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首页> 外文期刊>Journal of Membrane Science >Determination of particle-release conditions in microfiltration: a simple single-particle model tested on a model membrane
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Determination of particle-release conditions in microfiltration: a simple single-particle model tested on a model membrane

机译:确定微滤中的颗粒释放条件:在模型膜上测试的简单单颗粒模型

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摘要

A simple single--particle model was developed for cross--flow microfiltration with microsieves. The model describes the cross--flow conditions required to release a trapped spherical particle from a circular pore. All equations are derived in a fully analytical way without any fitting parameters. For experimental verification of the model ultra--thin microsieves of uniform pore size and distribution were used. The release of trapped particles (polystyrene spheres and yeast cells) was determined by flux measurements as well as by in--line observation through a microscope. The results show that the model gives a fairly good indication of what cross--flow should be applied to keep the pores free for the conditions specified in this paper. In addition it provides us with a simple rule of thumb for the design of cross-flow modules for microsieves. It describes which geometrical demands have to be met to enable filtration without pore blocking, again for the conditions specified in this paper.
机译:开发了一个简单的单颗粒模型,用于通过微筛进行错流微滤。该模型描述了从圆形孔释放捕获的球形颗粒所需的错流条件。所有方程均以完全解析的方式导出,没有任何拟合参数。为了对模型进行实验验证,使用了具有均匀孔径和分布的超薄微筛。捕获的颗粒(聚苯乙烯球和酵母细胞)的释放通过通量测量以及通过显微镜在线观察来确定。结果表明,该模型很好地表明了应采用哪种错流来保持毛孔畅通,以满足本文规定的条件。另外,它为我们提供了用于微筛的错流模块设计的简单经验。再次说明了在本文指定的条件下,必须满足哪些几何要求才能实现过滤而不会堵塞孔。

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