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Analysis of the Porosity of Filter Cakes Obtained by Filtration of Colloidal Suspensions

机译:胶体悬浮液过滤获得的滤饼孔隙率分析

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摘要

The filtration of suspensions in the colloidal regime is part of many processes. It is necessary due to the widespread use of nano-size particles in many applications. In nano-scale particle systems, the huge specific surface of the particles is dominating the processes. The question is whether the well-known filter theory is applicable for such type of products. The experiments in this study were conducted by gas-driven filtration. The analysis of the filter cake was done globally according to the Darcy equation and locally by the use of magnetic resonance imaging (MRI) techniques. Due to the very high resistances during filtration for colloidal suspensions, comparatively thin filter cakes with an approximate height of 0.5-3 mm were investigated. The overall porosities determined by the different techniques are in good agreement. The MRI technique allows an in situ measurement of the porosity gradient within a filter cake formed by compressible material.
机译:胶体状态下悬浮液的过滤是许多过程的一部分。由于纳米尺寸颗粒在许多应用中的广泛使用,因此有必要。在纳米级粒子系统中,粒子的巨大比表面积主导着整个过程。问题是众所周知的过滤器理论是否适用于此类产品。本研究中的实验是通过气体驱动过滤进行的。滤饼的分析是根据Darcy方程全局进行的,局部使用磁共振成像(MRI)技术进行的。由于胶体悬浮液在过滤过程中具有很高的阻力,因此研究了高度约0.5-3 mm的较薄滤饼。通过不同技术确定的总孔隙率非常一致。 MRI技术可对由可压缩材料形成的滤饼内的孔隙度梯度进行原位测量。

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