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Effects of Fire Suppression Agents and Weathering in the Analysis of Fire Debris by HS-MS eNose

机译:HS-MS eNose在分析火灾碎片中使用灭火剂和耐候性

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摘要

In arson attacks the detection of ignitable liquid residues (ILRs) at fire scenes provides key evidence since ignitable liquids, such as gasoline, are commonly used to initiate the fire. In most forensic laboratories gas chromatography-mass spectrometry is employed for the analysis of ILRs. When a fire occurs, suppression agents are used to extinguish the fire and, before the scene is investigated, the samples at the scene are subjected to a variety of processes such as weathering, which can significantly modify the chemical composition and thus lead to erroneous conclusions. In order to avoid this possibility, the application of chemometric tools that help the analyst to extract useful information from data is very advantageous. The study described here concerned the application of a headspace-mass spectrometry electronic nose (HS-MS eNose) combined with chemometric tools to determine the presence/absence of gasoline in weathered fire debris samples. The effect of applying two suppression agents (Cafoam Aquafoam AF-6 and Pyro-chem PK-80 Powder) and delays in the sampling time (from 0 to 48 h) were studied. It was found that, although the suppression systems affect the mass spectra, the HS-MS eNose in combination with suitable pattern recognition chemometric tools, such as linear discriminant analysis, is able to identify the presence of gasoline in any of the studied situations (100% correct classification).
机译:在纵火袭击中,在火灾现场检测可燃液体残留物(ILR)提供了关键证据,因为汽油等可燃液体通常用于引发火灾。在大多数法医实验室中,气相色谱-质谱法用于分析ILR。发生火灾时,使用灭火剂扑灭大火,在对现场进行调查之前,对现场的样品进行各种处理(例如风化),这会大大改变化学成分,从而得出错误的结论。 。为了避免这种可能性,应用化学计量工具来帮助分析师从数据中提取有用的信息非常有利。此处描述的研究涉及顶空质谱电子鼻(HS-MS eNose)结合化学计量工具的应用,以确定风化的火屑样品中汽油的存在与否。研究了使用两种抑制剂(Cafoam Aquafoam AF-6和Pyro-chem PK-80粉末)的效果以及采样时间的延迟(从0到48 h)。已发现,尽管抑制系统会影响质谱,但HS-MS eNose与合适的模式识别化学计量工具(例如线性判别分析)相结合,能够在任何研究情况下识别汽油的存在(100 %正确分类)。

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