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Dual-excitation-wavelength fluorescence spectra and elastic scattering for differentiation of single airborne pollen and fungal particles

机译:双重激发波长荧光光谱和弹性散射用于区分单个空中花粉和真菌颗粒

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Fluorescence spectra of aerosolized pollen (12 species or subspecies) and fungal (4 species) samples measured using a Dual-excitation-wavelength Particle Fluorescence Spectrometer (DPFS) are reported. The DPFS records two fluorescence spectra and two elastic scattering intensities from single airborne particles as they flow through an optical cell. Each particle is illuminated sequentially, first with a pulse from a 263-nm wavelength laser, followed by a second pulse from a 351 -nm laser. The two dispersed fluorescence spectra (from 280 nm-700 nm) and elastic scattering intensities are measured by a single 32-anode photomultiplier tube. Principal component analysis (PCA) of the spectra is used to examine differences in the spectra. Plots of several principal components show that samples of pollens and fungal materials can largely be differentiated. These preliminary results suggest that fluorescence spectra and elastic scattering may be useful for real-time discrimination among a variety of airborne pollens, fungal materials, and other airborne particles. Published by Elsevier Ltd.
机译:报告了使用双重激发波长粒子荧光光谱仪(DPFS)测量的雾化花粉(12种或亚种)和真菌(4种)样品的荧光光谱。 DPFS记录了单个空气悬浮粒子流过光学单元时的两个荧光光谱和两个弹性散射强度。依次对每个粒子进行照明,首先使用来自263 nm波长激光器的脉冲,然后使用来自351 nm激光器的第二脉冲。通过单个32阳极光电倍增管测量两个分散的荧光光谱(从280 nm至700 nm)和弹性散射强度。光谱的主成分分析(PCA)用于检查光谱中的差异。几个主要成分的图表明,花粉和真菌物质的样品可以在很大程度上区分开。这些初步结果表明,荧光光谱和弹性散射可用于实时区分各种空气中的花粉,真菌物质和其他空气中的颗粒。由Elsevier Ltd.发布

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