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Active vortex sampling system for remote contactless survey of sur-faces by laser-based field asymmetrical ion mobility spectrometer

机译:有源涡流采样系统,用于基于激光的场非对称离子迁移谱仪进行远程非接触式表面测量

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摘要

The ways for increasing the distance of non-contact sampling up to 40 cm for a field asymmetric ion mobility (FAIM) spectrometer are formulated and implemented by the use of laser desorption and active shaper of the vortex flow. Numerical modeling of air sampling flows was made and the sampling device for a laser-based FAIM spectrometer on the basis of high speed rotating impeller, located coaxial with the ion source, was designed. The dependence of trinitrotoluene vapors signal on the rotational speed and the optimization of the value of the sampling flow were obtained. The effective distance of sampling is increased up to 28 cm for trinitrotoluene vapors detection by a FAIM spectrometer with a rotating impeller. The distance is raised up to 40 cm using laser irradiation of traces of explosives. It is shown that efficient desorption of low-volatile explosives is achieved at laser intensity 10~ W / cm~2, wavelength λ=266 nm, pulse energy about 1mJ and pulse frequency not less than 10 Hz under ambient conditions. The ways of optimization of internal gas flows of a FAIM spectrometer for the work at increased sampling distances are discussed.
机译:通过使用激光解吸和涡流的主动整形器,制定并实现了将非接触式离子迁移谱仪(FAIM)的非接触采样距离增加至40 cm的方法。对空气采样流进行了数值模拟,设计了基于高速旋转叶轮,与离子源同轴的基于激光的FAIM光谱仪的采样装置。获得了三硝基甲苯蒸气信号对转速的依赖性以及对采样流量值的优化。对于带有旋转叶轮的FAIM光谱仪,三硝基甲苯蒸气检测的有效采样距离增加到28 cm。使用激光照射爆炸物的痕迹可以将距离提高到40厘米。结果表明,在环境条件下,激光强度为10〜W / cm〜2,波长为λ= 266nm,脉冲能量约为1mJ,脉冲频率不小于10Hz时,可实现低挥发性炸药的有效脱附。讨论了在增加采样距离的情况下,FAIM光谱仪内部气体流量优化的方法。

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  • 会议地点 Warsaw(PL)
  • 作者单位

    National Research Nuclear University «Moscow Engineering Physics Institute», 31, Kashirskoe Sh., Moscow, 115409, Russia;

    National Research Nuclear University «Moscow Engineering Physics Institute», 31, Kashirskoe Sh., Moscow, 115409, Russia;

    National Research Nuclear University «Moscow Engineering Physics Institute», 31, Kashirskoe Sh., Moscow, 115409, Russia;

    National Research Nuclear University «Moscow Engineering Physics Institute», 31, Kashirskoe Sh., Moscow, 115409, Russia;

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  • 正文语种 eng
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