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采用选择离子流动管质谱法对潮湿空气中的氰化氢进行定量分析。

Quantification of hydrogen cyanide in humid air by selected ion flow tube mass spectrometry.

作者信息

Spanĕl Patrik, Wang Tianshu, Smith David

机构信息

V. Cermák Laboratory, J. Heyrovský Institute of Physical Chemistry, Academy of Sciences of the Czech Republic, Dolejskova 3, 182 23 Prague 8.

出版信息

Rapid Commun Mass Spectrom. 2004;18(16):1869-73. doi: 10.1002/rcm.1566.

Abstract

Following our recent observation that Pseudomonas bacteria in vitro emit hydrogen cyanide, we have found it necessary to investigate the ion chemistry of this compound and to extend the kinetics database for selected ion flow tube mass spectrometry (SIFT-MS) to allow the accurate quantification of HCN in moist air samples, including exhaled breath. Because of the proximity of the proton affinities of HCN and H2O molecules, the presence of water vapour can significantly distort HCN analysis in the presence of water vapour and a more sophisticated analytical procedure has to be developed. Thus, the reactions of H3O+(H2O)0,1,2,3 ions with HCN molecules have been studied in the presence of varying concentrations of water vapour, reactions on which SIFT-MS analysis of HCN relies. The results of these experiments have allowed an analytical procedure to be developed which has extended the kinetics database of SIFT-MS, such that HCN can now be quantified in humid air and in exhaled breath.

摘要

基于我们最近观察到假单胞菌在体外会释放氰化氢,我们发现有必要研究该化合物的离子化学,并扩展选定离子流管质谱法(SIFT-MS)的动力学数据库,以便能够准确量化潮湿空气样本(包括呼出气体)中的HCN。由于HCN和H₂O分子的质子亲和力相近,在有水蒸气存在的情况下,水蒸气的存在会显著干扰HCN的分析,因此必须开发一种更复杂的分析程序。因此,我们研究了H₃O⁺(H₂O)₀,₁,₂,₃离子与HCN分子在不同浓度水蒸气存在下的反应,而SIFT-MS对HCN的分析正是基于这些反应。这些实验结果使得我们能够开发出一种分析程序,扩展了SIFT-MS的动力学数据库,从而现在可以在潮湿空气和呼出气体中对HCN进行量化。

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