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首页> 外文期刊>ACS Omega >Triacetin Enhances Levels of Acrolein, Formaldehyde Hemiacetals, and Acetaldehyde in Electronic Cigarette Aerosols
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Triacetin Enhances Levels of Acrolein, Formaldehyde Hemiacetals, and Acetaldehyde in Electronic Cigarette Aerosols

机译:三醋精可提高电子烟气溶胶中的丙烯醛,甲醛半缩醛和乙醛水平

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The health effects of inhaled electronic cigarette (e-cigarette) flavoring compounds are largely unknown. Earlier reports of their chemical reactivity have been conflicting, with some claiming, for example, that the degradation of flavoring chemicals in e-cigarettes to aldehydes is statistically insignificant. It is thus important to understand how these molecules react to afford enhanced aerosol products. The purpose of the current study was to investigate the origin of formaldehyde, acrolein, and acetaldehyde in e-cigarettes that contain the popular additive, triacetin (TA). By using 13C labeling and a combination of 1H NMR and 13C NMR, we were able to identify that ester hydrolysis of TA occurs to form acetic acid (HOAc) during aerosolization. The released HOAc acts as a catalyst in the degradation of propylene glycol (PG) and glycerol (GLY), increasing the formation of formaldehyde hemiacetals, acrolein, and acetaldehyde. A solution of 10% TA in 1:1 PG/GLY e-liquid was aerosolized using two different e-cigarettes at two wattages. Each device exhibited a significant increase in aldehyde levels, of up to 185% compared to the aerosol from a 1:1 PG/GLY e-liquid. In addition, the GLY formaldehyde hemiacetal was more predominant within the presence of HOAc, indicating that GLY may be relatively more prone to degradation from protonation.
机译:吸入电子香烟(电子烟)调味剂对健康的影响在很大程度上是未知的。关于它们的化学反应性的早期报道一直存在矛盾,例如,有人声称,电子烟中的调味化学品向醛的降解在统计学上是微不足道的。因此,重要的是要了解这些分子如何反应以提供增强的气溶胶产品。本研究的目的是调查含有流行添加剂三醋精(TA)的电子烟中甲醛,丙烯醛和乙醛的来源。通过使用13C标记以及1H NMR和13C NMR的组合,我们能够确定在雾化过程中发生了TA的酯水解以形成乙酸(HOAc)。释放的HOAc在丙二醇(PG)和甘油(GLY)的降解中充当催化剂,增加了甲醛半缩醛,丙烯醛和乙醛的形成。使用两个瓦特数的两个不同电子烟,将1:1 PG / GLY电子液体中10%TA的溶液雾化。与来自1:1 PG / GLY电子液体的气溶胶相比,每种设备的醛含量均显着提高,最高可达185%。另外,在HOAc的存在下,GLY甲醛半缩醛更为主要,这表明GLY可能相对更容易被质子化降解。

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