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Using gas chromatography with ion mobility spectrometry to resolve explosive compounds in the presence of interferents.

机译:使用气相色谱和离子迁移谱法在存在干扰物的情况下解析爆炸性化合物。

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摘要

Ion mobility spectrometry (IMS) is a valued field detection technology because of its speed and high sensitivity, but IMS cannot easily resolve analytes of interest within mixtures. Coupling gas chromatography (GC) to IMS adds a separation capability to resolve complex matrices. A GC-IONSCAN(R) operated in IMS and GC IMS modes was evaluated with combinations of five explosives and four interferents. In 100 explosive/interferent combinations, IMS yielded 21 false positives while GC IMS substantially reduced the occurrence of false positives to one. In addition, the results indicate that through redesign or modification of the preconcentrator there would be significant advantages to using GC IMS, such as enhancement of the linear dynamic range (LDR) in some situations. By balancing sensitivity with LDR, GC IMS could prove to be a very advantageous tool when addressing real world complex mixture situations.
机译:离子迁移谱(IMS)由于其速度快和灵敏度高而成为一种有价值的现场检测技术,但是IMS不能轻易地解析混合物中的目标分析物。 IMS联用气相色谱(GC)增加了分离复杂基质的分离能力。用五种炸药和四种干扰物的组合评估了在IMS和GC IMS模式下运行的GC-IONSCAN(R)。在100种爆炸/干扰物组合中,IMS产生21个假阳性,而GC IMS则将假阳性的发生率大大降低至1。此外,结果表明,通过重新设计或修改预浓缩器,使用GC IMS将具有显着的优势,例如在某些情况下增强了线性动态范围(LDR)。通过在灵敏度和LDR之间取得平衡,GC IMS在解决现实世界中复杂的混合情况时可以证明是一种非常有利的工具。

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