Karsa Ltd., A. I. Virtasen Aukio 1, 00560, Helsinki, Finland; Institute for Atmospheric and Earth System Research/Physics, University of Helsinki, FI-00014, Helsinki, Finland.
Karsa Ltd., A. I. Virtasen Aukio 1, 00560, Helsinki, Finland.
Talanta. 2022 Nov 1;249:123653. doi: 10.1016/j.talanta.2022.123653. Epub 2022 Jun 6.
Illegal explosives are a threat to aviation, transport sector, critical infrastructure and generally to public safety. Their detection requires extremely sensitive instruments with efficient workflows that allow large throughput of items. In this study, we built a trace explosives detection instrument that requires minimal sample treatment and reaches ultra-low picogram level detection limits for many common explosives. The instrument is based on thermal desorption of filters, which allows analysis of liquid and solid phase samples, and subsequent selective atmospheric pressure chemical ionization and detection with a mass spectrometer. We performed experiments to scope the optimal ionization chemistry for the system and selected Br as the reagent ion, and measured the limit of detection for 14 different explosives that were generally in the picogram range. Finally, we demonstrate the usability of the system by sampling air to a filter from a storage room known to contain explosives, from which we detect four different explosives.
非法爆炸物对航空、运输部门、关键基础设施以及一般公共安全构成威胁。对其进行探测需要极其灵敏的仪器,这些仪器需要具有高效的工作流程,以实现大量物品的高通量检测。在本研究中,我们构建了一种痕量爆炸物检测仪器,该仪器只需对样品进行最小程度的处理,就能达到许多常见爆炸物的超低皮克级检测限。该仪器基于过滤器的热解吸,允许分析液相和固相样品,随后采用大气压化学电离和质谱仪进行选择性检测。我们进行了实验,以确定该系统的最佳离子化化学,并选择 Br 作为试剂离子,测量了 14 种不同爆炸物的检测限,这些爆炸物通常处于皮克级范围。最后,我们通过从已知存放爆炸物的储藏室向过滤器采集空气样本来演示该系统的可用性,从该空气样中我们检测到了四种不同的爆炸物。