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首页> 外文期刊>Analytical chemistry >Development of an Ion Store/Time-of-Flight Mass Spectrometer for the Analysis of Volatile Compounds in Air
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Development of an Ion Store/Time-of-Flight Mass Spectrometer for the Analysis of Volatile Compounds in Air

机译:离子存储/飞行时间质谱仪的开发,用于分析空气中的挥发性化合物

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摘要

A time-of-flight mass spectrometer (TOF-MS) that incorporates an ion storage trap as a pulsed extraction source and sample preconcentrator has been developed for air monitoring. This new instrument configuration is designed for real-time monitoring of changes in trace volatile and semivolatile compound concentrations in air. Typically, detection limits are in the low parts per billion (v/v) range. This ion store/TOF-MS configuration permits a relatively large volume air flux to be drawn directly into the ion trap cavity, creating a local pressure that exceeds 10↑(-4) Torr. Operating the ion trap at this pressure increases the extent of chemical ionization with the abundant N↓(2)↑(+) and O↓(2)↑(+) that are formed by electron impact. The air background also serves as a suitable collisional damping matrix, helping to compress the ion cloud to the center of the trap, which is ideal for TOF-MS analysis. Ions are typically accumulated in the trap for 400 ms, at which point they are extracted through the exit end cap and analyzed within 100 μs, thus yielding a duty. cycle near 100%. The necessary hardware and electronics configuration needed to obtain optimum resolution (routinely 2000 m/△m, fwhm), mass accuracy and sensitivity is described.
机译:飞行时间质谱仪(TOF-MS)结合了离子存储阱作为脉冲提取源和样品预浓缩器,已开发用于空气监测。这种新的仪器配置旨在实时监测空气中痕量挥发性和半挥发性化合物浓度的变化。通常,检测极限在十亿分之一(v / v)的低范围内。这种离子存储/ TOF-MS配置允许将较大体积的空气通量直接吸入离子阱腔,从而产生超过10↑(-4)Torr的局部压力。在此压力下操作离子阱会增加化学电离的程度,其中电子撞击会形成大量的N↓(2)↑(+)和O↓(2)↑(+)。空气背景还可以用作合适的碰撞阻尼矩阵,帮助将离子云压缩到阱的中心,这对于TOF-MS分析是理想的。离子通常在离子阱中累积400毫秒,然后通过出口端盖将其提取出来并在100μs内进行分析,从而产生占空比。周期接近100%。描述了获得最佳分辨率(通常为2000 m /△m,fwhm),质量精度和灵敏度所需的必要硬件和电子配置。

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