减轻浸没膜过滤中颗粒污染的水动力方法比较

Kuo-Jen Hwang, Chih-Sheng Chan, Fung-Fu Chen
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引用次数: 11

摘要

在浸没膜过滤中,水动力方法用于减轻颗粒污染和提高滤液通量。在对比膜堵饼过滤系统中,测量并讨论了过滤压力、曝气强度、反冲洗时间和逐级增加压力对过滤阻力和过滤通量的影响。曝气有助于减少膜表面的颗粒沉积,而逐步增加压力主要是减轻膜内部的污染。周期性反冲洗可显著降低膜内污垢和滤饼形成的阻力;因此,它可以有效地回收滤液通量。而恒压过滤时,压力越大,膜堵塞越严重,通量降低。通过对长期通量和接收滤液量的比较,在这些水动力方法中,较长时间的周期性反冲洗是过滤的最佳策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comparison of hydrodynamic methods for mitigating particle fouling in submerged membrane filtration

Hydrodynamic methods are used for mitigating particle fouling and for enhancing the filtrate flux in submerged membrane filtration. In the comparison membrane blocking-cake formation filtration system, the effects of filtration pressure, aeration intensity, backwash duration and stepwise increasing pressure on the filtration resistances and filtration flux are measured and discussed. Aeration is helpful for reducing particle deposition on the membrane surface, while stepwise increasing pressure can mainly mitigate internal fouling of the membrane. Periodic backwash can significantly reduce both the resistance caused by the membrane internal fouling and by cake formation; consequently, it can effectively recover the filtrate flux. In contrast, increasing the pressure in constant pressure filtration leads the flux to be decreased due to more severe membrane blockage. According to the comparison of the long-term flux and the received filtrate volume, among these hydrodynamic methods, the periodic backwash with longer duration is the optimal strategy for the filtration.

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