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离心分配色谱中有机溶剂-水体系的流动相分散特性的表征和相关性。

Characterization and correlation of mobile phase dispersion of aqueous-organic solvent systems in centrifugal partition chromatography.

机构信息

Laboratory of Plant and Process Design, Department of Biochemical and Chemical Engineering, TU Dortmund University, D-44227 Dortmund, Germany.

Laboratory of Plant and Process Design, Department of Biochemical and Chemical Engineering, TU Dortmund University, D-44227 Dortmund, Germany.

出版信息

J Chromatogr A. 2020 Jun 7;1620:460990. doi: 10.1016/j.chroma.2020.460990. Epub 2020 Feb 24.

Abstract

To reach a high separation efficiency using Centrifugal Partition Chromatography (CPC), the fluid dynamical behavior of the liquid-liquid two-phase systems must be clearly understood. The fluid dynamics, namely the dispersion, the coalescence, and the stationary phase retention, have a high impact on a separation. Especially the mobile phase dispersion influences the mass transfer during a separation. In this study, the mobile phase dispersion of different aqueous-organic solvent systems was characterized for ascending and descending mode via video analysis. Thereby the influence of the physical properties of the solvent systems, the operating parameters, and the geometry of the chamber inlet was investigated systematically using dimensional analysis. With the help of the dimensionless numbers Ohnesorge number (Oh), Eötvös number (Eo), and Weber number (We) the impact of the solvent system, the plant parameters, and the operating parameters on the mobile phase dispersion could be described. Inside the three dimensional area, spanned by the dimensionless numbers, each state of mobile phase dispersion (undispersed, low dispersed, highly dispersed, and atomized) could be allocated to an individual region for both operating modes. Moreover, differences in mobile phase deflection depending on the operating mode and a possible reason for these were described.

摘要

为了使用离心分配色谱(CPC)达到高分离效率,必须清楚地了解液-液两相体系的流体动力学行为。流体动力学,即分散、聚结和固定相保留,对分离有很大的影响。特别是流动相的分散影响分离过程中的传质。在这项研究中,通过视频分析对不同的水-有机溶剂体系在上升和下降模式下的流动相分散进行了表征。系统地使用因次分析研究了溶剂体系的物理性质、操作参数和室入口的几何形状对流动相分散的影响。借助无量纲数奥内佐格数(Oh)、埃托夫数(Eo)和韦伯数(We),可以描述溶剂体系、工厂参数和操作参数对流动相分散的影响。在由无量纲数构成的三维区域内,对于两种操作模式,每个流动相分散状态(未分散、低分散、高分散和雾化)都可以分配到一个单独的区域。此外,还描述了流动相偏转而导致的不同操作模式以及可能的原因。

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