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探究离子色谱的动力学性能极限。二、小分子离子的梯度条件。

Probing the kinetic performance limits for ion chromatography. II. Gradient conditions for small ions.

机构信息

Australian Centre for Research on Separation Science (ACROSS), School of Chemistry, University of Tasmania, Private Bag 75, Hobart 7050, Tasmania, Australia.

出版信息

J Chromatogr A. 2010 Jul 30;1217(31):5063-8. doi: 10.1016/j.chroma.2010.05.002. Epub 2010 May 6.

Abstract

A gradient kinetic plot method is used for theoretical characterisation of the performance of polymeric particulate anion exchange columns for gradient separations of small inorganic anions. The method employed requires only information obtained from a series of isocratic column performance measurements and in silico predictions of retention time and peak width under gradient conditions. Results obtained under practically constrained conditions provide parameters for the generation of high peak capacities and rapid peak production for fast analysis to be determined. Using this prediction method, a maximum theoretical peak capacity of 84 could be used to achieve separation of 26 components using a 120min gradient (R(s)>1). This approach provides a highly convenient tool for development of both mono- and multidimensional ion chromatography (IC) methodologies as it yields comprehensive understanding of the influence of gradient slope, analysis time, column length and temperature upon kinetically optimised gradient performance.

摘要

梯度动力学谱图法用于对聚合物颗粒阴离子交换柱在小无机阴离子梯度分离性能的理论表征。该方法仅需要从一系列等度柱性能测量和梯度条件下保留时间和峰宽的计算机预测中获得信息。在实际约束条件下获得的结果为生成高峰容量和快速峰生产以实现快速分析提供参数。使用这种预测方法,可以使用 120 分钟的梯度(R(s)>1)实现 84 个最大理论峰容量,从而分离 26 个组分。该方法为单维和多维离子色谱(IC)方法的开发提供了一个非常方便的工具,因为它全面了解了梯度斜率、分析时间、柱长和温度对动力学优化梯度性能的影响。

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