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Performance Study Of Carbon-Clad Zirconia Stationary Phase In High Temperature Reversed-Phase High Performance Liquid Chromatography

机译:碳包氧化锆固定相在高温反相高效液相色谱中的性能研究

摘要

The performance of carbon-clad zirconia (CCZ) stationary phase was evaluated for the separations of test compounds (benzaldehyde, benzamide, nitrobenzene, and toluene) and alkyl aryl ketones (acetophenone, propiophenone, butyrophenone and valerophenone) at high temperature (100˚C-160˚C) in reversed-phase high performance liquid chromatography (RP-HPLC) using low compositions of organic modifier and 100% pure water as eluent. Improved separation mechanism and faster analysis time were achieved during high operating temperatures. Van’t Hoff plots were linear for the investigated CCZ column, which showed that over the temperature range, no changes occurred in the retention mechanism. The use of alkyl aryl ketone homologs as a retention index scale in high temperature RP-HPLC was investigated. Although the retention factors of the test compounds were greatly affected by increasing the column temperature, there were only slight variations in their respective retention index values.
机译:评估了在高温(100°C-160°C)下测试化合物(苯甲醛,苯甲酰胺,硝基苯和甲苯)和烷基芳基酮(苯乙酮,丙苯酮,丁苯酮和戊苯酮)的分离情况下,碳包覆氧化锆(CCZ)固定相的性能。 )在反相高效液相色谱(RP-HPLC)中,使用低含量的有机改性剂和100%纯水作为洗脱液。在较高的工作温度下,分离机理得到改善,分析时间更快。 Van?t Hoff图对于所研究的CCZ色谱柱是线性的,表明在整个温度范围内,保留机理均未发生变化。研究了烷基芳基酮同系物在高温RP-HPLC中作为保留指数的应用。尽管测试化合物的保留因子受柱温升高的影响很大,但它们各自的保留指数值只有很小的变化。

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