the process efficiency of membrane bioreactors (MBRs). Here, four biofilm components, alpha-polysaccharides, beta-polysaccharides, proteins and microorganisms, were quantified in MBRs. The biomass of each component was positively correlated with the transmembrane pressure increase in MBRs. Proteins were the most abundant biopolymer in biofilms and showed the fastest rate of increase. The spatial distribution and co-localization analysis of the biofouling components indicated at least 60% of the extracellular polysaccharide (EPS) components were associated with the microbial cells when the transmembrane pressure (TMP) entered the jump phase, suggesting that the EPS components were either secreted by the biofilm cells or that the deposition of these components facilitated biofilm formation. It is suggested that biofilm formation and the accumulation of EPS are intrinsically coupled, resulting in biofouling and loss of system performance. Therefore, strategies that control biofilm formation on membranes may result in a significant improvement of MBR performance.

摘要

生物污垢是微生物和生物聚合物积累的综合效应,它会显著降低膜生物反应器(MBR)的处理效率。在此,对MBR中的四种生物膜成分——α-多糖、β-多糖、蛋白质和微生物进行了定量分析。每种成分的生物量与MBR中跨膜压力的增加呈正相关。蛋白质是生物膜中含量最丰富的生物聚合物,且其增加速率最快。生物污垢成分的空间分布和共定位分析表明,当跨膜压力(TMP)进入跃升阶段时,至少60%的胞外多糖(EPS)成分与微生物细胞相关联,这表明EPS成分要么是由生物膜细胞分泌的,要么是这些成分的沉积促进了生物膜的形成。研究表明,生物膜的形成与EPS的积累存在内在关联,从而导致生物污垢和系统性能的损失。因此,控制膜上生物膜形成的策略可能会显著提高MBR的性能。

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