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用于在完全封闭系统中进行加压平面电色谱的仪器。

Apparatus for pressurized planar electrochromatography in a completely closed system.

作者信息

Dzido Tadeusz H, Płocharz Paweł W, Slazak Piotr

机构信息

Department of Physical Chemistry, Chair of Chemistry, Medical University, Staszica 6, 20-081 Lublin, Poland.

出版信息

Anal Chem. 2006 Jul 1;78(13):4713-21. doi: 10.1021/ac060044b.

Abstract

Pressurized planar electrochromatography (PPEC) is the mode which offers much higher separation efficiency in comparison to conventional planar chromatography, including both higher performance and much higher speed of separation. In this paper, we present a new device for performing PPEC in which the whole area of the chromatographic plate is pressurized. Both electrodes (anode and cathode) are washed with the mobile phase during the experiment, which prevents gas bubbles from collection in the region of the electrodes. This device enables directly controlling the flow rate of the mobile phase during the electrochromatography process. Mobile phase control offers the possibility of researching the influence of various properties of the PPEC system on separation efficiency. One important relationship to investigate is plate height vs mobile phase flow rate. This relationship helps to choose the optimal value of the mobile phase flow rate during the separation process. Considerable difference in shape of this relationship is demonstrated for conventional planar chromatography plates and high performance planar chromatography plates. Examples of the influence of some properties of the separating system on flow rate of the mobile phase are demonstrated, such as the buffer concentration in the mobile phase, the pH value of the buffer solution of the mobile phase, the type of chromatographic plate, and the voltage applied to the electrodes.

摘要

加压平面电色谱(PPEC)是一种与传统平面色谱相比具有更高分离效率的模式,包括更高的性能和更快的分离速度。在本文中,我们展示了一种用于进行PPEC的新装置,其中色谱板的整个区域都受到加压。在实验过程中,两个电极(阳极和阴极)都用流动相冲洗,这可防止气泡在电极区域聚集。该装置能够在电色谱过程中直接控制流动相的流速。流动相控制提供了研究PPEC系统各种特性对分离效率影响的可能性。一个需要研究的重要关系是塔板高度与流动相流速的关系。这种关系有助于在分离过程中选择流动相流速的最佳值。传统平面色谱板和高效平面色谱板在这种关系的形状上表现出相当大的差异。展示了分离系统的一些特性对流动相流速影响的实例,如流动相中的缓冲液浓度、流动相缓冲溶液的pH值、色谱板的类型以及施加到电极上的电压。

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