Optimizing Chromatographic Separation with Redosing: Effects on Separation Efficiency of a Model System in Centrifugal Partition Chromatography

F. Buthmann, Jan Hohlmann, Mareen Neuwald, Gerhard Schembecker
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Abstract

This study investigates and optimizes chromatographic separation in a Centrifugal Partition Chromatograph. Therefore, a model system is separated in a single-disc rotor. The occurring loss of the stationary phase lowers the separation efficiency over time. We introduced a new mode of operation, called the redosing of the stationary phase, to counteract this hydrodynamic phenomenon. Experiments with redosing at an optimized operating point demonstrate almost constant separation performance over 12 h, reducing solvent consumption by 45% and increasing chromatographic resolution by 37%. The improvement in retention by 69% contributes to this enhancement. Accordingly, reference experiments without redosing were conducted as a benchmark, highlighting the automated mode’s benefits, as mentioned.
通过重新配料优化色谱分离:离心分离色谱模型系统对分离效率的影响
本研究调查并优化了离心分离色谱仪中的色谱分离。因此,一个模型系统在单盘转子中进行分离。随着时间的推移,固定相的流失会降低分离效率。我们引入了一种新的操作模式,称为固定相的重新配料,以抵消这种流体动力现象。在优化的操作点上进行重新加样的实验表明,12 小时内分离性能几乎保持不变,溶剂消耗减少了 45%,色谱分辨率提高了 37%。保留率提高 69% 也是原因之一。因此,如前所述,我们还进行了没有重新加样的参考实验作为基准,以突出自动模式的优势。
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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