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Optimization of headspace solid-phase microextraction technique for extraction of volatile smokeless powder compounds in forensic applications

机译:顶空固相微萃取技术在法医学应用中提取挥发性无烟粉末化合物的优化

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摘要

Smokeless powders are low explosives and are potentially found in cases involving firearms and improvised explosive devices. Apart from inorganic compound analysis, forensic determination of organic components of these materials appears as a promising alternative, especially the chromatographic techniques. This work describes the optimization of a solid-phase microextraction technique using an 85 μm polyacrylate fiber followed by gas chromatography-flame ionization detection for smokeless powder. A multivariate experimental design was performed to optimize extraction-influencing parameters. A 24 factorial first-order design revealed that sample temperature and extraction time were the major influencing parameters. Doehlert matrix design has subsequently selected 66°C and 21 min as the compromised conditions for the two predetermined parameters. This extraction technique has successfully detected the headspace compounds of smokeless powders from different ammunition types and allowed for their differentiation. The novel technique allows more rapid sample preparation for chromatographic detection of smokeless powders.
机译:无烟粉末是低爆炸药,可能在涉及枪支和简易爆炸装置的情况下发现。除无机化合物分析外,法医学测定这些材料中的有机成分似乎是一种有前途的替代方法,尤其是色谱技术。这项工作描述了使用85μm聚丙烯酸酯纤维对固相微萃取技术的优化,然后进行气相色谱-火焰电离检测无烟粉末。进行了多变量实验设计以优化提取影响参数。一个24阶阶乘设计表明,样品温度和提取时间是主要的影响参数。 Doehlert矩阵设计随后选择了66°C和21分钟作为两个预定参数的折衷条件。这种提取技术已经成功地检测了来自不同弹药类型的无烟粉末的顶空化合物,并对其进行了区分。这项新技术可以更快速地进行样品制备,以进行无烟粉末的色谱检测。

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