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Laser-Induced Fluorescence of Perylene in a Microparticle Suspension Environment

机译:微粒悬浮环境中Per的激光诱导荧光

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摘要

Laser-induced fluorescence (LIF) is one of the most sensitive techniques for analysis of traces of polycyclic aromatic compounds in liquids. Application of this method to on-line monitoring requires solution of problems related to the presence of particulate materials. Thus, understanding the analytical effects associated with the suspension of microparticles is of considerable importance for both environmental and industrial applications. Here, LIF of perylene in acetonitrile solutions was studied for different light-scattering/ -absorbing microparticle matrixes. With increasing suspension mass of efficiently light absorbing black-colored particles, the intensity of the associated LIF signals was found to obey an apparently exponential decrease, Their white-colored counterparte, however, have initially produced a sizable, ~20%,signal increase of the respective LIF responses. An exponential decrease then became predominant, too. A model that explains the observations in terms of absorption and scattering coefficients is developed and examined. The quantitative effect of the particulate mass is correctly reproduced by the model, as well as the laser wavelength dependence. A possible application of a calibrating algorithm is addressed.
机译:激光诱导荧光(LIF)是分析液体中痕量多环芳族化合物的最灵敏技术之一。将该方法应用于在线监测需要解决与颗粒物质的存在有关的问题。因此,了解与微粒悬浮有关的分析效果对于环境和工业应用都具有相当重要的意义。在此,研究了乙腈溶液中per的LIF用于不同的光散射/吸收性微粒基质。随着有效吸收光的黑色颗粒的悬浮质量的增加,发现相关LIF信号的强度似乎呈指数下降,但是其白色对应物最初产生了可观的〜20%的信号增强。相应的LIF响应。然后,指数下降也成为主要趋势。开发并检查了一个模型,该模型根据吸收系数和散射系数解释了观察结果。该模型正确再现了颗粒质量的定量效果以及激光波长依赖性。解决了校准算法的可能应用。

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