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Mitigation of particle deposition onto membrane surface in cross-flow microfiltration under high flow rate

机译:高流速下错流微滤减少颗粒沉积在膜表面

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We investigated the effects of flow rate, particle diameter and initial flux on fouling mitigation in cross flow microfiltration of suspensions containing silica and PMMA particles. Regardless of the difference in PMMA and silica, the fouling mitigation was more effective at a larger flow rate and larger particle diameter, due to sufficient hydrodynamic lift force. Lower initial flux was also shown to be better for the mitigation of fouling. Fouling was completely prevented when cross-flow filtration of particles with 1.5 mu m of diameter was carried out under a flow rate of 30 L min(-1) and 4.0 x 10(-5) m(3) m(-2) s(-1) of initial flux. We also demonstrated that classification of bi-dispersed particles using membranes could be achieved by the cross-flow microfiltration, where fouling by larger particles than the pore size was completely prevented because of the sufficient hydrodynamic lift force and only the smaller particles permeated through the membrane. This classification remained stable for 3 h while maintaining the flux and permeation of the smaller particles. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们研究了流速,粒径和初始通量对含有二氧化硅和PMMA颗粒的悬浮液的错流微滤过程中结垢缓解的影响。不管PMMA和二氧化硅的区别如何,由于有足够的流体动力提升力,因此在较大的流速和较大的粒径下,结垢缓解更为有效。还显示出较低的初始通量对于减轻结垢是更好的。当在30 L min(-1)和4.0 x 10(-5)m(3)m(-2)s的流速下对直径为1.5μm的颗粒进行错流过滤时,可以完全防止结垢。 (-1)初始通量。我们还证明了使用膜对双分散颗粒进行分类可以通过错流微滤实现,因为足够的流体动力提升力,并且只有较小的颗粒透过膜,因此可以完全防止大于孔径的较大颗粒结垢。 。在保持较小颗粒的通量和渗透性的同时,这种分类在3小时内保持稳定。 (C)2016 Elsevier B.V.保留所有权利。

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