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Separation, hydrodynamics and heating effects in continuous annular electro-chromatography (CAEC)

机译:连续环形电色谱(CAEC)中的分离,流体动力学和加热效应

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This article presents investigations to transfer an analytical batch electro-chromatography to a continuous annular electro-chromatography process. In order to study the electro-chromatographic effects of such a process a lab scale planar reference system was manufactured and tested. This planar device represents a fraction of the final annular geometry. An inorganic C8 reversed-phase monolith was filled between two glass plates as stationary phase inside a 1 mm gap. The generation of Joule heating during the process was determined by using a contact-free thermal camera system. Additionally, the volume flow rate of the electrolyte was detected at the outlet geometry with a continuous imaging analysis system using the transmitted light method. Finally, a mixture of neutral test substances was used to evaluate the continuous separation and to compare the results of the planar plate with an analytical capillary. The obtained results indicate a uniform electro-osmotic flow as well as a successful separation of the test system and a good agreement between the efficiency of the planar gap and an analytical capillary electro-chromatographic device.
机译:本文提出了将分析批量电色谱法转移到连续环形电色谱法的研究。为了研究这种方法的电色谱效果,制造并测试了实验室规模平面参考系统。该平面装置表示最终环形几何形状的一部分。在两个玻璃板之间填充无机C8反相整体,在1mm间隙内固定相。通过使用无接触的热相机系统测定过程中的焦耳加热的产生。另外,使用透射光法在出口几何形状的出口几何形状中检测电解质的体积流量。最后,使用中性测试物质的混合物来评估连续分离,并将平面板的结果与分析毛细管进行比较。所得结果表示均匀的电渗透流以及测试系统的成功分离,并且在平面间隙的效率和分析毛细管电色谱装置之间的良好一致性。

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