Kurnakov Institute of General & Inorganic Chemistry, Russian Academy of Sciences, Leninsky, Prospekt 31, Moscow, 119991, Russia.
Laboratory of innovation technologies, LLC. (LIT LLC), Korolev, 141090, Russia.
J Chromatogr A. 2019 Oct 11;1603:240-250. doi: 10.1016/j.chroma.2019.06.024. Epub 2019 Jun 13.
Closed-loop recycling dual-mode counter-current chromatography (CLR DM CCC) includes two separation stages: 1 - closed-loop recycling separation of solutes with mobile x-phase (CLR CCC); 2 - separation of solutes with the mobile y-phase in the opposite flow direction. Previous analysis of CLR DM CCC separations has been limited to the ideal recycling model, which neglects extra-column dispersion. In this study, the analysis of CLR CCC separations is based on the non-ideal recycling model, which takes into account the extra-column dispersion caused by the recycling system. This is of great practical importance, since by selecting the optimal parameters of the recycling system the separation can be significantly improved. Comparative analysis of CLR CCC and CLR DM CCC separations has shown that at low separations factors compounds with low partition coefficients can be separated by CLR CCC using recycling systems with a long recycling line; the separation of compounds with high partition coefficients and the separation of complex mixtures can be performed by CLR DM CCC. Simple equations for simulation and design of CLR DM CCC separations are developed. Several variants of the implementation of this separation method are discussed; examples of simulation are presented in "Mathcad" program.
闭路循环双模式逆流色谱(CLR DM CCC)包括两个分离阶段:1. 用流动相 x 相进行溶质的闭路循环分离(CLR CCC);2. 在相反的流动方向上用流动相 y 相进行溶质分离。以前对 CLR DM CCC 分离的分析仅限于理想的回收模型,该模型忽略了柱外展宽。在这项研究中,CLR CCC 分离的分析基于非理想的回收模型,该模型考虑了回收系统引起的柱外展宽。这具有重要的实际意义,因为通过选择最佳的回收系统参数,可以显著改善分离效果。CLR CCC 和 CLR DM CCC 分离的比较分析表明,在低分离因子下,对于低分配系数的化合物,可以通过使用具有长回收线的回收系统进行 CLR CCC 分离;高分配系数化合物的分离和复杂混合物的分离可以通过 CLR DM CCC 进行。开发了用于 CLR DM CCC 分离模拟和设计的简单方程。讨论了这种分离方法的几种实现变体;在“Mathcad”程序中给出了模拟示例。