Płocharz Paweł W, Dzido Tadeusz H, Slazak Piotr, Jóźwiak Grzegorz W, Torbicz Andrzej
Department of Physical Chemistry, Medical University of Lublin, Lublin, Poland.
J Chromatogr A. 2007 Nov 2;1170(1-2):91-100. doi: 10.1016/j.chroma.2007.08.084. Epub 2007 Sep 12.
Three modes of sample application on the chromatographic plate are applied at present investigations of pressurized planar electrochromatography (PPEC) systems taking into special attention their influence on performance of the separating system. These modes are as follows: application of the sample solution directly on the chromatographic plate with microsyringe, deposition of sample solution on scrap of adsorbent layer followed by location oft this scrap on the chromatographic plate, application of the sample solution with commercially available aerosol applicator. These modes were combined with prewetting procedures of the chromatographic plates which lead to an accomplishment of equilibration of the stationary phase-mobile phase system. The plots of plate height versus linear flow rate of the mobile phase are presented for PPEC systems for the first time. The best separation performance has been obtained in PPEC system when prewetting of the chromatographic plate followed the sample application with commercially available aerosol applicator. The higher repeatability of migration distance of the solute bands has been obtained in PPEC experiments when the sample application was followed by prewetting the chromatographic plate in comparison to the experiments when these operations were performed in reversed order.
在目前对加压平面电色谱(PPEC)系统的研究中,采用了三种在色谱板上施加样品的模式,并特别关注它们对分离系统性能的影响。这些模式如下:用微量注射器将样品溶液直接施加在色谱板上;将样品溶液沉积在吸附剂层碎片上,然后将该碎片放置在色谱板上;用市售的气溶胶施加器施加样品溶液。这些模式与色谱板的预湿程序相结合,从而实现了固定相 - 流动相系统的平衡。首次给出了PPEC系统中板高与流动相线性流速的关系图。当使用市售的气溶胶施加器在样品施加之后对色谱板进行预湿时,PPEC系统获得了最佳分离性能。与以相反顺序进行这些操作的实验相比,在PPEC实验中,当在样品施加之后对色谱板进行预湿时,溶质带迁移距离的重复性更高。