Long Gerald A
Lorillard Tobacco Company, P.O. Box 21688, Greensboro, NC 27420, USA.
Int J Environ Res Public Health. 2014 Oct 27;11(11):11177-91. doi: 10.3390/ijerph111111177.
Exhaled aerosols were collected following the use of two leading U.S. commercial electronic cigarettes (e-cigarettes) and a conventional cigarette by human subjects and analyzed for phenolics, carbonyls, water, glycerin and nicotine using a vacuum-assisted filter pad capture system. Exhaled breath blanks were determined for each subject prior to each product use and aerosol collection session. Distribution and mass balance of exhaled e-cigarette aerosol composition was greater than 99.9% water and glycerin, and a small amount (<0.06%) of nicotine. Total phenolic content in exhaled e-cigarette aerosol was not distinguishable from exhaled breath blanks, while total phenolics in exhaled cigarette smoke were significantly greater than in exhaled e-cigarette aerosol and exhaled breaths, averaging 66 µg/session (range 36 to 117 µg/session). The total carbonyls in exhaled e-cigarette aerosols were also not distinguishable from exhaled breaths or room air blanks. Total carbonyls in exhaled cigarette smoke was significantly greater than in exhaled e-cigarette aerosols, exhaled breath and room air blanks, averaging 242 µg/session (range 136 to 352 µg/session). These results indicate that exhaled e-cigarette aerosol does not increase bystander exposure for phenolics and carbonyls above the levels observed in exhaled breaths of air.
美国两种主流商业电子烟和一支传统香烟被人体受试者使用后,收集呼出的气溶胶,并使用真空辅助滤垫捕获系统分析其中的酚类、羰基化合物、水、甘油和尼古丁。在每次使用产品和气溶胶收集之前,为每个受试者测定呼出的呼吸空白。呼出的电子烟气溶胶成分中,水和甘油的分布及质量平衡大于99.9%,还有少量(<0.06%)尼古丁。呼出的电子烟气溶胶中的总酚含量与呼出的呼吸空白无显著差异,而呼出的香烟烟雾中的总酚含量明显高于呼出的电子烟气溶胶和呼出的呼吸,平均为66微克/次(范围为36至117微克/次)。呼出的电子烟气溶胶中的总羰基化合物也与呼出的呼吸或室内空气空白无显著差异。呼出的香烟烟雾中的总羰基化合物明显高于呼出的电子烟气溶胶、呼出的呼吸和室内空气空白,平均为242微克/次(范围为136至352微克/次)。这些结果表明,呼出的电子烟气溶胶不会使旁观者接触到的酚类和羰基化合物超过在呼出的空气中所观察到的水平。