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Quantitative Applications of Fluorescence and Ultraviolet Scanning Densitometry for Compositional Analysis of Petroleum Products in Thin-Layer Chromatography

机译:荧光和紫外扫描光密度法在薄层色谱中石油产品成分分析中的定量应用

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摘要

Direct application of the fluorescence response enhancement (derived from the interaction of the berberine cation with saturated hydrocarbons) to petrochemical analysis is achieved. Hydrocarbon types are successfully determined in middle (gasoil) and heavy (lubricant's, vis-breaking fuel, heavy oil) petroleum distillates with adequate precision and sensitivity. The novelty of this method resides in the fact that a single fluorescence scanning is only needed for the determination of saturates and aromatics in the same chromatogram. In spite of their chemical inertness, saturated hydrocarbons can be quantitatively determined using thin-layer chromatographic densitometry. The fluorescent response depends on the alkane structure. A reliable analysis depends on the adequate choice of variables that influence fluorescence response, precision, and sensitivity: sample load, application volume, beam size, and impregnation conditions (berberine concentration and impregnation time). Sensitivity of the analysis can be tailored to a certain extent through control of the last parameter. The quantitative results agree with those provided using other well-established techniques in the petrochemical industry.
机译:直接将荧光响应增强(源自小ber碱阳离子与饱和烃的相互作用)应用于石油化学分析。在中间(瓦斯油)和重油(润滑剂,减粘燃料,重油)石油馏分中,以足够的精度和灵敏度成功确定了烃类型。该方法的新颖性在于,只需一次荧光扫描即可确定同一色谱图中的饱和物和芳烃。尽管具有化学惰性,但仍可以使用薄层色谱光密度法定量测定饱和烃。荧光响应取决于烷烃结构。可靠的分析取决于影响荧光响应,精度和灵敏度的变量的适当选择:样品负载,应用体积,光束大小和浸渍条件(小ber碱浓度和浸渍时间)。通过控制最后一个参数,可以在一定程度上调整分析的灵敏度。定量结果与使用石化行业中其他成熟技术提供的结果一致。

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