Grajek Henryk
Military Technical Academy, Department of Advanced Technology and Chemistry, Institute of Chemistry, Kaliski st. 2, 00-908 Warsaw, Poland.
J Chromatogr A. 2007 Mar 23;1145(1-2):1-50. doi: 10.1016/j.chroma.2006.12.019. Epub 2007 Feb 20.
Adsorbate-adsorbent and adsorbate-adsorbate interactions having decisive influence on the distribution of adsorbate between gas-solid phases in inverse gas chromatography (IGC) have been thermodynamically explained. Specific retention volumes, second adsorption virial coefficients and Kováts retention indices, likewise their dependencies on column temperature, T, number of carbon atoms, n(C) (or methylene groups CH(2)) and mutual ones have been briefly presented. The results of the molar differential enthalpy and entropy of adsorption obtained for different carbon materials employing inverse gas chromatography have been collected and interpreted. An attempt has been made to elucidate abnormal behaviour of the specific and net retention volumes, the second adsorption virial coefficients and the Kováts retention indices, e.g., the magnitudes on which the values of the afore-mentioned thermodynamic values have been determined and compared. The detailed analysis of the errors associated with the experimental parameters necessary for calculating retention volumes, second adsorption virial coefficients and Kováts retention indices has been presented.
吸附质-吸附剂和吸附质-吸附质之间的相互作用对反相气相色谱(IGC)中气-固相间吸附质的分布具有决定性影响,对此已从热力学角度进行了解释。文中简要介绍了比保留体积、第二吸附维里系数和科瓦茨保留指数,以及它们对柱温T、碳原子数n(C)(或亚甲基CH₂)的依赖性和相互之间的依赖性。收集并解释了采用反相气相色谱法对不同碳材料获得的吸附摩尔微分焓和熵的结果。已尝试阐明比保留体积和净保留体积、第二吸附维里系数和科瓦茨保留指数的异常行为,例如,上述热力学值的确定和比较所依据的量值。文中还对计算保留体积、第二吸附维里系数和科瓦茨保留指数所需的实验参数相关误差进行了详细分析。