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Dynamic Control of Gas Chromatographic Selectivity during the Analysis of Organic Bases

机译:有机碱分析过程中气相色谱选择性的动态控制

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A novel method for controlling selectivity during the gas chromatographic (GC) analysis of organic bases is presented. The technique employs tandem stainless steel capillary columns, each coated with a pH adjusted water stationary phase. The first is a 0.5 m trap column coated with a pH 2.2 phase, while the second is an 11 m analytical column coated with a pH 11.4 phase. The first column traps basic analytes from injected samples, while the remaining components continue to elute and separate. Then, upon injection of a volatile aqueous ammonia solution, the basic analytes are released as desired to the analytical column where they are separated and analyzed. Separations are quite reproducible and demonstrate an average RSD of 1.2% for analyte retention times in consecutive trials. Using this approach, the retention of such analytes can be readily controlled and they can be held in the system for periods of up to 1 h without significant erosion of peak shape. As such, it can provide considerable control over analyte selectivity and resolution compared to conventional separations. Further, by employing a third conventional GC column to the series, both traditional hydrocarbon and enhanced organic base separations can be performed. The method is applied to the analysis of complex mixtures, such as gasoline, and much less matrix interference is observed as a result. The findings indicate that this approach could be a useful alternative for analyzing such samples.
机译:介绍了一种用于控制有机碱气相色谱(GC)分析期间的控制选择性的新方法。该技术采用串联不锈钢毛细管柱,各自涂有pH调节水固定相。首先是涂有pH2.2相的0.5米的捕集柱,而第二个是涂有pH 11.4相的11M分析柱。第一列从注入样品中捕获基本分析物,而剩余的组分继续洗脱并分开。然后,在注射挥发性氨水溶液后,基本分析物根据需要释放到分析柱,其中分析和分析它们。分离是相当可重复的,并且在连续试验中分析物保留时间的平均RSD为1.2%。使用这种方法,可以容易地控制这种分析物的保留,并且它们可以在系统中保持长达1小时,而无需峰值的显着侵蚀。因此,与常规分离相比,它可以提供相当大的对分析物选择性和分辨率的控制。此外,通过将第三常规GC柱采用该系列,可以进行传统的烃和增强的有机基础分离。该方法应用于复杂混合物的分析,例如汽油,结果观察到较少的基质干扰。结果表明,这种方法可以是分析这些样本的有用替代方案。

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