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Influence of the E-Cigarette Emission Profileby the Ratio of Glycerol to Propylene Glycol in E-Liquid Composition

机译:电子烟排放状况的影响液成分中甘油与丙二醇的比值

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摘要

The use of electronic cigarettes (E-cig) is popular because of the perception that they are less addictive and safer compared to the traditional cigarettes. Nevertheless, there are still harmful effects associated with chemicals emitted from E-cig. Identifying the sources of the emitted compounds can be challenging because of the differences in the design of E-cig devices and the variability in the composition of E-cig liquids used in these devices. In this study, the emission profiles from impurity-free E-liquids containing only propylene glycol and glycerol in various percentage ratios along with two commercially available E-liquids were evaluated using gas chromatography–mass spectrometry (GC–MS). This study approach allows the elucidation of the transformation pathways of the major emitted compounds without the confounding effects of existing impurities or flavor ingredients added to E-liquids. Analysis of the vapor phases of E-cig emissions detected toxicants such as acetaldehyde, acrolein, benzaldehyde, as well as benzene, toluene, ethylbenzene,and xylene (BTEX) compounds. The amount of glycerol in the E-liquidshas a major effect on the concentration of these hazardous compoundsemitted because the concentration of these chemicals increased withincreasing glycerol percentage in the E-liquid. Acetaldehyde and acroleinincreased by 175-fold and 28-fold, respectively, when the glycerolcomposition was increased from 0 to 80%. Benzaldehyde, naphthalene,diphenyl ether, and glycerol along with menthol and nicotine thatwere present in the commercial E-liquids were also detected in theaerosol condensates. The cascade impactor data on the distributionof the nicotine and menthol in different size fractions from >2.5to <2.5 μm allow the estimates of the extent of toxicantdeposition in different parts of the pulmonary system including theoropharynx region, the trachea as well as inside the alveoli and bronchioles.In summary, users of E-cig are exposed to harmful chemicals even ifthe E-liquids contain only propylene glycol and glycerol without flavorings,nicotine, or impurities. Furthermore, this study shows that E-liquidscontaining higher percentages of glycerol will produce higher levelsof toxicants compared to E-liquids with similar percentages of propyleneglycol. This finding has important implications to E-cigarette vendorsand manufacturers, consumers, and regulatory agencies.
机译:电子烟(E-cig)的使用很流行,因为人们认为与传统香烟相比,电子烟不易上瘾,更安全。尽管如此,从电子烟中散发出的化学物质仍会产生有害影响。由于电子烟设备的设计差异以及这些设备中使用的电子烟液体成分的差异,因此确定排放化合物的来源可能具有挑战性。在这项研究中,使用气相色谱-质谱法(GC-MS)对仅含丙二醇和甘油的不同百分比的无杂质E液体以及两种市售E液体的排放曲线进行了评估。该研究方法可阐明主要排放化合物的转化途径,而不会将现有杂质或添加到电子液体中的风味成分的混杂影响混为一谈。对电子烟排放的气相进行分析,可检测出有毒物质,例如乙醛,丙烯醛,苯甲醛以及苯,甲苯,乙苯,和二甲苯(BTEX)化合物。电子液体中甘油的量对这些有害化合物的浓度有重大影响排放是因为这些化学物质的浓度随着在电子液体中增加甘油的百分比。乙醛和丙烯醛当甘油增加分别为175倍和28倍时组成从0增加到80%。苯甲醛,萘,二苯醚,甘油以及薄荷醇和尼古丁在商业电子液体中也存在气溶胶冷凝物。级联影响数据分布尼古丁和薄荷醇的不同大小分数(> 2.5)小于<2.5μm可以估算毒物的程度沉积在肺系统的不同部位,包括口咽区域,气管以及肺泡和细支气管内部。总之,电子烟的使用者即使暴露在有害化学物质中,电子液体仅包含丙二醇和甘油而没有调味剂,尼古丁或杂质。此外,这项研究表明,电子液体含有更高百分比的甘油会产生更高的水平与具有相似百分比的丙烯的电子液体相比,有毒物质的数量乙二醇。这一发现对电子烟供应商具有重要意义以及制造商,消费者和监管机构。

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