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Influence of battery power setting on carbonyl emissions from electronic cigarettes

机译:电池电力环境对电子烟区羰基排放的影响

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Introduction:Although e-cigarettes share common features such as power units, heating elements and e-liquids, the variability in design and possibility for customization represent potential risks for consumers. A main health concern is the exposure to carbonyl compounds, which are formed from the main components of e-liquids, propylene glycol and glycerol, through thermal decomposition. Levels of carbonyl emissions in e-cigarette aerosols depend, amongst others, on the power supplied to the coil. Thus, e-cigarettes with adjustable power outputs might lead to high exposures to carbonyls if the users increase the power output excessively. The aim of this work was to elucidate the generation of carbonyls in relation to undue battery power setting.Material and Methods:Carbonyl emissions were generated by two modular e-cigarettes equipped with two atomizers containing coils of different resistance following the ISO 20768:2018 method. The battery power output was increased from the lower wattage level to above the power range recommended by the producer. Carbonyls were trapped by a 2,4-dinitrophenylhydrazine (DNPH) solution and analysed by LC-MS/MS.Results:The amount of carbonyl emissions increased with increasing power setting. An exponential incline was observed when the applied power level exceeded the recommended power range. Exceeding the recommended power range by just 5 watts resulted in up to twenty times the amount of carbonyls emitted at the recommended upper power level. Generation of acetaldehyde and acrolein next to other carbonyls was prominent at high power outputs.Conclusions:E-cigarettes with customisable power setting might generate high amounts of carbonyls if the battery power output is set by the consumer to levels above the recommended range. This represents a high risk of exposure to carbonyls and thus should be avoided by integrating safety features in e-cigarette devices to limit the possible power settings to the range specified by the manufacturer.
机译:介绍:虽然电子卷烟分享了电力单元,加热元件和电子液体等共同的功能,但定制的设计和可能性的可变性代表了消费者的潜在风险。主要的健康问题是暴露于羰基化合物,其通过热分解由E-液体,丙二醇和甘油的主要成分形成。电子卷烟气溶胶中的羰基排放水平在其他方面取决于提供给线圈的电力。因此,如果用户过度增加功率输出,则具有可调节功率输出的电子卷烟可能导致羰基的高曝光。这项工作的目的是阐明与过多的电池电力设置有关的羰基的产生。通过两个模块化电子卷烟产生羰基排放,其配备有两个雾化器,其含有不同抗性的ISO 20768:2018方法。电池电量输出从生产者推荐的功率范围的较低的瓦数水平增加。羰基由2,4-二硝基苯基肼(DNPH)溶液捕获并通过LC-MS / MS进行分析:羰基排放量随着功率设置的增加而增加。当施加的功率水平超过推荐的功率范围时,观察到指数倾斜。超过推荐的功率范围仅需5瓦,导致推荐的上功率水平发出的羰基量高达二十倍。在其他羰基旁边的丙烯醛和丙烯醛的产生在高功率输出中突出。结论:如果使用的电池电量输出由消费者设定为推荐范围以上的级别,则可以产生高量的羰基。这代表了暴露于羰基的高风险,因此应该通过将电子烟装置中的安全性集成到制造商指定的范围内来避免,因此应避免。

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