首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Simulation of elution profiles in liquid chromatography-I: Gradient elution conditions, and with mismatched injection and mobile phase solvents
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Simulation of elution profiles in liquid chromatography-I: Gradient elution conditions, and with mismatched injection and mobile phase solvents

机译:液相色谱-I洗脱曲线的模拟:梯度洗脱条件,以及进样和流动相溶剂不匹配

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摘要

High-performance liquid chromatography (HPLC) simulators are effective method development tools. The goal of the present work was to design and implement a simple algorithm for simulation of liquid chromatographic separations that allows for characterization of the effect of injection solvent mismatch and injection solvent volume overload. The simulations yield full analyte profiles during solute migration and at elution, which enable a thorough physical understanding of the effects of method variables on chromatographic performance. The Craig counter-current distribution model (the plate model) is used as the basis for simulation, where a local retention factor is assigned for each spatial and temporal element within the simulation. The algorithm, which is an adaptation of an approach originally described by Czok and Guiochon (Ref. [10]), is sufficiently flexible to allow the use of either linear (e.g., Linear Solvent Strength Theory) or non-linear models of solute retention (e.g., Neue-Kuss (Ref. [36])). In this study, both types of models were used, one for simulating separations of a homologous series of alkylbenzenes, and the other for separations of selected amphetamines. The simulation program was validated first by comparison of simulated retention times and peak widths for five amphetamines to predictions obtained using linear solvent strength (LSS) theory, and to results from experimental separations of these compounds. The simulated retention times for the amphetamines agreed within 0.02% and 2.5% compared to theory and experiment, respectively. Secondly, the program was evaluated for simulating the case where there is a compositional mismatch between the mobile phase at the column inlet and the injection solvent (i.e., the sample matrix). This work involved alkylbenzenes, and retention time and peak width predictions from simulations were within 1.5 and 6.0% of experimental values, respectively, even without correction for extra-column dispersion. The issues of sample/eluent solvent mismatch and solvent volume overload are especially important when considering the challenges of transferring eluent from the first to the second dimension in comprehensive two-dimensional liquid chromatography. (C) 2016 Elsevier B.V. All rights reserved.
机译:高效液相色谱(HPLC)仿真器是有效的方法开发工具。本工作的目的是设计和实现一种用于液相色谱分离模拟的简单算法,该算法可表征注入溶剂失配和注入溶剂体积过载的影响。该模拟在溶质迁移和洗脱过程中产生了完整的分析物概况,从而使您能够对方法变量对色谱性能的影响有全面的物理了解。 Craig逆流分布模型(平板模型)用作仿真的基础,其中为仿真中的每个时空元素分配了局部保留因子。该算法是Czok和Guiochon(参考文献[10])最初描述的方法的改编,具有足够的灵活性,可以使用溶质保留的线性模型(例如,线性溶剂强度理论)或非线性模型(例如Neue-Kuss(参考文献[36]))。在这项研究中,使用了两种类型的模型,一种模型用于模拟同源系列烷基苯的分离,另一种模型用于所选苯丙胺的分离。首先通过将五种苯丙胺的模拟保留时间和峰宽与使用线性溶剂强度(LSS)理论获得的预测值以及这些化合物的实验分离结果进行比较,从而验证了该模拟程序。与理论和实验相比,苯丙胺的模拟保留时间分别在0.02%和2.5%之内。其次,对程序进行评估,以模拟在色谱柱入口的流动相与进样溶剂(即样品基质)之间存在成分不匹配的情况。这项工作涉及烷基苯,即使不对柱外分散进行校正,模拟结果的保留时间和峰宽预测值也分别在实验值的1.5%和6.0%之内。当考虑在全面二维液相色谱中将洗脱液从第一维转移到第二维时所遇到的挑战时,样品/洗脱液溶剂不匹配和溶剂体积过载的问题尤为重要。 (C)2016 Elsevier B.V.保留所有权利。

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