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Aerosol Collection and Analysis Using Diffuse Reflectance Infrared Spectroscopy

机译:使用弥漫性反射红外光谱法的气溶胶收集和分析

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Infrared spectroscopy is routinely employed for the identification of organic molecules and, more recently, for the classification of biological materials. We have developed a sample collection method that facilitates infrared analysis of airborne particulates using a diffuse reflectance (DR) technique. Efforts are underway to extend the method to include simultaneous analysis of vapor phase organics by using adsorbent substrates compatible with the DR technique. This series of laboratory results provides proof-of-principle for both the sample collection and data collection processes. Signal processing of the DR spectra is shown to provide rapid qualitative identification of representative aerosol materials, including paniculate matter commonly found in the environment. We compare the results for such materials as bacterial spores, pollens and molds, clays and dusts, smoke and soot. Background correction analysis is shown to be useful for differentiation and identification of these constituents. Issues relating to complex mixtures of environmental samples under highly variable conditions are considered. Instrumentation development and materials research are now underway with the aim of constructing a compact sampling system for near real-time monitoring of aerosol and organic pollutants. A miniature, tilt-compensated Fourier transform spectrometer will provide spectroscopic interrogation. A series of advanced digital signal processing methods are also under development to enhance the sensor package. The approach will be useful for industrial applications, chemical and biological agent detection, and environmental monitoring for chemical vapors, hazardous air pollutants, and allergens.
机译:常规用于鉴定有机分子的红外光谱,并且最近用于生物材料的分类。我们开发了一种使用漫反射率(DR)技术的促进空气颗粒的红外分析。正在进行努力来扩展方法,以包括通过使用与DR技术兼容的吸附剂基材同时分析气相有机物。这一系列实验室结果为样品收集和数据收集过程提供了原则上。 DR光谱的信号处理被示出为提供具有常见环境中常见的群体物质的快速定性鉴定。我们将这些材料的结果与细菌孢子,花粉和霉菌,粘土和粉尘,烟雾和烟灰进行比较。背景技术校正分析被证明是用于分化和鉴定这些成分的用途。考虑了与高度可变条件下的环境样品复杂混合物有关的问题。目前正在进行仪表开发和材料研究,目的是构建一个紧凑的采样系统,用于近乎实时监测气溶胶和有机污染物。微型倾斜补偿傅里叶变换光谱仪将提供光谱询问。一系列先进的数字信号处理方法也在开发中以增强传感器封装。该方法可用于工业应用,化学和生物试剂检测,以及用于化学蒸气,危险空气污染物和过敏原的环境监测。

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