Mühlberger F, Streibel T, Wieser J, Ulrich A, Zimmermann R
Institute for Ecological Chemistry, GSF-National Research Center for Environment and Health, Neuherberg, Germany.
Anal Chem. 2005 Nov 15;77(22):7408-14. doi: 10.1021/ac051194+.
Single-photon ionization (SPI) using vacuum ultraviolet (VUV) light produced by an electron beam pumped rare gas excimer source has been coupled to a compact and mobile time-of-flight mass spectrometer (TOFMS). The novel device enables real-time on-line monitoring of organic trace substances in complex gaseous matrixes down to the ppb range. The pulsed VUV radiation of the light source is employed for SPI in the ion source of the TOFMS. Ion extraction is also carried out in a pulsed mode with a short time delay with respect to ionization. The experimental setup of the interface VUV light source/time-of-flight mass spectrometer is described, and the novel SPI-TOFMS system is characterized by means of standard calibration gases. Limits of detection down to 50 ppb for aliphatic and aromatic hydrocarbons were achieved. First on-line applications comprised real-time measurements of aromatic and aliphatic trace compounds in mainstream cigarette smoke, which represents a highly dynamic fluctuating gaseous matrix. Time resolution was sufficient to monitor the smoking process on a puff-by-puff resolved basis. Furthermore, human breath analysis has been carried out to detect differences in the breath of a smoker and a nonsmoker, respectively. Several well-known biomarkers for smoke could be identified in the smoker's breath. The possibility for even shorter measurement times while maintaining the achieved sensitivity makes this new device a promising tool for on-line analysis of organic trace compounds in process gases or biological systems.
利用电子束泵浦稀有气体准分子源产生的真空紫外(VUV)光进行的单光子电离(SPI)已与紧凑型移动飞行时间质谱仪(TOFMS)联用。这种新型设备能够对复杂气态基质中的有机痕量物质进行实时在线监测,检测限低至十亿分之一(ppb)范围。光源的脉冲VUV辐射用于TOFMS离子源中的SPI。离子提取也以脉冲模式进行,相对于电离有短时间延迟。描述了接口VUV光源/飞行时间质谱仪的实验装置,并通过标准校准气体对新型SPI-TOFMS系统进行了表征。对于脂肪族和芳香族烃类,实现了低至50 ppb的检测限。首次在线应用包括对主流香烟烟雾中芳香族和脂肪族痕量化合物的实时测量,主流香烟烟雾是一种高度动态波动的气态基质。时间分辨率足以逐口监测吸烟过程。此外,还进行了人体呼吸分析,以分别检测吸烟者和非吸烟者呼吸的差异。在吸烟者的呼吸中可以识别出几种众所周知的烟雾生物标志物。在保持已实现的灵敏度的同时,甚至有可能缩短测量时间,这使得这种新设备成为在线分析工艺气体或生物系统中有机痕量化合物的有前途的工具。