窦思颖, 张华, 刘琪, 沈海峰, 张媛, 朱怀远, 廖惠云, 姚忠. 基质溶剂校正结合高温离子源GC-MS/MS同时分析烟气中16种多环芳烃[J]. 质谱学报, 2024, 45(4): 567-576. DOI: 10.7538/zpxb.2024.0002
引用本文: 窦思颖, 张华, 刘琪, 沈海峰, 张媛, 朱怀远, 廖惠云, 姚忠. 基质溶剂校正结合高温离子源GC-MS/MS同时分析烟气中16种多环芳烃[J]. 质谱学报, 2024, 45(4): 567-576. DOI: 10.7538/zpxb.2024.0002
DOU Si-ying, ZHANG Hua, LIU Qi, SHEN Hai-feng, ZHANG Yuan, ZHU Huai-yuan, LIAO Hui-yun, YAO Zhong. Simultaneous Analysis of 16 Polycyclic Aromatic Hydrocarbons in Cigarette Smoke Based on Matrix Solvent Correction Combined with High-Temperature Ion Source GC-MS/MS[J]. Journal of Chinese Mass Spectrometry Society, 2024, 45(4): 567-576. DOI: 10.7538/zpxb.2024.0002
Citation: DOU Si-ying, ZHANG Hua, LIU Qi, SHEN Hai-feng, ZHANG Yuan, ZHU Huai-yuan, LIAO Hui-yun, YAO Zhong. Simultaneous Analysis of 16 Polycyclic Aromatic Hydrocarbons in Cigarette Smoke Based on Matrix Solvent Correction Combined with High-Temperature Ion Source GC-MS/MS[J]. Journal of Chinese Mass Spectrometry Society, 2024, 45(4): 567-576. DOI: 10.7538/zpxb.2024.0002

基质溶剂校正结合高温离子源GC-MS/MS同时分析烟气中16种多环芳烃

Simultaneous Analysis of 16 Polycyclic Aromatic Hydrocarbons in Cigarette Smoke Based on Matrix Solvent Correction Combined with High-Temperature Ion Source GC-MS/MS

  • 摘要: 本研究建立了高温离子源气相色谱-三重四极杆串联质谱(GC-MS/MS)法结合基质溶剂校正,使用样品萃取溶液直接进样,同时测定卷烟主流烟气中16种多环芳烃(PAHs)。考察了常温和高温离子源对目标物响应情况的影响,探究基质溶剂制备方法及基质效应对目标物定量结果的影响,分析市售不同圆周卷烟烟气的释放分布情况。结果表明,16种PAHs的定量工作曲线在各自线性范围内的相关系数R2为0.996 4~0.999 8,检出限为0.29~1.48 ng/支,定量限为0.95~4.94 ng/支,在低、中、高3个不同添加水平下的平均回收率为87.71%~123.26%,精密度为1.58%~9.45%。通过分析参比卷烟3R4F,该方法的检测结果与文献报道结果无明显差异。采用该方法检测市售58个品牌卷烟样品中的PAHs,总释放量为742.76~1 505.99 ng/支,并随卷烟焦油量减少而下降。该方法具有前处理简便,准确及重复性好的优点,适用于卷烟主流烟气中痕量PAHs的定量分析。

     

    Abstract: An improved method was developed for the detection of 16 polycyclic aromatic hydrocarbons (PAHs) in mainstream cigarette smoke during combustion. The methodological approach involved matrix matching standard solution preparation, direct injection of the extraction solution, and measurement of standard linearity curves to quantitatively analyze the release of target compounds. Considering the diverse physical and chemical properties as well as distribution patterns of the 16 PAHs in cigarette smoke, the impact of room temperature and high-temperature ion sources on the response of target compounds was investigated. Additionally, the preparation methods of matrix solvents and the matrix effects on the quantitative results of target compounds were also explored. Furthermore, a systematic study was conducted on the smoke release distribution of commercially available cigarettes with different circumferences. The results demonstrated that direct injection of sample extract eliminates the need for sample purification, concentration, and other processing steps employed in current detection methods. This simplifies sample pretreatment procedures while reducing organic solvent usage and consumables consumption. Moreover, it resolves issues related to low operational efficiency when dealing with large quantities of samples. The use of matrix solvent to prepare standard solution effectively reduces the influence of matrix effect, and solves the technical problem of low recovery of target substance in flue gas caused by no purification treatment when using gas chromatography-tandem mass spectrometry (GC-MS/MS) to analyze 16 kinds of PAHs. Under the normal working parameters of the instrument, the electron impact ion source (EI) was used under high temperature to improve the ionization efficiency of the targets in complex matrix and to ensure the accurate analysis of targets with low concentrations. The correlation coefficients (R2) of the calibration curves for 16 PAHs are 0.996 4-0.999 8, the limits of dectection and the limits of quantification are 0.29-1.48, 0.95-4.94 ng/cigarette, respectively. Under different concentration levels, the average recovery is 87.71%-123.26%, and the precision is within 1.58%-9.45%. By analyzing the reference cigarette 3R4F, there is no significant difference between this method and those reported in the literature. The total amount of PAHs released from 58 brands of cigarette samples are 742.76-1 505.99 ng/cigarette. At the same time, with the decrease of tar content in cigarette, the release of PAHs will be reduced accordingly. This method is simple, practical, stable, and accurate, providing more technical means for the detection of trace PAHs in cigarette smoke.

     

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