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Adhesion potential of bacteria retrieved from intake seawater and membrane biofilms on full-scale reverse osmosis desalination process

机译:从摄入海水和膜生物膜检索的细菌的粘附潜力在全尺度反渗透脱水过程中

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Micro-organisms were isolated from intake seawater and reverse osmosis (RO) membrane biofilms collected from a full-scale membrane-based desalination process. The results from a culture-dependent approach using 12 media were combined with the microbial community structure on fouled RO membranes as analyzed by a 16S rRNA clone library construction in our previous study. This was followed by selection of 11 target bacteria for further analysis, which were suspected to be responsible for biofilm formation on membrane surfaces. The adhesion of potential biofoulants differing in surface hydrophobicity and charge was examined. Cell wall hydrophobicity was measured as the contact angle of a lawn of bacteria, and by adhesion to hexadecane. The cell surface charge was investigated by measuring electrophoretic mobility. The data obtained from these methodologies were compared. According to the cell surface charge measurements, Pseudomonas aeruginosa, Acinetobacter venetianus, Cellvibrio mixtus subsp. Mixtus, Bacillus sp. Eur1 9.5, and Escherichia coli K12 could mediate initial adhesion to negatively charged RO membranes through electrostatic attraction. Limnobacter sp. KNF002, A. venetianus, and Simiduia agarivorans showed higher affinity to hexadecane than other bacterial strains tested, and Bacillus sp. Eur1 9.5, C. mixtus subsp. Mixtus, and P. aeruginosa were determined to have greater hydrophobic interactions with hydrophobic RO membranes.
机译:分离微生物从进气海水和从全凝胶化脱盐过程中收集的摄入海水和反渗透(RO)膜生物膜。使用12次培养基的培养依赖性方法的结果与我们之前的研究中的16S RRNA克隆文库构建分析的污垢卵膜上的微生物群落结构。随后选择11种靶细菌进行进一步分析,这些细菌被怀疑是对膜表面上的生物膜形成的原因。检查了表面疏水性和电荷不同的潜在生物管制的粘附性。测量细胞壁疏水性作为细菌草坪的接触角,并通过对十六烷烷的粘附性。通过测量电泳迁移率来研究细胞表面电荷。比较了从这些方法获得的数据进行了比较。根据细胞表面电荷测量,假单胞菌铜绿假单胞菌,venetianus,Cellvibrio Mixtus subsp。 Mixtus,Bacillus sp。 EUR1 9.5和Escherichia Coli K12可以通过静电吸引力介导初始粘附到带负电荷的RO膜。 Limnobacter sp。 KNF002,A.威尼斯人和西西米亚血糖血糖素对十六叶酸的亲和力较高,而不是其他细菌菌株和芽孢杆菌。 EUR1 9.5,C. Mixtus subsp。 Mixtus和P.铜绿假单胞菌被确定与疏水RO膜具有更大的疏水相互作用。

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