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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Stationary phase selection and comprehensive two-dimensional gas chromatographic analysis of trace biodiesel in petroleum-based fuel
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Stationary phase selection and comprehensive two-dimensional gas chromatographic analysis of trace biodiesel in petroleum-based fuel

机译:石油基燃料中痕量生物柴油的固定相选择和二维气相色谱综合分析

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The GC × GC solvation parameter model has been used to identify effective stationary phases for the separation of fatty acid methyl esters (FAMEs) from petroleum hydrocarbons. This simple mathematical model was used to screen the 1225 different combinations of 50 stationary phases. The most promising pairs combined a poly(methyltrifluoropropylsiloxane) stationary phase with a poly(dimethyldiphenylsiloxane) stationary phase. The theoretical results were experimentally tested by equipping a GC × GC instrument with a DB-210 primary stationary phase and an HP-50+ secondary stationary phase. This instrument was used to analyze trace levels of FAMEs in kerosene. The FAMEs were fully separated from the petroleum hydrocarbons on the secondary dimension of the 2-D chromatogram. The resulting GC × GC method was shown to be capable of accurately quantifying FAME levels as low as 2. ppm (w/w). These results demonstrate the utility of the solvation parameter model for identifying optimal stationary phases for high resolution GC × GC separations. Furthermore, this work presents an effective method for determining the level of biodiesel contamination in aviation fuel and other petroleum-based fuels.
机译:GC×GC溶剂化参数模型已用于鉴定从石油烃中分离脂肪酸甲酯(FAME)的有效固定相。这个简单的数学模型用于筛选50种固定相的1225种不同组合。最有前途的对将聚(甲基三氟丙基硅氧烷)固定相与聚(二甲基二苯基硅氧烷)固定相结合。通过为GC×GC仪器配备DB-210主固定相和HP-50 +次固定相,对理论结果进行了实验测试。该仪器用于分析煤油中痕量的FAME。在二维色谱图的第二维上,将FAME与石油烃完全分离。结果表明,所得的GC×GC方法能够准确定量低至2. ppm(w / w)的FAME水平。这些结果证明了溶剂化参数模型可用于识别高分辨率GC×GC分离的最佳固定相。此外,这项工作提出了一种确定航空燃料和其他石油基燃料中生物柴油污染水平的有效方法。

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