DeGreeff Lauryn E, Liddell Heather P H, Pogue William R, Merrill Marriner H, Johnson Kevin J
U.S. Naval Research Laboratory, Chemistry Division, Code 6181, Washington, D.C., USA.
American Society for Engineering Education-Naval Research Laboratory (ASEE-NRL), Washington, D.C., USA.
Forensic Sci Int. 2019 Apr;297:254-264. doi: 10.1016/j.forsciint.2019.02.002. Epub 2019 Feb 21.
In security settings, explosive residues or particles are collected by swiping the object of interest (e.g., luggage or package) with a collection medium, or trap. Particles on the trap are thermally desorbed for detection by ion mobility spectrometry (IMS) or other analyses. A high trap sampling efficiency increases the chance of detection, and is affected by a number of factors. In particular, this work studies the effect of trap re-use on collection efficiency of organic explosives, namely 2,4,6-trinitrotoluene (TNT) and 1,3,5-trinitro-1,3,5-triazinane (RDX), and correlates this data to quantifiable morphology changes. Collection efficiency was measured by liquid extraction of the traps with detection and quantitation by gas chromatography / mass spectrometry (GC/MS). Using silhouette microscopy for visualization of the trap texture, morphology changes were quantified by several measurements of trap roughness and hairiness, drawing from techniques and metrics used in the textiles industry. Nomex traps were visibly roughened by repeated re-use, and this was correlated with significant improvements in trap collection efficiency (11-57%) depending upon the specific analyte and substrate combination interrogated. Teflon-coated fiberglass (TCFG) traps showed little change with repeated swiping and minimal to no improvement in particle collection efficiency. These results have direct implications for optimizing particle collection traps for use in security settings.
在安全检测中,通过使用采集介质或捕集器擦拭感兴趣的物体(如行李或包裹)来收集爆炸物残留或颗粒。捕集器上的颗粒通过热脱附,以供离子迁移谱(IMS)检测或进行其他分析。高捕集采样效率会增加检测几率,且受多种因素影响。具体而言,本研究探讨了捕集器重复使用对有机炸药(即2,4,6-三硝基甲苯(TNT)和1,3,5-三硝基-1,3,5-三嗪烷(RDX))收集效率的影响,并将该数据与可量化的形态变化相关联。通过用气相色谱/质谱联用仪(GC/MS)进行检测和定量,对捕集器进行液体萃取来测量收集效率。使用轮廓显微镜观察捕集器纹理,借鉴纺织工业中使用的技术和指标,通过对捕集器粗糙度和毛羽的多次测量来量化形态变化。Nomex捕集器经反复使用后明显变粗糙,这与根据所检测的特定分析物和底物组合,捕集器收集效率显著提高(11 - 57%)相关。涂覆特氟龙的玻璃纤维(TCFG)捕集器在反复擦拭后变化不大,颗粒收集效率几乎没有提高或没有提高。这些结果对优化安全检测中使用的颗粒收集捕集器具有直接意义。