Thomson B A, Davidson W R, Lovett A M
Environ Health Perspect. 1980 Jun;36:77-84. doi: 10.1289/ehp.803677.
The ability to use ambient air as a carrier and reagent gas in an atmospheric pressure chemical ionization source allows instantaneous air analysis to be combined with hypersensitivity toward a wide variety of compounds. The TAGA (Trace Atmospheric Gas Analyser) is an instrument which is designed to use both positive and negative atmospheric pressure chemical ionization (APCI) for trace gas analysis; this paper describes several applications of negative APCI which demonstrates that the technique is not limited to environmental monitoring. Examples are described which suggest that the TAGA can be used for the detection of illicit drugs and explosives, and for the analysis of breath or skin emissions, as well as for air pollution measurements. The applications are not restricted by the use of ambient air as a reagent gas; addition to the air carrier of various gases allows specific reagent ions such as Cl- or Br- to be generated. Furthermore, in certain situations pure gas carriers can be used to provide even more flexibility in the ion chemistry, with a short term absorber-desorber system used to transfer the sample from the ambient air into the ion source region. The potential uses for APCI are expanding continuously as the understanding of the complex ion-molecule chemistry grows. This paper underlines the complementary relation between the development of new negative chemical ionization (NCI) techniques and practical applications using the TAGA system.
在大气压化学电离源中使用环境空气作为载气和反应气的能力,使得即时空气分析能够与对多种化合物的高灵敏度相结合。TAGA(痕量大气气体分析仪)是一种设计用于利用正、负大气压化学电离(APCI)进行痕量气体分析的仪器;本文介绍了负APCI的几种应用,表明该技术不仅限于环境监测。文中描述的示例表明,TAGA可用于检测非法药物和爆炸物、分析呼吸或皮肤排放物以及进行空气污染测量。这些应用不受使用环境空气作为反应气的限制;向空气载气中添加各种气体可生成特定的反应离子,如Cl-或Br-。此外,在某些情况下,可使用纯气体载气在离子化学方面提供更大的灵活性,利用短期吸收-解吸系统将样品从环境空气中转移到离子源区域。随着对复杂离子-分子化学的理解不断深入,APCI的潜在用途在不断扩展。本文强调了新的负化学电离(NCI)技术的发展与使用TAGA系统的实际应用之间的互补关系。