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New method for comprehensive detection of chemical warfare agents using an electron-cyclotron-resonance ion-source mass spectrometer

机译:电子回旋共振离子源质谱仪全面检测化学战剂的新方法

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We developed a detection technology for vapor forms of chemical warfare agents (CWAs) with an element analysis system using an electron cyclotron resonance ion source. After the vapor sample was introduced directly into the ion source, the molecular material was decomposed into elements using electron cyclotron resonance plasma and ionized. The following CWAs and stimulants were examined: diisopropyl fluorophosphonate (DFP), 2-chloroethylethylsulfide (2CEES), cyanogen chloride (CNCl), and hydrogen cyanide (HCN). The type of chemical warfare agents, specifically, whether it was a nerve agent, blister agent, blood agent, or choking agent, could be determined by measuring the quantities of the monatomic ions or CN~+ using mass spectrometry. It was possible to detect gaseous CWAs that could not be detected by a conventional mass spectrometer. The distribution of electron temperature in the plasma could be closely controlled by adjusting the input power of the microwaves used to generate the electron cyclotron resonance plasma, and the target compounds could be detected as molecular ions or fragment ions, enabling identification of the target agents.
机译:我们开发了一种使用电子回旋共振离子源的元素分析系统,用于化学战剂(CWA)蒸气形式的检测技术。将蒸气样品直接引入离子源后,使用电子回旋共振等离子体将分子材料分解成元素并电离。检查了以下CWA和兴奋剂:氟代磷酸二异丙酯(DFP),2-氯乙基乙基硫醚(2CEES),氯化氰(CNCl)和氰化氢(HCN)。化学战剂的类型,特别是是神经毒剂,起泡剂,血液剂还是窒息剂,可以通过使用质谱法测量单原子离子或CN〜+的量来确定。可以检测到常规质谱仪无法检测到的气态CWA。通过调节用于产生电子回旋共振等离子体的微波的输入功率,可以严格控制等离子体中电子温度的分布,并且可以将目标化合物检测为分子离子或碎片离子,从而可以鉴定目标试剂。

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