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首页> 外文期刊>International journal of mass spectrometry >Concurrent use of H_3O~+, NO~+, and O_2~+ precursor ions for the detection and quantification of diverse trace gases in the presence of air and breath by selected ion-flow tube mass spectrometry
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Concurrent use of H_3O~+, NO~+, and O_2~+ precursor ions for the detection and quantification of diverse trace gases in the presence of air and breath by selected ion-flow tube mass spectrometry

机译:同时使用H_3O〜+,NO〜+和O_2〜+前体离子通过选定的离子流管质谱法在空气和呼吸存在下检测和定量分析各种痕量气体

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Selected ion-flow tube mass spectrometry, SIFT-MS, relies on chemical ionization of trace gases in air and breath samples using precursor ions that can be rapidly changed to allow the analysis of transient or limited-volume samples. The precursor ion species of choice are H_3O~+, NO~+ and O_2~+ because they do not react with the major components of air. In this article, we present the results of a study designed to investigate if consistent quantification of chemically different compounds can be realized using these three precursor ion species in the presence of humid air and breath. The neutral compounds included in the study are ammonia, dimethylamine, acetone, benzene, isoprene, ethanol, and 1-propanol. These were chosen primarily because the reactions of these compounds with the three precursor ions are representative of the diverse ion chemistry met in SIFT-MS analyses and, in addition, because of their biological and environmental significance, which renders them of particular interest. The results of this study show that consistent quantification can be achieved for all these neutral compounds when the complete ion chemistry involved in the analyses is properly accounted for. It is particularly important to account for the involvement in the in chemistry of hydrated hydronium ions when using H_3O~+ precursor ions and for the presence of hydrated product ions produced when very humid samples are being analyzed. This study also indicates that all three precursor ion species are not always suitable for the analysis of particular compounds but that two of the three can always be used. The classes of compounds that are best analyzed by each precursor ion species are also indicated. These results indicate the power of SIFT-MS in minimizing ambiguity and improving the accuracy of on-line, direct analysis of the trace gases in humid air and breath.
机译:选定的离子流管质谱仪SIFT-MS依赖于空气和呼吸样品中痕量气体的化学电离,使用的前体离子可以快速改变,以分析瞬态或有限体积的样品。选择的前体离子种类为H_3O〜+,NO〜+和O_2〜+,因为它们不与空气的主要成分发生反应。在本文中,我们介绍了一项研究的结果,该研究旨在调查在潮湿空气和呼吸存在的情况下,使用这三种前体离子物种是否可以实现化学上不同化合物的一致定量。研究中包括的中性化合物是氨,二甲胺,丙酮,苯,异戊二烯,乙醇和1-丙醇。选择这些化合物主要是因为这些化合物与三种前体离子的反应代表了SIFT-MS分析中遇到的多种离子化学反应,此外,由于它们的生物学和环境意义,使它们特别受关注。这项研究的结果表明,如果适当考虑了分析中涉及的全部离子化学性质,则所有这些中性化合物均可实现一致的定量。使用H_3O〜+前体离子时,要考虑到水合水合氢离子的化学作用,以及分析非常潮湿的样品时所产生的水合产物离子的存在,这一点尤为重要。这项研究还表明,所有三种前体离子种类并不总是适合于特定化合物的分析,但可以始终使用这三种中的两种。还指出了每种前体离子种类能最好分析的化合物类别。这些结果表明,SIFT-MS可以最大程度地减少歧义并提高在线,直接分析湿空气和呼吸中痕量气体的准确性。

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