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Real-time detection of PAH mixtures in the vapor phase at high temperatures

机译:在高温下实时检测气相中的PAH混合物

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摘要

Laser-induced fluorescence (LIF) spectroscopy can serve as a rapid analytical method for the quantitative analysis of polycyclic aromatic hydrocarbons (PAHs). The high quantum yields of this class of compounds, along with large absorption cross-sections, make fluorescence a very attractive technique for trace analysis determination of PAHs. Furthermore, fluorescence can provide in situ and online information regarding the composition and concentration of PAHs formed during combustion or pyrolysis processes. In this paper, we utilize a fiber-optic probe coupled to a spectrometer to collect fluorescence spectra of several PAH vapors at elevated temperatures using excitation at 337 nm. We have collected the fluorescence of standards as well as complex mixtures of PAHs at 300℃. The expected band broadening induced by temperature effects was observed, but did not compromise the spectrum signature for each PAH studied. We have measured fluorescence spectra of benzo[a]pyrene, pyrene, anthracene, and phenanthrene vapors. Determination of trace amounts of the toxicologically important benzo[a]pyrene has been shown to be feasible. Experimental results show that at 337 nm, benzo[a]pyrene is the most quantum efficient fluorophore among the PAHs studied. Furthermore, fluorescence lifetime measurements were found to be helpful in the characterization of PAH mixtures.
机译:激光诱导荧光(LIF)光谱可以用作定量分析多环芳烃(PAH)的快速分析方法。这类化合物的高量子产率以及较大的吸收截面使荧光成为痕量分析PAHs的极具吸引力的技术。此外,荧光可以提供有关在燃烧或热解过程中形成的PAH的组成和浓度的原位和在线信息。在本文中,我们利用耦合到光谱仪的光纤探针,通过在337 nm处激发,在升高的温度下收集了几种PAH蒸气的荧光光谱。我们已经收集了标准品以及PAHs在300℃的复杂混合物的荧光。观察到由温度效应引起的预期谱带展宽,但并未影响每个研究的PAH的光谱特征。我们已经测量了苯并[a] py,pyr,蒽和菲蒸气的荧光光谱。已经证明测定痕量的毒理学上重要的苯并[a] py是可行的。实验结果表明,在337 nm处,苯并[a] re是所研究的PAH中量子效率最高的荧光团。此外,发现荧光寿命测量有助于PAH混合物的表征。

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