Spatially and Temporally Resolved Analysis of Bleeding in a Centrifugal Partition Chromatography Rotor

F. Buthmann, Philip Laby, Djamal Hamza, J. Koop, Gerhard Schembecker
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Abstract

Centrifugal Partition Chromatography (CPC) is a separation technique that utilizes immiscible liquid phases to purify compounds. The selection of solvents in Liquid–Liquid Chromatography offers flexibility and optimization possibilities for specific separation tasks. Understanding the hydrodynamics inside the apparatus is crucial for optimizing a CPC process. The phase retention ratio (Sf) determines the apparatus’s operating point and separation efficiency. However, stationary phase leakage, known as bleeding, complicates the immobilization of this phase. We used a partly transparent single-disc rotor to investigate the time and space dependency of bleeding inside a CPC apparatus, enabling real-time and localized determination of the phase retention ratio. By tracking the retention values over time, we observed the bleeding phenomenon and its progression from the inlet to the rotor outlet. Depending on the phase system used, the CPC was utilizable for a separation task for only 173–500 dimensionless residence times. Systems with a higher stability parameter (as described in the literature) showed a lower bleeding rate and increased stability over time. Accordingly, our results demonstrate the importance of maintaining an optimal ratio of mobile to stationary phase for efficient separation.
对离心分离色谱转子中的渗流进行时空分辨分析
离心分离色谱法(CPC)是一种利用不相溶液相提纯化合物的分离技术。液-液色谱法中溶剂的选择为特定分离任务提供了灵活性和优化可能性。了解仪器内部的流体力学对于优化 CPC 流程至关重要。相保留率 (Sf) 决定了仪器的工作点和分离效率。然而,固定相泄漏(即出血)使固定相的固定变得复杂。我们使用部分透明的单盘转子来研究 CPC 仪器内渗流的时间和空间依赖性,从而能够实时和局部地确定相保留率。通过跟踪随时间变化的保留值,我们观察到了从入口到转子出口的渗流现象及其发展过程。根据所使用的相系统,CPC 只需 173-500 个无量纲停留时间即可完成分离任务。稳定性参数较高的系统(如文献所述)显示出血率较低,稳定性随时间增加。因此,我们的研究结果表明,保持流动相和固定相的最佳比例对于高效分离非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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