Center of Technology, China Tobacco Anhui Industrial Co, Ltd, Hefei, Anhui 230088, P. R. China.
National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei, Anhui 230029, P. R. China.
Anal Chem. 2021 Apr 13;93(14):5718-5726. doi: 10.1021/acs.analchem.0c04781. Epub 2021 Apr 2.
Direct analysis of chemical components in fresh cigarette smoke in real time is a challenging task. In this work, by using a novel continuous cigarette-pushing and smoke-introducing setup combined with synchrotron radiation photoionization mass spectrometry (SR-PIMS), the photoionization mass spectra of fresh gaseous cigarette sidestream smoke (SSS) from the combustion of solid tobacco could be recorded in real time, and the photoionization efficiency (PIE) curves of each mass peak could be obtained for the first time. Hence, lots of well-known chemical components and even isomers could be identified by their discriminated onsets or PIE curve simulation. Moreover, diimine, 2-azirine, and sulfur monoxide, which have never been reported in cigarette smoke, were observed in cigarette SSS, and even two intermediates, ethenol and propen-2-ol, anticipated to exist were actually observed and distinguished. To increase the qualification accuracy, a new simulation method based on multiple linear regression (MLR) was developed and applied for the PIE curve simulation, where qualification mistakes caused by subjective judgements could be eliminated as far as possible.
实时直接分析新鲜香烟烟雾中的化学成分是一项具有挑战性的任务。在这项工作中,通过使用新型连续推烟和引烟装置与同步辐射光致电离质谱(SR-PIMS)相结合,首次实时记录了固体烟草燃烧产生的新鲜侧流烟(SSS)的光致电离质谱,并首次获得了每个质量峰的光致电离效率(PIE)曲线。因此,通过其区分起始或 PIE 曲线模拟,可以识别出许多知名的化学物质,甚至是异构体。此外,在香烟 SSS 中观察到了二亚胺、2-氮丙啶和一氧化硫,这些物质以前从未在香烟烟雾中报道过,甚至观察到并区分了两种预期存在的中间体,乙烯醇和丙烯-2-醇。为了提高定性准确性,开发并应用了一种基于多元线性回归(MLR)的新模拟方法来模拟 PIE 曲线,从而尽可能消除了由主观判断引起的定性错误。