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In situ infrared aerosol spectroscopy for a variety of nerve agent simulants using flow-through photoacoustics

机译:使用流通光声的原位红外气溶胶光谱法用于多种神经毒剂模拟物

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摘要

We present newly measured results of an ongoing experimental program established to measure opticalcross sections in the mid- and long-wave infrared for a variety of chemically and biologically based aerosols. For this study we consider only chemically derived aerosols, and in particular, a group of chemical compounds often used as simulants for the detection of extremely toxic organophosphorus nerve agents. These materials include: diethyl methylphosphonate (DEMP), dimethyl methylphosphonate (DMMP), diisopropyl methylphosphonate (DIMP), and diethyl phthalate (DEP). As reported in a prior study [Appl. Opt. 44, 4001 (2005)], we combine two optical techniques well suited for aerosol spectroscopy [i.e., flow-through photoacoustics and Fourier transform infrared (FTIR) emission spectroscopy], to measure in situ the absolute extinction and absorption cross sections over a variety of wavelengths spanning the IR spectral region from 3 to 13 (mu)m. Aerosol size distribution(s), particle number density, and dosimetric measurements are recorded simultaneously in order to present optical cross sections that are aerosol mass normalized, i.e., m~(2)/gram. Photoacoustic results, conducted at a series of CO_(2) laser lines, compare well with measured broadband FTIR spectral extinction. Both FTIR and photoacoustic data also compare well with Mie theory calculations based on measured size distributions and previously published complex indices of refraction.
机译:我们介绍了一项正在进行的实验计划的最新测量结果,该计划旨在测量中波和长波红外中各种化学和生物气溶胶的光学横截面。在本研究中,我们仅考虑化学来源的气溶胶,尤其是经常用作模拟剂的一组化合物,用于检测剧毒的有机磷神经毒剂。这些材料包括:甲基膦酸二乙酯(DEMP),甲基膦酸二甲酯(DMMP),甲基膦酸二异丙酯(DIMP)和邻苯二甲酸二乙酯(DEP)。如先前研究报道[Appl。选择。 44,4001(2005)],我们结合了两种非常适合气溶胶光谱的光学技术[即流通光声和傅立叶变换红外(FTIR)发射光谱],以现场测量各种材料的绝对消光和吸收截面跨IR光谱区的波长范围为3至13μm。同时记录气溶胶尺寸分布,颗粒数密度和剂量学测量结果,以呈现经气溶胶质量归一化的光学横截面,即m〜(2)/克。在一系列CO_(2)激光线上进行的光声结果与宽带FTIR光谱消光测得的结果很好地比较。 FTIR和光声数据也都与基于测得的尺寸分布和先前公布的复杂折射率的Mie理论计算相比较。

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