采用DART-MS实时监测PDMS基犬训练辅助器释放的TATP相对于体TATP

ty10086 提交于 周三, 08/25/2021 - 15:58
文章英文标题
Real-time monitoring of TATP released from PDMS-based canine training aids versus bulk TATP using DART-MS
正文
实时-质谱直接分析( DART-MS )用来探讨三丙酮三氧化二铁( TATP )释放的蒸汽与一种基于吸收的犬训练助剂的行为,有时称之为聚二甲基硅氧烷( PDMS )聚合物气味捕获与释放( POCR )系统。结果比较了从源到仪器的耗散(分钟内)、稳态信号强度(即近似相对量)以及去除源后气味的耗散(分钟内)。测试了几个参数:POCRs之间的重现性、TATP与盖子TATP之间的重现性(包含13个钻孔)、距离探测器的距离、源的高度、隐蔽性、有目的的空气扰动、空白以及安全壳系统。总的来说,基于PDMS的训练援助行为与带有13孔盖子的TATP类似,是联邦调查局“全国犬类即兴爆炸物检测计划”最常使用的援助。结果表明,PDMS基训练器作为蒸汽释放系统在稳态下具有良好的重复性和可靠性。当使用1   g TATP样品的气味限制盖、所有样品的高度放置以及使用棉袋作为掩蔽方法时,所有样品的信号都随着距离DART界面距离的增加而降低。尽管没有直接的相关性,但这些结果支持坊间的狗证据,因为狗的处理人员往往报告他们的狗在相同的参数范围内更难找到训练辅助。此外,添加有目的的空气扰动对1   g TATP信号强度的影响要大于PDMS辅助训练。最后,在DART界面处添加掩蔽气味降低了对TATP的检测,而不论气源是什么,但并没有完全消除它。这也与犬的处理程序报道和以往的研究一致,在高背景存在的情况下,犬可能会有更难的时间定位气味。这是第一种利用实时检测来表征生物传感器训练助剂中蒸气释放和耗散的方法,与它打算替代的相应真实材料相比的报道。本研究利用气味释放的三个阶段(饱和、稳态和耗尽),考察了几种环境参数对真实材料TATP挥发性检测的影响以及PDMS基训练助剂。
文章内容(英文)
Direct analysis in real time-mass spectrometry (DART-MS) was used to explore the behavior of vapor released from triacetone triperoxide (TATP) versus an absorption-based canine training aid sometimes called a polydimethylsiloxane (PDMS) polymer odor capture and release (POCR) system. The results compare dissipation from the source to the instrument (in minutes), steady state signal intensity (i.e. approximate relative amounts), and dissipation of the odor after removing the source (also in minutes). Several parameters were tested: reproducibility between POCRs, TATP versus TATP with a lid (containing 13 drilled holes), distance from the detector, heights of the source, concealment, purposeful air disturbances, blanks, and containment systems. In general, the PDMS-based training aid behaved similarly to the TATP with a 13-hole lid, which is the aid most often used by the FBI’s National Canine Improvised Explosives Detection Program. Results shows that the PDMS-based training aids are reproducible and reliable at steady state as a vapor release system. As expected, signal was decreased given increased distance from the DART interface for all sample types, when using the odor-restricting lid with the 1 g TATP sample, when all samples were placed at height, and when using a cotton bag as a method of concealment. Despite having no direct correlation, these results support anecdotal canine evidence since canine handlers tend to report that their dogs have more difficulty finding training aids within those same parameters. Further, adding purposeful air disturbances had a larger effect on signal intensity for 1 g TATP than on the PDMS-based training aid. Finally, adding a masking odor at the DART interface decreased detection of TATP regardless of the vapor source, but did not fully diminish it. This too agrees with canine handler reports and previous research, where dogs may have a more difficult time locating odors in the presence of high background. This is the first report of its kind to use real-time detection to characterize vapor release and dissipation from a biosensor training aid in comparison to the corresponding true material it intends to replace. By using the three phases of odor release (saturation, steady state, and depletion), the study investigates the effects of several ambient parameters on TATP volatile detection from true material and the PDMS-based training aid.
来源出处
Journal|[J]Forensic ChemistryVolume 23, 2021.
DOI
https://doi.org/10.1016/J.FORC.2021.100315

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