Department of Chemistry, University of Tennessee, Knoxville, TN 37996-1600, USA.
J Chromatogr A. 2013 Sep 20;1308:132-8. doi: 10.1016/j.chroma.2013.07.112. Epub 2013 Aug 8.
This paper compares two methods used for the preparative purification of a mixture of (S)-, and (R)-naproxen on a Whelk-O1 column, using either high performance liquid chromatography or supercritical fluid chromatography. The adsorption properties of both enantiomers were measured by frontal analysis, using methanol-water and methanol-supercritical carbon dioxide mixtures as the mobile phases. The measured adsorption data were modeled, providing the adsorption isotherms and their parameters, which were derived from the nonlinear fit of the isotherm models to the experimental data points. The model used was a Bi-Langmuir isotherm, similar to the model used in many enantiomeric separations. These isotherms were used to calculate the elution profiles of overloaded elution bands, assuming competitive Bi-Langmuir behavior of the two enantiomers. The analysis of these profiles provides the basis for a comparison between supercritical fluid chromatographic and high performance liquid chromatographic preparative scale separations. It permits an illustration of the advantages and disadvantages of these methods and a discussion of their potential performance.
本文比较了两种方法,用于在 Whelk-O1 柱上对 (S)-和 (R)-萘普生混合物进行制备性纯化,分别使用高效液相色谱法和超临界流体色谱法。通过前沿分析测量两种对映体的吸附特性,使用甲醇-水和甲醇-超临界二氧化碳混合物作为流动相。测量的吸附数据进行了建模,提供了吸附等温线及其参数,这些参数是通过将等温线模型非线性拟合到实验数据点来得出的。使用的模型是双朗缪尔等温线,类似于许多对映体分离中使用的模型。这些等温线用于计算过载洗脱带的洗脱曲线,假设两种对映体的竞争双朗缪尔行为。对这些曲线的分析为比较超临界流体色谱法和高效液相色谱法制备规模分离提供了依据。它说明了这些方法的优缺点,并讨论了它们的潜在性能。