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Simulation of structural and permeation properties of multi-layer ceramic membranes

机译:多层陶瓷膜的结构和渗透性能模拟

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In the present work we describe and use a reconstruction technique for the pore structure characterization of ceramic membranes, aiming to give a deeper view on the relation between structural and permeation properties of these materials. For this purpose, we have considered multi-layer asymmetric alpha-Al2O3 membranes that are commercially used in micro- and ultrafiltration applications. Subsequently, we employ stochastic techniques to generate three-dimensional reconstructions, for each membrane layer, that share the basic structural properties of the original materials determined directly from SEM studies. The viscous flow permeability of each layer is estimated by solving numerically the momentum equation in the void space of the reconstructed media. In addition, the Knudsen permeability is predicted through a Monte Carlo random walk simulation technique. The very good agreement between predicted and experimentally measured permeability values, without the need to resort to any fitting parameter, renders the proposed reconstruction methodology quite promising for reliable characterization and representation of the pore structure of this type of membrane. (C) 2004 Elsevier B.V. All rights reserved.
机译:在当前的工作中,我们描述并使用了一种重建技术来表征陶瓷膜的孔结构,目的是更深入地了解这些材料的结构和渗透性能之间的关系。为此,我们考虑了在微滤和超滤应用中商业使用的多层不对称α-Al2O3膜。随后,我们采用随机技术为每个膜层生成三维重建物,这些重建物具有直接从SEM研究确定的原始材料的基本结构特性。通过在重构介质的空隙空间中对动量方程进行数值求解,可以估算出每一层的粘性流动渗透率。此外,克努森渗透率是通过蒙特卡洛随机游走模拟技术预测的。预测的渗透率值和实验测量的渗透率值之间非常好的一致性,而无需诉诸任何拟合参数,这使得所提出的重建方法对于此类膜的孔结构的可靠表征和表示非常有前途。 (C)2004 Elsevier B.V.保留所有权利。

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