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Three-way analysis of fluorescence spectra of polycyclic aromatichydrocarbons with quenching by nitromethane

机译:硝基甲烷猝灭多环芳烃荧光光谱的三向分析

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摘要

The application of trilinear decomposition (TLD) to the analysis of fluorescence excitation-emission matrices of mixtures of polycyclic aromatic hydrocarbons (PAHs) is described. The variables constituting the third-order tenser are excitation wavelength, emission wavelength, and concentration of a fluorescence quencher (nitromethane), The addition of a quencher to PAH mixtures selectively reduces the fluorescence intensity of mixture components according to the Stern-Volmer equation. TLD allows the three-way matrix to be decomposed to give unique solutions for the excitation spectrum, emission spectrum, and quenching pro files for each component. The availability of spectra and calculated Stern-Volmer constants can aid in the identification of unknown components. Preprocessing of the data to correct for Rayleigh/Raman scatter and primary absorption by the quencher is necessary. Both three-component (anthracene, pyrene, l-methylpyrene) and four-component (fluoranthene, anthracene, pyrene, 2,3-benzofluorene) synthetic mixtures are successfully resolved by TLD using quencher concentrations up to 100 mM, Results are compared using both alternating least-squares and direct trilinear decomposition algorithms. The reproducibility of extracted Stern-Volmer constants is determined from replicate experiments. To illustrate the application of TLD to a real sample, a chromatographic cut from the analysis of a light gas oil sample was used. Analysis of the TLD extracted spectra and quenching constants suggests the presence of three classes of polycyclic aromatic hydrocarbons consistent with data from a second dimension of chromatography and mass spectrometry.
机译:描述了三线性分解(TLD)在多环芳烃(PAHs)混合物的荧光激发-发射矩阵分析中的应用。构成三阶张量的变量是激发波长,发射波长和荧光猝灭剂(硝基甲烷)的浓度。猝灭剂添加到PAH混合物中会根据Stern-Volmer方程选择性降低混合物成分的荧光强度。 TLD允许分解三向矩阵,从而为每个分量的激发光谱,发射光谱和淬火曲线提供独特的解决方案。光谱的可用性和计算出的Stern-Volmer常数可以帮助识别未知组分。必须进行数据预处理以校正瑞利/拉曼散射和淬灭剂的一次吸收。三组分(蒽,pyr,1-甲基py)和四组分(荧蒽,蒽,pyr,2,3-苯并芴)的合成混合物均已通过TLD成功地使用高达100 mM的淬灭剂进行拆分,将结果进行了比较交替最小二乘和直接三线性分解算法。提取的Stern-Volmer常数的重现性由重复实验确定。为了说明TLD在实际样品中的应用,使用了轻柴油样品分析得到的色谱图。 TLD提取光谱和猝灭常数的分析表明,存在三类多环芳烃,与色谱和质谱的第二维数据相符。

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