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在飞行时间质谱仪中通过准同时共振增强多光子电离、真空紫外单光子电离和电子碰撞电离对复杂气体混合物进行综合在线表征:装置与仪器表征

Comprehensive on-line characterization of complex gas mixtures by quasi-simultaneous resonance-enhanced multiphoton ionization, vacuum-UV single-photon ionization, and electron impact ionization in a time-of-flight mass spectrometer: setup and instrument characterization.

作者信息

Mühlberger F, Hafner K, Kaesdorf S, Ferge T, Zimmermann R

机构信息

Institut für Okologische Chemie, GSF-Forschungszentrum für Umwelt und Gesundheit, D-85764 Neuherberg, Germany.

出版信息

Anal Chem. 2004 Nov 15;76(22):6753-64. doi: 10.1021/ac049535r.

DOI:10.1021/ac049535r
PMID:15538800
Abstract

This paper reports on a newly developed mobile mass spectrometer for comprehensive on-line analysis of complex gas mixtures such as ambient air or industrial process gases. Three ionization methods, namely, the resonance-enhanced multiphoton ionization (REMPI), vacuum-ultraviolet single-photon ionization (SPI), and electron impact ionization (EI) are implemented in this instrument and can be operated (quasi-) simultaneously. By means of this setup, a wide range of compounds can be analyzed due to the unique ionization selectivitiy and sensitivity profiles provided by the different ionization techniques. The mass spectrometer is designed for field application even under severe conditions. The REMPI technique is suitable for the selective and soft ionization (without fragmentation) of aromatic compounds at trace level (ppbv/pptv). The also soft but less selective SPI technique with 118-nm vacuum-ultraviolet laser pulses is used as a second laser-based ionization method. Mass spectra obtained by this technique show profiles of most organic compounds (aliphatic and aromatic species) and of some low IP inorganic substances (e.g., ammonia, nitrogen oxide) down to ppbv concentrations. In addition to the laser-based ionization techniques, EI ionization can be used for analysis of the bulk components such as water, oxygen, nitrogen, and carbon dioxide as well as for detection of inorganic minor components such as HCN or HCl from combustion flue gases at ppmv concentration levels. Each method yields specific mass spectrometric information of the sample composition. Special techniques have been developed to combine the three ionization methods in a single mass spectrometer and to allow the quasi-parallel application of all three ionization techniques.

摘要

本文报道了一种新开发的移动质谱仪,用于对诸如环境空气或工业过程气体等复杂气体混合物进行全面在线分析。该仪器采用了三种电离方法,即共振增强多光子电离(REMPI)、真空紫外单光子电离(SPI)和电子轰击电离(EI),并且可以(准)同时运行。通过这种设置,由于不同电离技术提供的独特电离选择性和灵敏度分布,可以分析多种化合物。该质谱仪设计用于即使在恶劣条件下的现场应用。REMPI技术适用于痕量水平(ppbv/pptv)下芳香族化合物的选择性和软电离(无碎片)。118纳米真空紫外激光脉冲的SPI技术同样是软电离,但选择性较低,用作第二种基于激光的电离方法。通过该技术获得的质谱显示了大多数有机化合物(脂肪族和芳香族物质)以及一些低电离能无机物质(如氨、氮氧化物)低至ppbv浓度的分布。除了基于激光的电离技术外,EI电离可用于分析诸如水、氧气、氮气和二氧化碳等主要成分,以及检测燃烧烟道气中浓度为ppmv水平的无机微量成分,如HCN或HCl。每种方法都能提供样品组成的特定质谱信息。已经开发出特殊技术,将这三种电离方法结合在一台质谱仪中,并允许同时应用所有三种电离技术。

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