首页> 外文期刊>Analytical chemistry >A Mobile Mass Spectrometer for Comprehensive On-Line Analysis of Trace and Bulk Components of Complex Gas Mixtures: Parallel Application of the Laser-Based Ionization Methods VUV Single-Photon Ionization, Resonant Multiphoton Ionization, and Laser-In
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A Mobile Mass Spectrometer for Comprehensive On-Line Analysis of Trace and Bulk Components of Complex Gas Mixtures: Parallel Application of the Laser-Based Ionization Methods VUV Single-Photon Ionization, Resonant Multiphoton Ionization, and Laser-In

机译:移动质谱仪,用于复杂气体混合物的痕量和散装成分的全面在线分析:基于激光的电离方法的并行应用VUV单光子电离,共振多光子电离和Laser-In

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摘要

A newly developed compact and mobile time-of-flight mass spectrometer (TOFMS) for on-line analysis and monitoring of complex gas mixtures is presented. The instrument is designed for a (quasi-)simultaneous application of three ionization techniques that exhibit different ionization selectivities. The highly selective resonance-enhanced multiphoton ionization (REMPI) technique, using 266-nm UV laser pulses, is applied for selective and fragmentationless ionization of aromatic compounds at trace levels (parts-per-billion volume range). Mass spectra obtained using this technique show the chemical signature solely of monocyclic (benzene, phenols, etc.) and polycyclic (naphthalene, phenathrene, indol, etc.) aromatic species. Furthermore, the less selective but still fragmentationless single photon ionization (SPI) technique with 118-nm VUV laser pulses allows the ionization of compounds with an ionization potential below 10.5 eV. Mass spectra obtained using this technique show the profile of most organic compounds (aliphatic and aromatic species, like nonane, acetaldehyde, or pyrrol) and some inorganic compounds (e.g., ammonia, nitrogen monoxide). Finally, the nonselective ionization technique laser-induced electron-impact ionization (LEI) is applied. However, the sensitivity of the LEI technique is adjusted to be fairly low. Thus, the LEI signal in the mass spectra gives information on the inorganic bulk constituents of the sample (i.e., compounds such as water, oxygen, nitrogen, and carbon dioxide). Because the three ionization methods (REMPI, SPI, LEI) exhibit largely different ionization selectivities, the isolated application of each method alone solely provides specific mass spectrometric information about the sample composition. Special techniques have been developed and applied which allow the quasi-parallel use of all three ionization techniques for on-line monitoring purposes. Thus, a comprehensive characterization of complex samples is feasible jointly using the characteristic advantages of the three ionization techniques. Laboratory applications show results on rapid overview characterization of mineral oil-based fuels and coffee headspace. The first reported field applications include timely resolved on-line monitoring results on automobile exhausts and of waste incineration flue gas.
机译:介绍了一种新开发的紧凑型移动飞行时间质谱仪(TOFMS),用于在线分析和监测复杂的气体混合物。该仪器专为同时显示三种不同电离选择性的三种电离技术而设计。使用266 nm UV激光脉冲的高度选择性共振增强多光子电离(REMPI)技术用于痕量水平(十亿分之一体积范围)的芳香族化合物的选择性和无碎片电离。使用此技术获得的质谱图仅显示了单环(苯,苯酚等)和多环(萘,菲,吲哚等)芳香族化合物的化学特征。此外,具有118 nm VUV激光脉冲的选择性较低但仍无碎片的单光子电离(SPI)技术允许电离电势低于10.5 eV的化合物电离。使用此技术获得的质谱图显示了大多数有机化合物(脂族和芳族物质,如壬烷,乙醛或吡咯)和一些无机化合物(例如氨,一氧化氮)的分布。最后,应用了非选择性电离技术激光诱导的电子碰撞电离(LEI)。但是,将LEI技术的灵敏度调整为相当低。因此,质谱中的LEI信号给出了有关样品中无机块状成分(即水,氧,氮和二氧化碳等化合物)的信息。由于三种电离方法(REMPI,SPI,LEI)表现出很大的电离选择性,因此每种方法的单独应用只能单独提供有关样品成分的特定质谱信息。已经开发并应用了特殊技术,允许将所有三种电离技术准并行用于在线监测。因此,利用三种电离技术的特征优势,可以对复杂样品进行全面表征。实验室应用显示了基于矿物油的燃料和咖啡顶空快速概述特性的结果。首次报告的现场应用包括及时解决汽车尾气和废物焚烧烟气的在线监测结果。

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