Monitoring / Verification using DMS: TATP Example

M. Manard, S. Weeks, K. Kyle
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引用次数: 2

Abstract

Field-rugged and field-programmable differential mobility spectrometry (DMS) networks provide highly selective, universal monitoring of vapors and aerosols at detectable levels from persons or areas involved with illicit chemical/biological/explosives (CBE) production. CBE sensor motes used in conjunction with automated fast gas chromatography with DMS detection (GC/DMS) verification instrumentation integrated into situational operations-management systems can be readily deployed and optimized for changing application scenarios. The feasibility of developing selective DMS motes for a "smart dust" sampling approach with guided, highly selective, fast GC/DMS verification analysis is a compelling approach to minimize or prevent the illegal use of explosives or chemical and biological materials. DMS is currently one of the foremost emerging technologies for field separation and detection of gas-phase chemical species. This is due to trace-level detection limits, high selectivity, and small size. Fast GC is the leading field analytical method for gas phase separation of chemical species in complex mixtures. Low-thermal-mass GC columns have led to compact, low-power field systems capable of complete analyses in 15-300 seconds. A collaborative effort optimized a handheld, fast GC/DMS, equipped with a non-rad ionization source, for peroxide-based explosive measurements.
使用DMS监控/验证:TATP示例
现场加固和现场可编程差分迁移率光谱(DMS)网络提供高度选择性的、通用的、可检测水平的蒸汽和气溶胶监测,这些蒸汽和气溶胶来自参与非法化学/生物/爆炸物(CBE)生产的人员或地区。CBE传感器笔记与自动化快速气相色谱和DMS检测(GC/DMS)验证仪器结合使用,集成到情景操作管理系统中,可以很容易地部署和优化不断变化的应用场景。开发选择性DMS motes用于“智能粉尘”采样方法的可行性,具有引导,高选择性,快速GC/DMS验证分析,是减少或防止非法使用爆炸物或化学和生物材料的引人注目的方法。DMS是目前最重要的新兴技术之一,用于现场分离和检测气相化学物质。这是由于痕量水平的检测限,高选择性和小尺寸。快速气相色谱是复杂混合物中化学物质气相分离的主要现场分析方法。低热质量气相色谱柱导致紧凑,低功率的现场系统能够在15-300秒内完成分析。一项协作工作优化了配备非辐照电离源的手持式快速GC/DMS,用于过氧化物炸药测量。
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