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Generating highly specific spectra and identifying thermal decomposition products via Gas Chromatography / Vacuum Ultraviolet Spectroscopy (GC/VUV): Application to nitrate ester explosives

机译:通过气相色谱/真空紫外光谱(GC / VUV)产生高度特异性光谱和识别热分解产物(GC / VUV):在硝酸盐酯爆炸物中的应用

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摘要

Gas chromatography/mass spectrometry (GC/MS) is a "workhorse" instrument for chemical analysis, but it can be limited in its ability to differentiate structurally similar compounds. The coupling of GC to vacuum ultraviolet (VUV) spectroscopy is a recently developed technique with the potential for increased detection specificity. To date, GC/VUV has been demonstrated in the analysis of volatile organic compounds, petroleum products, aroma compounds, pharmaceuticals, illegal drugs, and lipids. This paper is the first to report on the utility of GC/VUV for explosives analysis in general, and the first to report on thermal degradation within the VUV cell and its analytical utility. The general figures of merit and performance of GC/VUV were evaluated with authentic standards of nitrate ester explosives (e.g., nitroglycerine (NG), ethylene glycol dinitrate (EGDN), pentaerythritol tetranitrate (PETN), and erythritol tetranitrate (ETN)). In addition, the explosive analytes were thermally degraded in the VUV cell, yielding reproducible, complex and characteristic mixtures of gas phase products (e.g., nitric oxide, carbon monoxide, and formaldehyde). The relative amounts of the degradation products were estimated via spectral subtraction of library spectra. Lastly, GC/VUV was used to analyze milligram quantities of intact and burned samples of double-base smokeless powders containing nitroglycerine, diphenylamine, ethyl centralite, and dibutylphthalate
机译:气相色谱/质谱(GC / MS)是用于化学分析的“Workhorse”仪器,但它可以限制其在结构上类似的化合物的能力。 GC对真空紫外(VUV)光谱的偶联是最近开发的技术,其具有增加的检测特异性。迄今为止,已在分析挥发性有机化合物,石油产品,香气化合物,药物,非法药物和脂质的分析中证明了GC / VUV。本文是第一个报告GC / VUV爆炸物分析的效用,以及第一个报告VUV细胞内热降解及其分析效用。通过真正的硝酸酯酯炸药(例如,硝基甘油(Ng),乙二醇二硝酸二硝酸酯(EGDN),季戊四醇四硝酸酯(PETN)和季戊四醇四硝酸酯(ETN)评价GC / VUV的一般性和性能的一般数据。此外,爆炸性分析物在VUV电池中热降解,得到可再现的气相产物(例如一氧化氮,一氧化碳和甲醛)的可重复的,复杂且特征的混合物。通过图书馆光谱的光谱减法估计降解产物的相对量。最后,GC / VUV用于分析含有硝基甘油,二苯胺,乙基中心和二丁基苯二甲酸丁二醇酯的双基无烟粉末的毫克完整和燃烧样品的毫克数量

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