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用于主流烟草烟雾分析的在线实时软光子电离飞行时间质谱仪的评估

Evaluation of an online, real-time, soft-photon ionisation time-of-flight mass spectrometer for mainstream tobacco smoke analysis.

作者信息

Hawke Jenni, Errington Graham, von Frowein Matthias Bente

机构信息

1British American Tobacco, Group R&D Centre, Southampton, SO15 8TL UK.

Photonion GmbH, Hagenower Str. 73, 19061 Schwerin, Germany.

出版信息

BMC Chem. 2019 Dec 21;13(1):135. doi: 10.1186/s13065-019-0654-z. eCollection 2019 Dec.

Abstract

Mainstream tobacco smoke is a complex and dynamic aerosol, consisting of particulate and vapour phases. Most approaches to determine mainstream smoke toxicant yields are based on offline techniques that limit the opportunity to observe in real time the processes leading to smoke formation. The recent development of online real-time analytical methods offers many advantages over traditional techniques. Here we report the LM2X-TOFMS (Borgwaldt GmbH, Germany), a commercial instrument that couples a linear smoking engine with a time-of-flight mass spectrometer for real-time per-puff measurement of the vapour phase of mainstream cigarette smoke. Total cigarette and puff-by-puff (μg/puff) yields were evaluated, in line with International Council of Harmonisation recommendations, for seven smoke toxicants: acetaldehyde, acetone, 1,3-butadiene, 2-butanone, benzene, isoprene and toluene. Measurements were unaffected by small system changes including replacing the sampling capillary or time of day (all > 0.05), indicating that the LM2X-TOFMS is rugged. Control charts showed that the system has good stability and control. Analysis of certified gas mixtures of six concentrations of each analyte showed a highly linear response for all seven analytes (R = 0.9922-0.9999). In terms of repeatability, the lowest variation was observed for isoprene with a coefficient of variation (CV) of < 6% for each concentration. Acetaldehyde showed the highest CV, increasing from 8.0 to 26.6% with decreasing gas concentration. Accuracy was analysed in terms of relative error, which was ± 16% for six of the analytes; however, the relative error for acetaldehyde was (- 36.2%), probably due to its low ionisation efficiency under the instrument's vacuum ultraviolet lamp. Three cigarette products (reference and commercial) with different ISO tar levels were analysed by the LM2X-TOFMS puff by puff under ISO regulatory smoking conditions. The relative standard deviation based on average yield per cigarette for each analyte in each product (summed puffs per product, n = 30) ranged from ≤ 9.3 to ≤ 16.2%. Measurements were consistent with published data per cigarette. In conclusion, the LM2X-TOFMS is suitable for determining the vapour-phase yields of seven analytes on a real-time, puff-by-puff basis, and can be utilised for both fast screening (qualitative) and quantitative measurements of mainstream cigarette smoke.

摘要

主流烟草烟雾是一种复杂的动态气溶胶,由颗粒相和气相组成。大多数测定主流烟雾毒物产率的方法基于离线技术,这限制了实时观察烟雾形成过程的机会。在线实时分析方法的最新发展相比传统技术具有许多优势。在此,我们报告了LM2X-TOFMS(德国博格瓦特有限公司),这是一种商业仪器,它将线性吸烟机与飞行时间质谱仪相结合,用于实时逐口测量主流香烟烟雾的气相。按照国际协调理事会的建议,对七种烟雾毒物:乙醛、丙酮、1,3-丁二烯、2-丁酮、苯、异戊二烯和甲苯的卷烟总产率和逐口产率(μg/口)进行了评估。测量不受包括更换采样毛细管或一天中的时间等小系统变化的影响(所有变化均>0.05),表明LM2X-TOFMS性能稳定。控制图显示该系统具有良好的稳定性和可控性。对每种分析物六种浓度的标准气体混合物进行分析,结果表明所有七种分析物均呈现高度线性响应(R = 0.9922 - 0.9999)。就重复性而言,异戊二烯的变化最小,每种浓度下的变异系数(CV)<6%。乙醛的CV最高,随着气体浓度降低,从8.0%增加到26.6%。从相对误差方面分析了准确性,六种分析物的相对误差为±16%;然而,乙醛的相对误差为(-36.2%),这可能是由于其在仪器真空紫外灯下的电离效率较低。在ISO监管吸烟条件下,使用LM2X-TOFMS对三种不同ISO焦油水平的卷烟产品(参比和商业产品)逐口进行了分析。每种产品中每种分析物基于每支卷烟平均产率的相对标准偏差(每种产品的总吸口数,n = 30)范围为≤9.3%至≤16.2%。测量结果与每支卷烟的已发表数据一致。总之,LM2X-TOFMS适用于实时逐口测定七种分析物的气相产率,可用于主流香烟烟雾的快速筛选(定性)和定量测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac02/6925416/06bfce0be329/13065_2019_654_Fig1_HTML.jpg

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