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首页> 外文期刊>ACS Omega >E-Cigarette Airflow Rate Modulates Toxicant Profiles and Can Lead to Concerning Levels of Solvent Consumption
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E-Cigarette Airflow Rate Modulates Toxicant Profiles and Can Lead to Concerning Levels of Solvent Consumption

机译:电子烟的气流速率可调节有毒物质的分布,并可能导致有关溶剂消耗量的问题

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Electronic cigarettes enabling enhanced airflow have grown in popularity in recent years. The objective of this study is to show that flow rates modulate the levels of specific aerosol toxicants produced in electronic cigarettes. Flow rates used in various laboratory investigations involving e-cigarettes have varied widely to date, and can thus promote interlaboratory variability in aerosol product profiles. The thermal decomposition of hydroxyacetone and glycolaldehyde is less favorable at lower temperatures, supporting the observations of these products at higher flow rates/lower heating coil temperatures. Higher temperatures promote the formation of acetaldehyde from hydroxyacetone and formaldehyde from both hydroxyacetone and glycolaldehyde. A separate finding is that greater airflow can also expose users to concerning levels of e-liquid solvents. Under the modest conditions studied, propylene glycol aerosol levels are found at above the acceptable inhalation levels defined by NASA, and in range of the generally recognized as safe levels for daily ingestion.
机译:近年来,能够增强气流的电子烟日益普及。这项研究的目的是表明流速可以调节电子烟中产生的特定气雾毒物的水平。迄今为止,在涉及电子烟的各种实验室研究中使用的流速变化很大,因此可以促进实验室间气雾剂产品特性的变化。羟丙酮和乙醇醛在较低温度下的热分解效果较差,这支持了在较高流速/较低加热线圈温度下对这些产品的观察。较高的温度促进了由羟丙酮形成的乙醛和由羟丙酮和乙醇醛形成的甲醛。另一个发现是,更大的气流还会使用户接触到令人关注的电子液体溶剂。在研究的适度条件下,发现丙二醇气雾剂含量高于NASA定义的可接受吸入水平,并且处于公认的每日摄入安全水平范围内。

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