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Speciation of aromatic compounds with excitation-emission matrix measurements

机译:激发-发射矩阵测量形成的芳香族化合物

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摘要

Abstract: Research in our group has shown that a multiple channel laser-induced fluorescence (LIF) system is an effective tool for in situ monitoring of polyaromatic hydrocarbons (PAHs). The system delivers ten laser beams to a samples and simultaneously detects the fluorescence signals from the individual channels, generating an excitation-emission matrix (EEM) of the sample. Speciation of chemical present in a mixture EEM is conducted by target factor analysis. To determine the capability of the technique for speciation, various aromatic compounds were measured with the LIF system. The pure-component EEMs were analyzed against each other as targets to separate the compounds into classes with the target factor analysis method. Then EEMs of mixtures containing 2-5 components were analyzed using the pure- component EEMs as standards. In this preliminary study of eleven target aromatic compounds, nine were successfully identified individually, while two spectroscopically very similar compounds, naphthalene and 2-methylnaphthalene, could be differentiated from the other nine but not from each other. In such cases, the technique can correctly identify the presence of the class, e.g., naphthalenes, instead of an individual components, and the quantitative results for the class must be interpreted accordingly. !18
机译:摘要:我们小组的研究表明,多通道激光诱导荧光(LIF)系统是现场监测多环芳烃(PAHs)的有效工具。该系统将十束激光束传送到样品,并同时检测来自各个通道的荧光信号,从而生成样品的激发发射矩阵(EEM)。混合物EEM中存在的化学物质的形成通过目标因子分析进行。为了确定该技术形成物种的能力,使用LIF系统测量了各种芳族​​化合物。将纯组分EEM彼此作为目标进行分析,以使用目标因子分析方法将化合物分为几类。然后,以纯组分EEM为标准分析包含2-5个组分的混合物的EEM。在对11种目标芳族化合物的初步研究中,成功​​地鉴定出9种,而在光谱上非常相似的两种化合物萘和2-甲基萘可以与其他9种区别开来,但不能相互区分。在这种情况下,该技术可以正确识别类别(例如萘)的存在,而不是单个成分,并且必须相应地解释类别的定量结果。 !18

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