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Mathematical Modeling of Microfiltration of Polydisperse Suspension on Heterogeneous Membranes

机译:异质膜上多分散悬浮液微滤的数学模型

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摘要

The process of microfiltration in the dead-end mode when the flow of a polydispere suspension that has the log-normal density distribution of particle diameters is perpendicular to the membrane working surface has been considered. The probabilistic sieving mechanism developed earlier by the authors is used to describe the process of filtration through a heterogeneous membrane that has a bilog-normal diameter distribution density of pores. The integral equation for determining the productivity of the membrane in time is solved numerically for five different positions of the maximum of the diameter distribution density of particles relative to two maximums of the size distribution density of membrane pores. The results are illustrated by plots to reflect time changes in productivity and rejection factor of the membrane and in pore size distribution during pore blocking.
机译:当具有粒径的对数正态密度分布的多分散悬浮液的流动垂直于膜工作表面时,已经考虑了在死端模式下的微滤过程。作者先前开发的概率筛分机制用于描述通过异质膜的过滤过程,该异质膜的孔径为bilog-normal直径分布密度。对于五个不同的位置,相对于膜孔的尺寸分布密度的两个最大值,在五个不同的位置数值求解了确定膜的生产率的积分方程。结果用曲线图表示,以反映在孔堵塞期间膜的生产率和截留率以及孔径分布的时间变化。

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