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Comprehensive Two-Dimensional High-Speed Gas Chromatography with Chemometric Analysis

机译:具有化学计量分析功能的全面二维高速气相色谱仪

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摘要

High-speed comprehensive two-dimensional gas chromatography (GC× GC) is performed, in which a polar second column performs separations every half second on portions of the effluent from a nonpolar first column. Chemometric techniques that are traditionally used on chromatographic separations with multichannel detection are applied to two-dimensional chromatographic data, for the purpose of quantifying incompletely resolved peaks. Generalized rank annihilation method (GRAM) is evaluated in the quantification of varying amounts of selected overlapped analytes in a GC×GC analysis of modified white gasoline. GRAM requires a sample and standard data set for quantification, and the high retention time precision arising from use of shortened GC columns aids in the analysis. Results from GRAM analysis of GC×GC data are compared with a reference GC method. The test analytes ethylbenzene and m-xylene, existing in various proportions in white gasoline samples, were successfully deconvoluted despite having resolutions of 0.46 and 0.20 on the first and second dimensions of separation, respectively. Like other second-order techniques, GRAM was able to reliably quantify m-xylene despite the presence in the analytical sample of an overlapping compound not present in the calibration standard. Because GRAM can be successfully applied to GC×GC data, full resolution of all the analytes of interest is not necessary. As a result, GC×GC mn times can be dramatically shortened, which has significant implications for analyses in which short cycle times are critical, such as in process analysis.
机译:进行高速综合二维气相色谱(GC×GC),其中极性第二塔每隔半秒对来自非极性第一塔的部分流出物进行分离。为了量化不完全解析的峰,将传统上用于多通道检测的色谱分离中使用的化学计量技术应用于二维色谱数据。在改性白汽油的GC×GC分析中,在定量选择重叠分析物的数量时,对通用秩和ation灭法(GRAM)进行了评估。 GRAM需要样品和标准数据集进行定量分析,而使用缩短的GC色谱柱所带来的高保留时间精度有助于分析。将GC×GC数据的GRAM分析结果与参考GC方法进行比较。尽管在第一维和第二维分离度上的分辨率分别为0.46和0.20,但在白色汽油样品中以各种比例存在的测试分析物乙苯和间二甲苯已成功解卷积。与其他二阶技术一样,尽管分析样品中存在校准标准物中不存在的重叠化合物,但GRAM仍能够可靠地定量间二甲苯。因为GRAM可以成功地应用于GC×GC数据,所以不需要所有目标分析物的全分辨率。结果,可以大大缩短GC×GC mn时间,这对于短周期时间至关重要的分析(如过程分析)具有重要意义。

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