Centre for Analytical Research and Technologies (CART), University of Liege, Belgium.
Group Research and Development, British American Tobacco, Southampton, UK.
J Chromatogr A. 2019 Oct 11;1603:327-337. doi: 10.1016/j.chroma.2019.06.057. Epub 2019 Jun 27.
An analytical methodology based on thermal desorption and comprehensive two-dimensional gas chromatography with dual time-of-flight mass spectrometry and flame ionization detection (TD-GC × GC-TOFMS/FID) has been developed for non-target analysis of volatile organic compounds (VOCs). The technique was optimised for the measurement of the VOC content of the particulate phase (PP) fraction of aerosols produced by a tobacco heating product (THP1.0) and 3R4F mainstream tobacco smoke (MTS). The method involves sampling the PP fraction on quartz wool packed in a sorbent tube directly connected to machine-puffing, followed by a dilution through a TD recollection procedure over Tenax/Sulficarb sorbent before TD-GC × GC-TOFMS/FID analysis. The comparison of the VOC content of the PP fraction of aerosols produced by THP1.0 and MTS highlighted the compositional difference between tobacco combustion (592 peaks) and tobacco heating process (160 peaks). Mass spectrometric signals were used for qualitative analyses based on linear retention indices, mass spectral matches, and GC × GC structured chromatograms, which collectively identified up to 90% of analytes detected in PP samples. FID signals were used for semi-quantitative analyses based on a chemical class external calibration method. The global chemical composition of PP samples showed that hydrocarbons, oxygenated, and nitrogen-containing compounds were fewer in number and much less abundant in THP1.0 PP. Overall, 93 compounds were common to the two sample types. Excepted for a few highly volatile compounds (mainly furan family) as well as glycerine and its acetate, analyte concentrations were higher in MTS PP.
已开发出一种基于热解吸和二维气相色谱与双飞行时间质谱和火焰离子化检测联用(TD-GC×GC-TOFMS/FID)的分析方法,用于非靶向分析挥发性有机化合物(VOCs)。该技术针对测量由加热烟草产品(THP1.0)和 3R4F 主流烟气(MTS)产生的气溶胶颗粒相(PP)部分的 VOC 含量进行了优化。该方法涉及在装有石英棉的吸附管中直接对 PP 部分进行采样,该石英棉填充在吸附管中,直接与机器抽吸连接,然后通过 TD 收集程序在 Tenax/Sulficarb 吸附剂上进行稀释,然后进行 TD-GC×GC-TOFMS/FID 分析。对 THP1.0 和 MTS 气溶胶颗粒相的 VOC 含量进行比较,突出了烟草燃烧(592 个峰)和烟草加热过程(160 个峰)之间的组成差异。质谱信号用于基于线性保留指数、质谱匹配和 GC×GC 结构色谱图的定性分析,这些方法共同鉴定了在 PP 样品中检测到的多达 90%的分析物。FID 信号用于基于化学类别外标校准方法的半定量分析。PP 样品的总体化学成分表明,烃类、含氧和含氮化合物的数量较少,在 THP1.0 PP 中含量较少。总体而言,有 93 种化合物在两种样品类型中都存在。除了少数挥发性较高的化合物(主要是呋喃家族)以及甘油及其醋酸盐外,MTS PP 中的分析物浓度更高。