Gritti Fabrice, Guiochon Georges
Department of Chemistry, University of Tennessee, Knoxville, TN 37996-1600, USA.
J Chromatogr A. 2003 Aug 1;1008(1):23-41. doi: 10.1016/s0021-9673(03)00970-1.
The equations of two new binary competitive isotherms models are derived. The first of these models assumes that the isotherms of the two pure, single compounds have distinct monolayer capacities. Its derivation is based on kinetic arguments. The ideal adsorbed solution (IAS) framework was applied to derive the second model that is a thermodynamically consistent competitive isotherm. This second model predicts the competitive adsorption isotherm behavior of a mixture of two compounds that have single-component adsorption behavior following a BET and/or a Langmuir isotherms. Both models apply well to the binary adsorption of ethylbenzoate and 4-tert.-butylphenol on a Kromasil-C18 column (with methanol-water, 62:38, v/v, as the mobile phase). The best single-solute adsorption isotherms of these two compounds are the liquid-solid extended multilayer BET and the Langmuir isotherms, respectively. The kinetic and thermodynamic new competitive models were compared, regarding the accuracy of their prediction of the elution band profiles of mixtures of these two compounds. A better agreement between experimental and calculated profiles was observed with the kinetic model. The IAS model failed because the behavior of the ethylbenzoate/4-tert.-butylphenol adsorbed phase mixture is probably non-ideal. The most striking result is the qualitative prediction by these models of the peak splitting of 4-tert.-butylphenol during its elution in presence of ethylbenzoate.
推导了两种新的二元竞争等温线模型的方程。其中第一个模型假设两种纯的单一化合物的等温线具有不同的单层容量。其推导基于动力学论据。应用理想吸附溶液(IAS)框架推导了第二个模型,它是一个热力学上一致的竞争等温线。该第二个模型预测了两种遵循BET和/或朗缪尔等温线的具有单组分吸附行为的化合物混合物的竞争吸附等温线行为。这两个模型都很好地适用于苯甲酸乙酯和4-叔丁基苯酚在Kromasil-C18柱上的二元吸附(以甲醇-水,62:38,v/v,作为流动相)。这两种化合物的最佳单溶质吸附等温线分别是液固扩展多层BET等温线和朗缪尔等温线。就这两种化合物混合物的洗脱带谱预测的准确性而言,对动力学和热力学新竞争模型进行了比较。观察到动力学模型的实验和计算谱之间有更好的一致性。IAS模型失败了,因为苯甲酸乙酯/4-叔丁基苯酚吸附相混合物的行为可能是非理想的。最引人注目的结果是这些模型对4-叔丁基苯酚在苯甲酸乙酯存在下洗脱过程中峰分裂的定性预测。