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微粒毛细管柱和整体毛细管柱效率的比较。

Comparison of the efficiency of microparticulate and monolithic capillary columns.

作者信息

Eeltink Sebastiaan, Decrop Wim M C, Rozing Gerard P, Schoenmakers Peter J, Kok Wim Th

机构信息

Polymer-Analysis Group, Department of Chemical Engineering, University of Amsterdam, Nieuwe Achtergracht 1018 WV, Amsterdam, The Netherlands.

出版信息

J Sep Sci. 2004 Dec;27(17-18):1431-40. doi: 10.1002/jssc.200401826.

Abstract

A comparison is made between the efficiency of microparticulate capillary columns and silica and polymer-based monolithic capillary columns in the pressure-driven (high-performance liquid chromatography) and electro-driven (capillary electrochromatography) modes. With packed capillary columns similar plate heights are possible as with conventional packed columns. However, a large variation is observed in the plate heights for individual columns. This can only be explained by differences in the quality of the packed bed. The minimum plate height obtained with silica monolithic capillary columns in the HPLC mode is approximately 10 microm, which is comparable to that of columns packed with 5-microm particles. The permeability of wide-pore silica monoliths was found to be much higher than that of comparable microparticulate columns, which leads to much lower pressure drops for the same eluent at the same linear mobile phase velocity. For polymer-based monolithic columns (acrylamide, styrene/divinyl benzene, methacrylate, acrylate) high efficiencies have been found in the CEC mode with minimum plate heights between 2 and 10 microm. However, in the HPLC mode minimum plate heights in the range of 10 to 25 microm have been reported.

摘要

对微粒毛细管柱与基于硅胶和聚合物的整体式毛细管柱在压力驱动模式(高效液相色谱)和电驱动模式(毛细管电色谱)下的效率进行了比较。对于填充毛细管柱,可实现与传统填充柱相似的塔板高度。然而,观察到各柱的塔板高度存在很大差异。这只能通过填充床质量的差异来解释。在高效液相色谱模式下,硅胶整体式毛细管柱获得的最小塔板高度约为10微米,这与填充5微米颗粒的柱相当。发现宽孔硅胶整体柱的渗透率远高于可比的微粒柱,这导致在相同线性流动相速度下,相同洗脱液的压力降要低得多。对于基于聚合物的整体柱(丙烯酰胺、苯乙烯/二乙烯基苯、甲基丙烯酸酯、丙烯酸酯),在毛细管电色谱模式下已发现具有高效率,最小塔板高度在2至10微米之间。然而,在高效液相色谱模式下,已报道最小塔板高度在10至25微米范围内。

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