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A flow distribution and collection feature for ensuring scalable uniform flow in a chromatography device

机译:用于确保色谱装置中可扩展均匀流的流量分布和集合特征

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We discuss how the efficiency of a chromatography device could be enhanced by incorporating a new feature which ensures flow uniformity. The overall flow of fluid within the device, which has a cuboid shape, could be visualized as a combination of two z patterns. The device is therefore designated as cuboid z(2). The reason for flow uniformity is explained using a simple mathematical model, and also based on computational fluid dynamic (CFD) simulations. The cuboid z(2) device outperformed its equivalent conventional cylindrical column in terms of separation efficiency metrics such as the number of theoretical plates, the reduced plate height, and attributes of non-interacting tracer solute peaks. The results discussed in this paper clearly indicate the suitability of the cuboid z(2) device for carrying out high-resolution chromatographic separations. The z(2) flow enhancing feature would also be broadly applicable to any process which requires uniform flow in three-dimensional porous media. In addition to superior fluidic attributes, the cuboid z(2) chromatography device has other advantages such as compactness and scalability. (C) 2020 Elsevier B.V. All rights reserved.
机译:我们讨论如何通过结合确保流量均匀性的新特征来提高色谱装置的效率。具有长方体形状的装置内的流体的整体流体可以被视为两个Z模式的组合。因此,该装置被指定为立方体Z(2)。使用简单的数学模型来解释流均匀性的原因,以及基于计算流体动态(CFD)模拟。在分离效率度量方面,长方体Z(2)器件在诸如理论板的数量,减小的板高度和非相互作用的示踪溶液溶液峰的数量和属性的分离效率度量方面优于其等同的传统圆柱柱。本文中讨论的结果清楚地表明了长方体Z(2)装置进行高分辨率色谱分离的适用性。 Z(2)流量增强特征也广泛适用于需要在三维多孔介质中均匀流动的过程。除了出色的流体属性之外,长方体Z(2)色谱装置还具有其他优点,例如紧凑性和可扩展性。 (c)2020 Elsevier B.v.保留所有权利。

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