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Effect of coagulation mechanisms on the fouling and ultrasonic cleaning of PTFE membrane

机译:混凝机理对聚四氟乙烯膜结垢和超声清洗的影响

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摘要

In this study, the effect of coagulation pretreatment on membrane fouling and ultrasonic cleaning efficiency was investigated using a dead-end polytetrafluoroethylene (PTFE) microfiltration system. The extent of membrane fouling was examined under different coagulation mechanisms such as charge neutralization (CN), electrostatic patch effect (EPE) and sweep flocculation (SW). Fouling through EPE mechanism provided the greatest flux decline and least permeate flux recovery over CN and SW. EPE produces more stable, smaller and more compact flocs while CN and SW have large, easily degraded and highly - branched structured flocs. The predominant fouling mechanism of EPE, CN and SW is pore blocking, a combination of pore blocking and cake formation, and cake formation, respectively. Better permeate flux recovery is observed with SW over CN and EPE, which implies formation of less dense and more porous cake deposits. The morphology of fouled membranes was examined using scanning electron microscopy (SEM).
机译:在这项研究中,使用无端聚四氟乙烯(PTFE)微滤系统研究了混凝预处理对膜结垢和超声清洗效率的影响。在不同的凝结机制下(例如电荷中和(CN),静电斑块效应(EPE)和吹扫絮凝(SW))检查膜的污染程度。通过EPE机理的结垢在CN和SW上提供了最大的通量下降和最低的渗透通量回收率。 EPE生产的絮凝物更稳定,更小,更致密,而CN和SW则具有较大的,易降解的和高度分支的结构化絮凝物。 EPE,CN和SW的主要结垢机理是孔堵塞,孔堵塞和滤饼形成以及滤饼形成的组合。在CN和EPE上使用SW可以观察到更好的渗透通量回收率,这意味着形成了密度较小且多孔的滤饼沉积物。使用扫描电子显微镜(SEM)检查结垢膜的形态。

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