U.S. Naval Research Laboratory, Chemistry Division, USA.
Nova Research Inc, USA.
Anal Chim Acta. 2018 Dec 21;1040:41-48. doi: 10.1016/j.aca.2018.07.035. Epub 2018 Jul 17.
While there is a large body of research on the properties and detection of traditional military high explosives and propellant low explosives, there is a dearth of research on homemade explosive (HME) materials, though they are prevalent today. The safety of working with these materials in the laboratory is the greatest limiting factor preventing HME research. A vapor delivery tool, the Mixed Vapor Generation Device (MV-Gen), was designed to safely contain the individual solid or liquid components that often compose homemade explosives vapor plumes and deliver the mixed component vapors for instrumental sampling and analysis. Within the MV-Gen, each component is separated and only the vapors mix as they are carried through the device by flowing air. The resulting mixed vapor is representative of either mixed explosive material or bulk explosives. Component materials are held in up to four individual, removable vials with vapor concentrations controlled by vial orifice size, temperature, and diluent airflow. The total concentration can be adjusted by altering vial temperature via a thermal water jacket surrounding the entirety of the device, or by adjusting the flow rate of diluent air through the device. The MV-Gen was evaluated first with surrogate compounds, followed by two types of homemade explosives, to include a binary explosive mixture and a peroxide explosive. To evaluate the device, vapors were cold-trapped on an online sampling system and analyzed by gas chromatography/mass spectrometry. It was determined that the device yielded reproducible vapor concentrations of both single and mixed components, and the ratio of these vapors can be easily adjusted to mimic varying forms of homemade explosives.
虽然有大量关于传统军用高能炸药和推进剂低能炸药的特性和检测的研究,但对于自制爆炸物(HME)材料的研究却很少,尽管它们现在很普遍。在实验室中处理这些材料的安全性是限制 HME 研究的最大因素。一种蒸气输送工具,即混合蒸气发生装置(MV-Gen),被设计用来安全地容纳通常构成自制爆炸物蒸气羽流的单个固体或液体成分,并输送混合成分蒸气进行仪器采样和分析。在 MV-Gen 内,每个成分都被分离,只有当它们被流动空气携带通过装置时才会混合蒸气。产生的混合蒸气代表混合爆炸材料或散装炸药。成分材料被保存在多达四个单独的、可移动的小瓶中,蒸气浓度由小瓶孔口大小、温度和稀释空气流量控制。通过改变装置周围的热水套来改变小瓶温度,可以调整总浓度,或者通过调整通过装置的稀释空气流量来调整总浓度。MV-Gen 首先用替代化合物进行了评估,然后用两种自制爆炸物进行了评估,包括二元爆炸混合物和过氧化物爆炸物。为了评估该装置,蒸气在在线采样系统上进行冷阱捕获,并通过气相色谱/质谱进行分析。结果表明,该装置可产生单一组分和混合组分的可重复蒸气浓度,并且这些蒸气的比例可以很容易地调整,以模拟不同形式的自制爆炸物。