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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Quantification of nicotine and major solvents in retail electronic cigarette fluids and vaped aerosols
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Quantification of nicotine and major solvents in retail electronic cigarette fluids and vaped aerosols

机译:零售电子卷烟液中尼古丁和主要溶剂的定量和蒸汽醇

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摘要

The main ingredients used in e-liquid formulations (propylene glycol (PG), vegetable glycerol (VG), and nicotine (Nic)) in a total of 16 retail e-liquids (half containing nicotine)) were analyzed by an analytical method developed recently by our research group. The measured nicotine concentrations in e-liquids varied in a range of 5.7 to 14.7 mg g(-1) and differed up to 9.0% from the declared label concentrations (two tailed P = 0.5424 at a 0.05 confidence level). The concentrations of Nic and PG in vaped aerosol samples were lower (by an average of 12.7% and 17.4%, respectively) than those in e-liquid samples, while the opposite was true for VG (1.95% higher on average). The composition (w/w) of 16 retail e-liquids varied: 82.6 to 94.9% PG + VG (n = 16), 0.68 to 1.63% nicotine (n = 8), and 5.1 to 16.2% unidentified compounds (water, flavors, etc., n = 16). For the corresponding vaped aerosols, the results were: 75.4 to 92.1% PG + VG (n = 16), 0.57 to 1.47% nicotine (n = 8), and 7.86 to 24.0% unidentified compounds (water, flavors, etc., n = 16). The relative proportion of unidentified compounds in vaped aerosols was two times higher than those in e-liquids. The mean nicotine vaping emission factor (39.6 mu g puff(-1)) was about two times lower than that of a Kentucky 2R4F reference cigarette (75 mu g puff(-1)). The measured e-cigarette vaping emission factors varied in a range of 22.5-61.5 mu g Nic puff(-1) (n = 8), 1.04-2.45 mg PG puff(-1) (n = 16), and 1.35-2.09 mg VG puff(-1) (n = 16).
机译:通过开发的分析方法分析了总共16种零售E-液体(含有尼古丁)的E-液体制剂(丙二醇(PG),植物甘油(Vg)和尼古丁(NIC)中的主要成分进行分析最近由我们的研究小组。在E-液体中的测量尼古丁浓度在5.7-14.7mgg(-1)的范围内,并且从声明的标记浓度(两个尾部P = 0.5424处为0.05置信水平)不同的含量高达9.0%。 VAPED气溶胶样品中NIC和PG的浓度低于E-液体样品的较低(平均分别为12.7%和17.4%),而VG的相反是正确的(平均较高1.95%)。 16次零件E-液体的组合物(w / w)变化:82.6至94.9%pg + Vg(n = 16),尼古丁(n = 8),5.1-16.2%的未识别化合物(水,香料等等,n = 16)。对于相应的蒸汽溶雾,结果为:75.4至92.1%pg + Vg(n = 16),尼古丁(n = 8),7.86至24.0%的未识别化合物(水,味道等,n = 16)。未鉴定化合物在蒸汽气溶胶中的相对比例比E-液体中的相对比例高两倍。平均尼古丁蒸发排放因子(39.6μg(-1))比肯塔基2R4F参考香烟(75μg(-1))低约两次。测得的电子烟蒸汽排放因子在22.5-61.5μg(-1)(n = 8),1.04-2.45mg pg puff(-1)(n = 16)和1.35-2.09 mg vg puff(-1)(n = 16)。

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