Constant pressure filtration of submicron particles

Wei-Ming Lu , Chih-Cheng Lai , Kuo-Jen Hwang
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引用次数: 20

Abstract

The mechanism of cake formation in constant pressure filtrations of submicron particles is studied by analysing the forces exerted on the depositing particles. The Brownian dynamic method is used to trace the loci of slurry particles and to simulate the packing structure of submicron particles in filtrations. The major factors affecting the particle packing, such as frictional drag, van der Waals' force, electrostatic force, and Brownian force, etc., are discussed. The most compact cake is found when the frictional drag and Brownian force are of the same order of magnitude. A numerical program is designed to estimate the variations of local cake properties during a course of constant pressure filtration. The calculated results of average cake porosity and average specific filtration resistance agree very well with the experimental data.

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亚微米颗粒的恒压过滤
通过分析沉积颗粒所受的作用力,研究了亚微米颗粒恒压过滤过程中滤饼形成的机理。采用布朗动力学方法追踪浆液颗粒的轨迹,模拟了亚微米颗粒在过滤过程中的堆积结构。讨论了影响颗粒堆积的主要因素,如摩擦阻力、范德华力、静电力、布朗力等。当摩擦阻力和布朗力在同一数量级时,饼最致密。设计了一个数值计算程序来估计定压过滤过程中局部滤饼性质的变化。平均滤饼孔隙率和平均比过滤阻力的计算结果与实验数据吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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