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基于流动模式和分离实验对离心分配色谱中使用的腔室进行研究、比较和设计。

Investigation, comparison and design of chambers used in centrifugal partition chromatography on the basis of flow pattern and separation experiments.

作者信息

Schwienheer C, Merz J, Schembecker G

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. 2015 Apr 17;1390:39-49. doi: 10.1016/j.chroma.2015.01.085. Epub 2015 Feb 11.

Abstract

In centrifugal partition chromatography (CPC) the separation efficiency is mainly influenced by the hydrodynamic of mobile and stationary phase in the chambers. Thus, the hydrodynamic has to be investigated and understood in order to enhance a CPC separation run. Different chamber geometries have been developed in the past and the influence of several phase systems and CPC operating conditions were investigated for these chambers. However, a direct comparison between the different chamber types has not been performed yet. In order to investigate the direct influence of the chamber design on the hydrodynamic, several chamber designs - partially similar in geometry to commercial available designs - are investigated under standardized conditions in the present study. The results show the influence of geometrical aspects of the chamber design on the hydrodynamic and therewith, on the separation efficiency. As a conclusion of the present study, some ideas for an optimal chamber design for laboratory and industrial purpose are proposed.

摘要

在离心分配色谱法(CPC)中,分离效率主要受各腔室中流动相和固定相流体动力学的影响。因此,为了提高CPC分离过程,必须对流体动力学进行研究和理解。过去已经开发了不同的腔室几何结构,并针对这些腔室研究了几种相系统和CPC操作条件的影响。然而,尚未对不同腔室类型进行直接比较。为了研究腔室设计对流体动力学的直接影响,本研究在标准化条件下对几种腔室设计(在几何形状上部分类似于市售设计)进行了研究。结果表明了腔室设计的几何因素对流体动力学的影响,进而对分离效率的影响。作为本研究的结论,提出了一些用于实验室和工业用途的最佳腔室设计思路。

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