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利用 SPME-GC/MS 从塑料炸药中鉴定挥发性化学特征,并通过离子淌度谱进行检测。

Identification of volatile chemical signatures from plastic explosives by SPME-GC/MS and detection by ion mobility spectrometry.

机构信息

Florida International University, 11200 SW 8th St. OE 116A, Miami, FL 33199, USA.

出版信息

Anal Bioanal Chem. 2010 Apr;396(8):2997-3007. doi: 10.1007/s00216-010-3501-6. Epub 2010 Mar 13.

Abstract

This study demonstrates the use of solid-phase microextraction (SPME) to extract and pre-concentrate volatile signatures from static air above plastic explosive samples followed by detection using ion mobility spectrometry (IMS) optimized to detect the volatile, non-energetic components rather than the energetic materials. Currently, sample collection for detection by commercial IMS analyzers is conducted through swiping of suspected surfaces for explosive particles and vapor sampling. The first method is not suitable for sampling inside large volume areas, and the latter method is not effective because the low vapor pressure of some explosives such as RDX and PETN make them not readily available in the air for headspace sampling under ambient conditions. For the first time, headspace sampling and detection of Detasheet, Semtex H, and C-4 is reported using SPME-IMS operating under one universal setting with limits of detection ranging from 1.5 to 2.5 ng for the target volatile signatures. The target signature compounds n-butyl acetate and the taggant DMNB are associated with untagged and tagged Detasheet explosives, respectively. Cyclohexanone and DMNB are associated with tagged C-4 explosives. DMNB is associated with tagged Semtex H explosives. Within 10 to 60 s of sampling, the headspace inside a glass vial containing 1 g of explosive, more than 20 ng of the target signatures can be extracted by the SPME fiber followed by IMS detection.

摘要

本研究展示了固相微萃取(SPME)在从塑料炸药样品上方的静态空气中提取和预浓缩挥发性特征物方面的应用,然后使用优化用于检测挥发性非能量成分而不是能量材料的离子迁移谱(IMS)进行检测。目前,通过商业 IMS 分析仪进行检测的样本采集是通过擦拭可疑表面上的爆炸颗粒和蒸气采样来完成的。第一种方法不适用于在大体积区域内采样,而第二种方法则效果不佳,因为某些爆炸物(如 RDX 和 PETN)的蒸气压较低,在环境条件下,它们不易在空气中形成用于顶空采样的蒸气。首次报道了使用 SPME-IMS 进行 Detasheet、Semtex H 和 C-4 的顶空采样和检测,该方法在一个通用设置下操作,目标挥发性特征物的检测限范围为 1.5 至 2.5ng。目标特征化合物正丁乙酸酯和标签物 DMNB 分别与未标记和标记的 Detasheet 爆炸物有关。环己酮和 DMNB 与标记的 C-4 爆炸物有关。DMNB 与标记的 Semtex H 爆炸物有关。在 10 至 60 秒的采样时间内,1 克爆炸物的玻璃小瓶内的顶空可以通过 SPME 纤维提取超过 20ng 的目标特征物,然后通过 IMS 进行检测。

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