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Effect of sludge retention time on sludge properties and membrane fouling of different hydrophobic PTFE membranes

机译:污泥停留时间对不同疏水性PTFE膜污泥特性和膜污染的影响

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Membrane bioreactor (MBR) systems have shown excellent removal performance under different process settings (lab-scale, pilot-scale and real-time situations). Membrane fouling is still highlighted as one of the important draw-back of MBR process. The sludge retention time (SRT) is an influential factor that significantly affects the fouling propensity. In this study, the effects of various SRTs (2, 5,10, 30 d) on the biomass properties, and on the performance of three polytetra-fluoroethylene (PTFE) membranes (0.22 μm pore size) with different hydrophobicity (contact angle, CA=70°, 90°, and 130°) were investigated, using long-term MBR studies. The results revealed that, the trans-membrane pressure (TMP) variations of three different hydrophobic membranes were significant at SRT of 2 d. However, there were no significant differences on TMP, flux and total resistances observed at SRTs of 5, 10 and 30 d, respectively. The analysis of extracellular polymeric substance (EPS) concentration and cake resistance at different SRTs, revealed that the composition of cake layer and its resistances were closely related to sludge properties. The SRT significantly influenced the average particle size, EPS concentration and protein to carbohydrate (P/C) ratio of mixed liquor. The operation at higher SRTs resulted in the change of sludge properties and reduced the fouling potential of the membrane. The effect of membrane hydrophobicity on MBR performance was only present during the initial stage. Thus, the variation of operational conditions in MBR greatly influences the sludge characteristics and the fouling, which in turn, affects the membrane performance.
机译:膜生物反应器(MBR)系统在不同的工艺设置(实验室规模,中试规模和实时情况)下显示出优异的去除性能。膜结垢仍然是MBR过程的重要缺点之一。污泥保留时间(SRT)是一个显着影响结垢倾向的影响因素。在这项研究中,各种SRT(2、5、10、30 d)对生物量特性的影响,以及对三种疏水性(接触角,接触角,孔径为0.22μm)的聚四氟乙烯(PTFE)膜的性能的影响。使用长期MBR研究对CA = 70°,90°和130°)进行了研究。结果表明,在SRT为2 d时,三种不同的疏水膜的跨膜压(TMP)变化显着。但是,分别在5、10和30 d的SRT观察到的TMP,通量和总电阻没有显着差异。对不同SRTs下胞外聚合物(EPS)浓度和滤饼抗性的分析表明,滤饼层的组成及其电阻与污泥性质密切相关。 SRT显着影响混合液的平均粒径,EPS浓度和蛋白质与碳水化合物(P / C)的比率。在较高的SRT下运行会导致污泥性质的变化并降低膜的结垢潜力。膜疏水性对MBR性能的影响仅在初始阶段存在。因此,MBR中操作条件的变化极大地影响了污泥特性和结垢,进而影响了膜的性能。

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