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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Retention prediction and separation optimization under multilinear gradient elution in liquid chromatography with Microsoft Excel macros
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Retention prediction and separation optimization under multilinear gradient elution in liquid chromatography with Microsoft Excel macros

机译:使用Microsoft Excel宏在液相色谱中的多线性梯度洗脱下的保留预测和分离优化

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摘要

A package of Excel VBA macros have been developed for modeling multilinear gradient retention data obtained in single or double gradient elution mode by changing organic modifier(s) content and/or eluent pH. For this purpose, ten chromatographic models were used and four methods were adopted for their application. The methods were based on (a) the analytical expression of the retention time, provided that this expression is available, (b) the retention times estimated using the Nikitas-Pappa approach, (c) the stepwise approximation, and (d) a simple numerical approximation involving the trapezoid rule for integration of the fundamental equation for gradient elution. For all these methods, Excel VBA macros have been written and implemented using two different platforms; the fitting and the optimization platform. The fitting platform calculates not only the adjustable parameters of the chromatographic models, but also the significance of these parameters and furthermore predicts the analyte elution times. The optimization platform determines the gradient conditions that lead to the optimum separation of a mixture of analytes by using the Solver evolutionary mode, provided that proper constraints are set in order to obtain the optimum gradient profile in the minimum gradient time. The performance of the two platforms was tested using experimental and artificial data. It was found that using the proposed spreadsheets, fitting, prediction, and optimization can be performed easily and effectively under all conditions. Overall, the best performance is exhibited by the analytical and Nikitas-Pappa's methods, although the former cannot be used under all circumstances. (C) 2015 Elsevier B.V. All rights reserved.
机译:已开发出一套Excel VBA宏,用于通过更改有机修饰剂的含量和/或洗脱液的pH值,对以单梯度或双梯度洗脱模式获得的多线性梯度保留数据建模。为此,使用了十个色谱模型,并采用了四种方法进行应用。该方法基于(a)保留时间的解析表达式,前提是该表达式可用,(b)使用Nikitas-Pappa方法估算的保留时间,(c)逐步逼近,以及(d)简单梯形法则的数值逼近,用于梯度洗脱基本方程的积分。对于所有这些方法,已经使用两种不同的平台编写和实现了Excel VBA宏;拟合和优化平台。拟合平台不仅计算色谱模型的可调整参数,而且还计算这些参数的重要性,并进一步预测分析物的洗脱时间。如果设置了适当的限制条件,以便在最短的梯度时间内获得最佳的梯度曲线,则优化平台可通过使用Solver进化模式确定导致最佳分离分析物混合物的梯度条件。使用实验和人工数据测试了这两个平台的性能。发现使用所提出的电子表格,可以在所有条件下容易且有效地执行拟合,预测和优化。总体而言,分析方法和Nikitas-Pappa方法均显示出最佳性能,尽管前者不能在所有情况下都使用。 (C)2015 Elsevier B.V.保留所有权利。

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