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Calculation of flow and solute deposition through three-dimensional reconstructed model of microporous membranes

机译:通过微孔膜三维重建模型计算流动和溶质沉积

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The morphology of a typical microfiltration membrane is a random, irregular, three-dimensional, and interconnected network. In this study, a realistic model of microporous membrane was obtained using Confocal Scanning Laser Microscopy (CSLM). CSLM allows accurate and non-destructive membrane sectioning in a plane perpendicular to the optical axis of the microscope. Microporous membranes made of mixed ester (cellulose nitrate/ cellulose acetate) with 1.2 μm pore size were investigated. Optical sections of the MF membrane mounted in immersion oil were recorded on all the membrane depth. The numerical permeabilities were obtained by solving the Stokes equation for this three-dimensional media and were compared to experimental results. Finally, the simulation of solute transport through the microporous membrane was discussed by considering convection-diffusion equations.
机译:典型的微滤膜的形态是随机,不规则,三维和互连的网络。在该研究中,使用共聚焦扫描激光显微镜(CSLM)获得微孔膜的现实模型。 CSLM允许在垂直于显微镜的光轴的平面中精确和非破坏性膜切片。研究了用1.2μm孔径的混合酯(醋酸纤维素/醋酸纤维素)制成的微孔膜。在所有膜深度上记录安装在浸入油中的MF膜的光学部分。通过求解该三维培养基的斯托克斯方程并与实验结果进行比较来获得数值渗透性。最后,通过考虑对流扩散方程来讨论通过微孔膜的溶质传输的模拟。

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