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Influence of chemical composition on the fluorescence lifetimes of crude petroleum oils

机译:化学成分对粗石油油荧光寿命的影响

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Fluorescence based methods are increasingly being used for the analysis of crude oils because they offer high speed, low cost, non-contact, and non-destructive testing options. The fluorescence of crude oils is due to the presence of a wide range of cyclic aromatic compounds, with the intensity and temporal behaviour of this fluorescence being directly related to chemical composition. In particular, we have found that the Fluorescence Lifetime (FL) measured at a range of different emission wavelengths is correlated with the concentrations of the aromatic and polar fractions of petroleum oils, and the density (API gravity). We have analysed 22 different crude oils from around the world with API gravities of between 10 to 50. The fluorescence steady-state emission spectra and fluorescence lifetimes at a range of emission wavelengths were measured for 380 nm excitation. It was found that the correlations between the chemical and physical characteristics of the crude oils and the measured fluorescence parameters are highly non-linear. Furthermore, there is a wide degree of scatter in the observed data for medium oils, which have similar physical properties but widely varying chemical compositions. We discuss these findings in the context of developing quantitative methods of analysis for crude petroleum oils based on fluorescence lifetime measurements.
机译:基于荧光的方法越来越多地用于分析原油,因为它们提供高速,低成本,非接触和非破坏性测试选项。原油的荧光是由于存在各种环状芳族化合物,这种荧光的强度和时间行为与化学组成直接相关。特别地,我们发现在不同发射波长范围内测量的荧光寿命(FL)与石油油的芳族和极性级分的浓度以及密度(API重力)相关。我们已经分析了来自世界各地的22种不同的原油,API重力在10到50之间。测量荧光稳态发射光谱和在一系列发射波长范围内的荧光寿命进行380nm激发。发现原油和测量荧光参数的化学和物理特性之间的相关性是高度非线性的。此外,在观察到的中等油数据中存在广泛的散射,其具有相似的物理性质,但具有广泛改变的化学组成。我们在开发基于荧光寿命测量的粗石油油的定量分析方法的背景下讨论这些发现。

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