首页> 外文期刊>Analytical chemistry >Multimode Gradient Elution in Reversed-Phase Liquid Chromatography: Application to Retention Prediction and Separation Optimization of a Set of Amino Acids in Gradient Runs Involving Simultaneous Variations of Mobile-Phase Composition,Flow Rate, and Temperature
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Multimode Gradient Elution in Reversed-Phase Liquid Chromatography: Application to Retention Prediction and Separation Optimization of a Set of Amino Acids in Gradient Runs Involving Simultaneous Variations of Mobile-Phase Composition,Flow Rate, and Temperature

机译:反相液相色谱中的多模式梯度洗脱:涉及流动相组成,流速和温度的同时变化的梯度运行中一组氨基酸的保留预测和分离优化的应用

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摘要

The theory of multimode gradient elution in liquid chromatography involving combined gradients of the mobile-phase composition with flow rate and column temperature is presented, and a very simple stepwise method that allows for the calculation of the elution time of a sample solute under all gradient conditions is proposed. The theory is successfully applied to the separation of 12 o-phthalaldehyde derivatives of amino acids in eluting systems modified by acetonitrile. Average errors below 2.9percent have been found in the retention prediction using the above method, which is supported by adequate models and algorithms capable of describing the chromatographic behavior of solutes upon changes in the separation factors, such as the modifier content, flow rate, and temperature.
机译:提出了液相色谱中多模式梯度洗脱的理论,该理论涉及流动相组合物的梯度与流速和柱温的组合,并给出了一种非常简单的逐步方法,该方法可以计算在所有梯度条件下样品溶质的洗脱时间被提议。该理论已成功地应用于分离乙腈改性的洗脱系统中的12种氨基酸的邻苯二甲醛衍生物。使用上述方法在保留预测中发现的平均误差低于2.9%,这得到了足够的模型和算法的支持,这些模型和算法能够描述分离因子(例如改性剂含量,流速和分离度)变化时溶质的色谱行为。温度。

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