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A Binary-Like Approach for the Computer Assisted Method Development of Isocratic and Programmed Ternary Solvent Elutions in Reversed-Phase Liquid Chromatography

机译:反相液相色谱中等度和程序化三元溶剂洗脱的计算机辅助方法开发的二进制方法

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摘要

A specific tool to enable exploration of multisolvent isocratic and programmed elutions for the computer assisted method development of reversed-phase liquid chromatography separations is described. The tool is purposely identical to those used in the optimization of binary solvent systems, which are by far the most commonly used by chromatographers. Existing data from failed binary solvent optimization processes are reused to explore ternary solvent systems with a few additional isocratic and programmed runs. This allows the development of efficient retention models for ternary systems, although the work of the chromatographer remains identical to that for optimization of binary systems. The retention models are used to develop an unattended optimization process and finally, the chromatographer selects the most satisfactory solution for testing and implementing in routine analysis. The process is exemplified with a mixture of 12 compounds that cannot be separated satisfactorily in aqueous binary solvent systems with methanol and acetonitrile as modifiers.
机译:描述了一种特定的工具,该工具能够探索多溶剂等度和程序化洗脱,以用于反相液相色谱分离的计算机辅助方法开发。该工具的目的与用于优化二元溶剂系统的工具相同,后者是迄今为止色谱分析人员最常用的工具。失败的二元溶剂优化过程中的现有数据可重复使用,以探索具有更多等度和程序运行的三元溶剂系统。尽管色谱仪的工作与优化二元系统的工作相同,但是这允许开发用于三元系统的有效保留模型。保留模型用于开发无人值守的优化过程,最后,色谱工作者选择最令人满意的解决方案,用于常规分析中的测试和实施。以在甲醇和乙腈为改性剂的二元水溶液体系中不能令人满意地分离的12种化合物的混合物为例,对该方法进行了举例说明。

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