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澳大利亚学校中电子烟的化学分析与风味分布

Chemical Analysis and Flavor Distribution of Electronic Cigarettes in Australian Schools.

作者信息

Jenkins Caitlin, Powrie Fraser, Kelso Celine, Morgan Jody

机构信息

Molecular Horizons, University of Wollongong, Wollongong, New South Wales, Australia.

School of Chemistry and Molecular Bioscience, University of Wollongong, Wollongong, New South Wales, Australia.

出版信息

Nicotine Tob Res. 2025 May 22;27(6):997-1005. doi: 10.1093/ntr/ntae262.

Abstract

INTRODUCTION

Adolescent usage of electronic cigarettes has increased globally. Inconsistent, or absent, labeling of nicotine and other ingredients requires chemical analysis to accurately determine the chemical composition of these products.

AIMS AND METHODS

Electronic cigarettes confiscated from public and private high school students (N = 598) were provided for analysis from three regions in New South Wales, Australia. The products were examined for brand, model, and flavor and a subset was further analyzed for chemical composition (n = 410) quantifying nicotine, synthetic cooling agents, flavoring chemicals, and prohibited ingredients by gas chromatography-mass spectrometry (GC-MS).

RESULTS

The majority of samples provided were fruit-flavored disposable e-cigarettes across three main brands (IGET, HQD, and Gunnpod). Nicotine was quantified in 97.3% of disposable samples with an average concentration of 40.0 mg/mL, while one refill e-liquid was found to contain nicotine at a low concentration. Almost all samples contained the coolant WS-23 in relatively high concentrations compared to other flavoring chemicals present. Chemicals prohibited under the TGO110 (Australian e-cigarette product standard) were identified in 3.4% of the samples which were chemically analyzed. This included the presence of ethylene glycol in moderately high concentrations (up to 13.2 mg/mL).

CONCLUSIONS

Australian students' preferences for fruity, disposable e-cigarettes were identified regardless of region with the vast majority containing high concentrations of nicotine. WS-23 was found in most disposable e-cigarettes, potentially to reduce throat irritation from nicotine and other flavoring chemicals. The inhalational safety of the samples is of concern due to health risks associated with detected prohibited compounds, particularly ethylene glycol.

IMPLICATIONS

This is the first study to quantify nicotine, coolants, and flavoring chemicals in e-cigarette products seized from Australian high school students and has significant implications for future policy development. Students appear to be almost exclusively using disposable e-cigarettes with high nicotine concentrations and predominately fruity flavors. WS-23 may potentially be added to disposable e-cigarettes to facilitate the uptake of these products by adolescents unaccustomed to the throat irritation from nicotine and intense flavors. The e-cigarette coils were found to have degraded over time, potentially affecting the composition of the aerosol and leaching of metals.

摘要

引言

全球青少年电子烟的使用量有所增加。尼古丁和其他成分的标签不一致或缺失,需要进行化学分析才能准确确定这些产品的化学成分。

目的和方法

从澳大利亚新南威尔士州的三个地区提供了从公立和私立高中生中没收的电子烟(N = 598)进行分析。检查了产品的品牌、型号和口味,并对一部分产品(n = 410)进一步分析了化学成分,通过气相色谱 - 质谱联用仪(GC - MS)对尼古丁、合成冷却剂、调味化学品和违禁成分进行定量分析。

结果

提供的大多数样品是三个主要品牌(IGET、HQD和Gunnpod)的水果味一次性电子烟。97.3%的一次性样品中检测到尼古丁,平均浓度为40.0毫克/毫升,同时发现一种补充装电子烟液含有低浓度尼古丁。与其他存在的调味化学品相比,几乎所有样品都含有相对高浓度的冷却剂WS - 23。在3.4%经化学分析的样品中鉴定出了TGO110(澳大利亚电子烟产品标准)禁止的化学品。这包括存在中等高浓度(高达13.2毫克/毫升)的乙二醇。

结论

确定了澳大利亚学生对水果味一次性电子烟的偏好,无论地区如何,绝大多数此类电子烟都含有高浓度尼古丁。大多数一次性电子烟中都发现了WS - 23,可能是为了减少尼古丁和其他调味化学品引起的喉咙刺激。由于检测到的违禁化合物,特别是乙二醇带来的健康风险,这些样品的吸入安全性令人担忧。

启示

这是第一项对从澳大利亚高中生那里查获的电子烟产品中的尼古丁、冷却剂和调味化学品进行定量分析的研究,对未来政策制定具有重要意义。学生似乎几乎只使用尼古丁浓度高且主要为水果味的一次性电子烟。WS - 23可能被添加到一次性电子烟中,以方便不习惯尼古丁喉咙刺激和浓烈味道的青少年使用这些产品。发现电子烟线圈随着时间推移会降解,可能会影响气溶胶成分和金属的浸出。

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