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Effect of Membrane Charge on Flow and Protein Transport during Ultrafiltration

机译:膜电荷对超滤过程中流量和蛋白质转运的影响

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摘要

Although several recent studies have demonstrated the importance of electrostatic interactions in ultrafiltration,there have been few quantitative studies of the effects of membrane charge density on protein transport and membrane hydraulic permeability.Data were obtained using a series of charge-modified cellulose membranes,with the surface charge density controlled by varying the extent of addition of a quaternary amine functionality.The membrane charge was evaluated from streaming potential measurements.Protein transmission decreased by a factor of 100 as the membrane zeta potential increased from 0.3 to 6.6 mV.The protein sieving data were in good agreement with a partitioning model accounting for electrostatic effects,while the hydraulic permeability data were consistent with a flow model accounting for the effects of counter-electroosmosis.The results provide the first quantitative analysis of the effects of membrane charge density on the performance of ultrafiltration membranes.
机译:尽管最近的一些研究证明了静电相互作用在超滤中的重要性,但很少有关于膜电荷密度对蛋白质转运和膜水力渗透性影响的定量研究。使用一系列电荷改性纤维素膜获得的数据通过改变季胺官能度的添加程度来控制表面电荷密度;通过流式电势测量评估膜电荷;随着膜zeta电位从0.3 mV增加到6.6 mV,蛋白质传输减少了100倍。与考虑静电作用的分配模型非常吻合,而水渗透率数据与考虑反渗透作用的流动模型一致。结果提供了膜电荷密度对性能影响的首次定量分析超滤膜。

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