Institute for Science and Technology in Medicine, School of Medicine, Keele University, Hartshill, Stoke-on-Trent, UK.
Analyst. 2011 May 21;136(10):2009-32. doi: 10.1039/c1an15082k. Epub 2011 Mar 23.
The topic of ambient gas analysis has been rapidly developed in the last few years with the evolution of the exciting new techniques such as DESI, DART and EESI. The essential feature of all is that analysis of trace gases can be accomplished either in the gas phase or those released from surfaces, crucially avoiding sample collection or modification. In this regard, selected ion flow tube mass spectrometry, SIFT-MS, also performs ambient analyses both accurately and rapidly. In this focused review we describe the underlying ion chemistry underpinning SIFT-MS through a discourse on the reactions of different classes of organic and inorganic molecules with H(3)O(+), NO(+) and O(2)(+)˙ studied using the SIFT technique. Rate coefficients and ion products of these reactions facilitate absolute SIFT-MS analyses and can also be useful for the interpretation of data obtained by the other ambient analysis methods mentioned above. The essential physics and flow dynamics of SIFT-MS are described that, together with the reaction kinetics, allow SIFT-MS to perform absolute ambient analyses of trace compounds in humid atmospheric air, exhaled breath and the headspace of aqueous liquids. Several areas of research that, through pilot experiments, are seen to benefit from ambient gas analysis using SIFT-MS are briefly reviewed. Special attention is given to exhaled breath and urine headspace analysis directed towards clinical diagnosis and therapeutic monitoring, and some other areas researched using SIFT-MS are summarised. Finally, extensions to current areas of application and indications of other directions in which SIFT-MS can be exploited for ambient analysis are alluded to.
环境气体分析的主题在过去几年中得到了快速发展,这得益于 DESI、DART 和 EESI 等令人兴奋的新技术的发展。所有这些技术的基本特征都是可以在气相或从表面释放的气体中完成痕量气体的分析,这一特点至关重要,因为它避免了样品的收集或修饰。在这方面,选择离子流管质谱(SIFT-MS)也可以准确、快速地进行环境分析。在这篇重点综述中,我们通过讨论不同类别的有机和无机分子与 H(3)O(+)、NO(+)和 O(2)(+)˙的反应,描述了 SIFT-MS 背后的离子化学基础,这些反应是使用 SIFT 技术研究的。这些反应的速率系数和离子产物有助于进行绝对 SIFT-MS 分析,也可以为上述其他环境分析方法获得的数据解释提供有用信息。文中还描述了 SIFT-MS 的基本物理和流动动力学,这些信息与反应动力学一起,使 SIFT-MS 能够在潮湿大气、呼出的呼吸气和水溶液的顶空环境中进行痕量化合物的绝对环境分析。本文简要综述了通过初步实验证明受益于使用 SIFT-MS 进行环境气体分析的几个研究领域。特别关注了呼气和尿液顶空气相分析,旨在用于临床诊断和治疗监测,以及对使用 SIFT-MS 进行的其他一些研究领域进行了总结。最后,还提到了对当前应用领域的扩展以及 SIFT-MS 可用于环境分析的其他方向。