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Fast Detection and Chemical Characterization of Gunshot Residues by CMV-GC-MS and LIBS

机译:用CmV-GC-ms和LIBs快速检测和测定枪伤残留物的化学特性

摘要

Gunshot residue (GSR) is the term used to describe the particles originating from different parts of the firearm and ammunition during the discharge. A fast and practical field tool to detect the presence of GSR can assist law enforcement in the accurate identification of subjects.A novel field sampling device is presented for the first time for the fast detection and quantitation of volatile organic compounds (VOCs). The capillary microextraction of volatiles (CMV) is a headspace sampling technique that provides fast results (u3c 2 min. sampling time) and is reported as a versatile and high-efficiency sampling tool. The CMV device can be coupled to a Gas Chromatography-Mass Spectrometry (GC-MS) instrument by installation of a thermal separation probe in the injection port of the GC.An analytical method using the CMV device was developed for the detection of 17 compounds commonly found in polluted environments. The acceptability of the CMV as a field sampling method for the detection of VOCs is demonstrated by following the criteria established by the Environmental Protection Agency (EPA) compendium method TO-17.The CMV device was used, for the first time, for the detection of VOCs on swabs from the hands of shooters, and non-shooters and spent cartridges from different types of ammunition (i.e., pistol, rifle, and shotgun). The proposed method consists in the headspace extraction of VOCs in smokeless powders present in the propellant of ammunition. The sensitivity of this method was demonstrated with method detection limits (MDLs) 4-26 ng for diphenylamine (DPA), nitroglycerine (NG), 2,4-dinitrotoluene (2,4-DNT), and ethyl centralite (EC).In addition, a fast method was developed for the detection of the inorganic components (i.e., Ba, Pb, and Sb) characteristic of GSR presence by Laser Induced Breakdown Spectroscopy (LIBS). Advantages of LIBS include fast analysis (~ 12 seconds per sample) and good sensitivity, with expected MDLs in the range of 0.1-20 ng for target elements.Statistical analysis of the results using both techniques was performed to determine any correlation between the variables analyzed. This work demonstrates that the information collected from the analysis of organic components has the potential to improve the detection of GSR.
机译:枪弹残留物(GSR)是用于描述放电过程中源自枪支弹药不同部分的颗粒的术语。快速,实用的现场GSR检测工具可协助执法人员准确识别受试者。首次提出了一种新颖的现场采样设备,用于快速检测和定量挥发性有机化合物(VOC)。挥发性物质的毛细管微萃取(CMV)是一种顶空进样技术,可提供快速的结果(2分钟的采样时间),据报道是一种多功能且高效的采样工具。通过在GC的进样口中安装热分离探针,可以将CMV设备连接到气相色谱-质谱(GC-MS)仪器上。开发了使用CMV设备的分析方法,用于检测通常的17种化合物在受污染的环境中发现。遵循美国环境保护署(EPA)简编方法TO-17确立的标准,证明了CMV作为现场采样方法检测VOC的可接受性.CMV设备首次用于检测在射击者,非射击者和不同类型弹药(例如,手枪,步枪和,弹枪)手中的棉签上残留的挥发性有机化合物。所提出的方法包括顶空萃取弹药推进剂中无烟粉末中的VOC。通过对二苯胺(DPA),硝酸甘油(NG),2,4-二硝基甲苯(2,4-DNT)和乙基重金属(EC)的方法检测限(MDL)4-26 ng证明了该方法的灵敏度。此外,开发了一种快速方法,用于通过激光诱导击穿光谱法(LIBS)检测GSR存在的无机成分(即Ba,Pb和Sb)。 LIBS的优势包括快速分析(每个样品约12秒)和良好的灵敏度,目标元素的预期MDL在0.1-20 ng范围内。使用两种技术对结果进行统计分析,以确定所分析变量之间的任何相关性。这项工作表明,从有机成分分析中收集的信息具有改善GSR检测的潜力。

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    Tarifa Anamary;

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  • 年度 2015
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