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Errors involved in the existing B-term expressions for the longitudinal diffusion in fully porous chromatographic media - Part II: Experimental data in packed columns and surface diffusion measurements

机译:现有的B项表达式在全多孔色谱介质中的纵向扩散中涉及的误差-第II部分:填充柱中的实验数据和表面扩散测量

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Peak parking experiments have been performed on three RP-HPLC different columns, using two different components and a variable mobile phase composition. The aim of the study was to investigate whether the B-term diffusion expressions currently used in the literature (which are all Knox-type models) should be replaced by the effective diffusion expressions that have been developed in the frame of the effective medium theory (EMT). Although the EMT-expressions are not fully accurate either (the mathematics of the complex interactions between different diffusion zones that are in close contact are too demanding to catch them in an exact analytical expression), they at least are physically sound and do not violate Maxwell's basic law of diffusion. Further they also provide a much better approximation of the numerically calculated effective diffusivity in the theoretical test situation considered in part I. The present study shows that the values of the surface or stationary phase diffusion coefficient that are derived from peak parking models can depend heavily on the employed B-term model. The EMT-based B-term expressions lead to values of the surface diffusion coefficient that vary much less strongly with the phase retention factor than if one of the Knox-type models is used to analyze the data. This implies that, since all peak parking experiments that have been performed in the past have all been interpreted with a Knox-type model, the conclusions that have been drawn from these studies should all be moderated or at least revisited. (C) 2008 Elsevier B.V. All rights reserved.
机译:使用两种不同的组分和可变的流动相组成,在三个RP-HPLC不同的色谱柱上进行了峰停车实验。这项研究的目的是调查是否应使用在有效介质理论框架内已经开发出的有效扩散表达式来代替当前文献中使用的B项扩散表达式(均为Knox型模型)( EMT)。尽管EMT表达式也不是完全准确的(紧密接触的不同扩散区之间的复杂相互作用的数学要求太高,以至于无法将它们精确地解析为表达式),但它们至少在物理上是合理的,并且没有违反Maxwell的扩散的基本规律。此外,在第一部分中考虑的理论测试情况下,它们还为数值计算的有效扩散率提供了更好的近似值。本研究表明,从峰值停车模型得出的表面或固定相扩散系数的值在很大程度上取决于使用的B项模型。基于EMT的B项表达式导致表面扩散系数的值随相位保持因子的变化远小于使用Knox类型模型之一分析数据时的值。这意味着,由于过去已执行的所有峰值停车实验均已用Knox型模型进行了解释,因此从这些研究中得出的结论均应加以调整或至少重新考虑。 (C)2008 Elsevier B.V.保留所有权利。

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