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Development of a 3D Model for Packed Bed Liquid Chromatography in Micro-columns

机译:微柱填充床液相色谱3D模型的开发

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One-dimensional models of column liquid chromatography are today widely applied due to some obvious advantages. These models are easy to set up, they can be computed very fast, and they can often predict experimental results reasonably well. However, one-dimensional chromatography models also have some serious disadvantages, mainly because the applied homogeneity assumptions neglect important information on flow conditions and concentration distributions over cross sections of the chromatography column. This information can be highly advantageous for analyzing existing systems and for designing future processes. We hence developed a three-dimensional model for packed bed liquid chromatography in micro-columns. The system geometry is given by a cylindrical vessel that is randomly packed with spherical beads. The equations for convective solute transport in the interstitial volume, for diffusive transport within the porous beads, and for adsorption at the inner bead surfaces, are adapted from the well known general rate model and generalized to three spatial dimensions. Simulations were performed with COMSOL Multiphysics. This tool is especially suitable for systems that feature a mix of several underlying physical principles, such as the system at hand. COMSOL has interfaces to MATLAB that have been used for composing the geometry and for visualization purposes.
机译:由于一些明显的优势,柱液相色谱的一维模型如今已得到广泛应用。这些模型易于建立,可以快速计算,并且通常可以合理地预测实验结果。但是,一维色谱模型也有一些严重的缺点,主要是因为所应用的均质性假设忽略了有关色谱柱横截面流动条件和浓度分布的重要信息。该信息对于分析现有系统和设计未来流程可能非常有利。因此,我们开发了微柱填充床液相色谱的三维模型。系统的几何形状由圆柱形容器提供,该容器随机填充球形珠。间隙体积中对流溶质迁移,多孔珠粒内部的扩散迁移以及内珠粒表面的吸附等式均从众所周知的一般速率模型改编并推广到三个空间维度。仿真是使用COMSOL Multiphysics进行的。该工具特别适用于具有多种基本物理原理的系统,例如手边的系统。 COMSOL具有与MATLAB的接口,这些接口已用于构成几何图形和可视化目的。

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