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Factors Affecting Reversible Pollution of Immersed Ultrafiltration Membrane in Treatment of Surface Water: Pilot Scale Studies

机译:浸入式超滤膜处理地表水中可逆污染的影响因素:中试研究

摘要

    The main factors (i.e., permeate flux, mixture characteristics, and membrane materials) affecting the pollution of immersed ultrafiltration membrane (immersed-UF) during the treatment of surface water were investigated through pilot scale studies. The variation of the running pressure was used as an indicator of membrane fouling. It is indicated that the rate of running pressure increased rapidly when the actual flux exceeded the critical flux, which exhibited to be 20 L·m-2·h-1 as for the membrane used in this study. The higher concentrations of turbidity and organic matter in the mixture contributed to the more significant increase of running pressure and the more serious membrane fouling. The higher temperature could lessen the membrane fouling to a certain extent. It was observed that membrane materials showed obvious effects on membrane fouling. The running pressure of Polyvinylidene Fluoride (PVDF) membrane was lower than that of chemically-modified Polyvinyl Chloride (PVC) at the same permeate flux, indicating the more promising potential of anti-pollution for PVDF membrane.
机译:通过中试研究,研究了影响地表水处理过程中浸入式超滤膜(浸入式超滤膜)污染的主要因素(即渗透通量,混合物特性和膜材料)。运行压力的变化用作膜结垢的指标。结果表明,当实际通量超过临界通量时,运行压力的速率迅速增加,对于本研究中的膜,其显示为20 L·m-2·h-1。混合物中浊度和有机物的浓度越高,运行压力的增加越明显,膜的结垢越严重。较高的温度可以在一定程度上减轻膜的结垢。观察到膜材料对膜结垢显示出明显的影响。在相同的渗透通量下,聚偏二氟乙烯(PVDF)膜的运行压力低于化学改性的聚氯乙烯(PVC),这表明PVDF膜具有更广阔的发展前景。

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    Sun Lihua;

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  • 年度 2010
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