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利用固定相的液体性质。VI. 多双模式逆流色谱的理论研究。

Using the liquid nature of the stationary phase. VI. Theoretical study of multi-dual mode countercurrent chromatography.

机构信息

Laboratoire des Sciences Analytiques, Université de Lyon 1, CNRS, Bat. CPE, 69622 Villeurbanne, France.

出版信息

J Chromatogr A. 2011 Sep 9;1218(36):6061-71. doi: 10.1016/j.chroma.2010.12.104. Epub 2011 Jan 4.

Abstract

Countercurrent chromatography (CCC) is a separation technique using a biphasic liquid system and centrifugal forces to maintain a support-free liquid stationary phase. Either one of the two phases can be the liquid stationary phase. It is even possible to switch the phase role during the separation. The dual-mode method is revisited recalling its theoretical background. The multi-dual mode (MDM) CCC method was introduced to enhance the resolution power of a CCC column. The theoretical study of the MDM method is validated by modeling the separation of two solutes. The basic hypothesis is that the forward step (partial classical elution) is followed by a backward step that returns the less retained solute to the column head. The equations show that the most important parameter to maximize resolution is not the number of MDM steps but the total volume of liquid phases used to elute the solutes. The model is validated calculating correctly the peak position of previously published MDM experiments.

摘要

逆流色谱(CCC)是一种使用两相液体系统和离心力来维持无支撑液固定相的分离技术。两相中的任何一相都可以作为液固固定相。甚至可以在分离过程中切换相角色。本文重新回顾了双模式方法,回忆其理论背景。引入多双模式(MDM)CCC 方法以提高 CCC 柱的分辨率能力。通过对两种溶质的分离进行建模,对 MDM 方法的理论研究进行了验证。基本假设是前向步骤(部分经典洗脱)之后是后向步骤,将保留时间较短的溶质返回到柱头。该方程表明,最大化分辨率的最重要参数不是 MDM 步骤的数量,而是用于洗脱溶质的液体相的总体积。通过计算先前发表的 MDM 实验的峰位置,对模型进行了验证。

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