Hochschule Geisenheim University, 65366, Geisenheim, Germany.
J Fluoresc. 2020 May;30(3):613-620. doi: 10.1007/s10895-020-02529-8. Epub 2020 Apr 14.
Multivariate curve resolution alternating least square (MCR-ALS) analysis allows the simultaneous retrieval of pure concentration and spectral profiles for each of the analysed chemical components from the composite spectrum even in the presence of unknown interferences. Total synchronous fluorescence spectroscopy (TSFS), a multidimensional fluorescence technique that describes the variation of synchronous fluorescence profile acquired as a function of increasing offset, has become a useful analytical technique. Suitably arranged TSFS data set can be easily processed using MCR-ALS and thereby a simple and sensitive analytical tool could be developed. The present work successfully used the combination of the MCR-ALS and TSFS to analyse the three carcinogenic and mutagenic polycyclic aromatic hydrocarbons (PAHs) namely Benzo[a]Pyrene, Chrysene and Pyrene in the presence of complex fluorescence background originated from petroleum product. MCR-ALS assisted TSFS can be used for the routine analyses of these carcinogenic PAHs to ensure the quality of water and other samples belonging to different part of the ecosystem.
多变量曲线分辨交替最小二乘法(MCR-ALS)分析允许从复合光谱中同时检索每个分析化学组分的纯浓度和光谱轮廓,即使存在未知干扰也是如此。全同步荧光光谱法(TSFS)是一种多维荧光技术,用于描述随同步荧光轮廓的变化,该轮廓是作为增加偏移量的函数获得的,已成为一种有用的分析技术。经过适当排列的 TSFS 数据集可以使用 MCR-ALS 轻松处理,从而可以开发出简单而灵敏的分析工具。本工作成功地将 MCR-ALS 和 TSFS 的组合用于在源自石油产品的复杂荧光背景下分析三种致癌和致突变的多环芳烃(PAHs),即苯并[a]芘、䓛和芘。MCR-ALS 辅助的 TSFS 可用于这些致癌 PAHs 的常规分析,以确保水和其他属于生态系统不同部分的样品的质量。