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Permeability-Selectivity Analysis of Microfiltration and Ultrafiltration Membranes: Effect of Pore Size and Shape Distribution and Membrane Stretching

机译:微滤和超滤膜的渗透性-选择性分析:孔径和形状分布及膜拉伸的影响

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摘要

We present a modeling approach to determine the permeability-selectivity tradeoff for microfiltration and ultrafiltration membranes with a distribution of pore sizes and pore shapes. Using the formulated permeability-selectivity model, the effect of pore aspect ratio and pore size distribution on the permeability-selectivity tradeoff of the membrane is analyzed. A finite element model is developed to study the effect of membrane stretching on the distribution of pore sizes and shapes in the stretched membrane. The effect of membrane stretching on the permeability-selectivity tradeoff of membranes is also analyzed. The results show that increasing pore aspect ratio improves membrane performance while increasing the width of pore size distribution deteriorates the performance. It was also found that the effect of membrane stretching on the permeability-selectivity tradeoff is greatly affected by the uniformity of pore distribution in the membrane. Stretching showed a positive shift in the permeability-selectivity tradeoff curve of membranes with well-dispersed pores while in the case of pore clustering, a negative shift in the permeability-selectivity tradeoff curve was observed.
机译:我们提出了一种建模方法,以确定具有孔径和孔形分布的微滤和超滤膜的渗透性-选择性权衡。使用公式化的渗透率-选择性模型,分析了孔隙长径比和孔径分布对膜的渗透率-选择性折衷的影响。建立了一个有限元模型来研究膜拉伸对拉伸膜中孔径和形状分布的影响。还分析了膜拉伸对膜的渗透性-选择性折衷的影响。结果表明,增加孔的长径比可改善膜性能,而增加孔径分布的宽度则会降低性能。还发现膜拉伸对渗透率-选择性折衷的影响极大地受到膜中孔分布均匀性的影响。拉伸显示具有良好分散的孔的膜的渗透性-选择性权衡曲线的正偏移,而在孔簇的情况下,渗透性-选择性权衡曲线的负偏移。

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