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Vaporization characteristics and aerosol optical properties of electronic cigarettes

机译:电子香烟的汽化特性和气溶胶光学性能

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The aerosols generated from electronic cigarettes have a significant impact on the human respiratory system. Understanding the vaporization characteristics and aerosol optical properties of electronic cigarettes is important for assessing human exposure to aerosols. An experimental platform was designed and built to simulate the atomization process of electronic cigarette and detect the laser transmissivity of aerosols. The optical properties of single particles and polydispersed particle system for aerosols in the visible wavelength ranges of 400-780 nm were analyzed based on Mie theory. The results show that a higher heating power supplied by coil results in a larger average vaporization rate of e-liquid. Meanwhile, the steady-state transmissivity of the laser beam for aerosols reduces as the heating power increases. Under the same heating power and puffing topography, the total particulate mass (TPM) of aerosols generated by the e-liquid composed of higher vegetable glycerin (VG) content decreases. The scattering efficiency factor of aerosol particle of electronic cigarette increases with an increase in particle size. The volume scattering coefficients of a polydispersed particle system of aerosols decrease as the incident visible wavelengths increase. A higher VG content in e-liquid results in decreased TPM and particle number concentration of aerosols and increased the volume scattering coefficient in the visible wavelength range. It can explain an interesting phenomenon that a lower TPM and a better visual effect brought by the aerosols generated by the e-liquid with a higher VG content could be observed concurrently. The mass indexes (e.g., TPM, average vaporization rate, average mass concentration) and optical indexes (e.g., volume scattering coefficient, laser transmissivity) are suggested to be used for the comprehensive evaluation of relative amounts of aerosols. The results have potential significances for the objective and quantitative assessments of aerosols generated from electronic cigarettes. (C) 2021 Elsevier Ltd. All rights reserved.
机译:电子烟产生的气溶胶对人类呼吸系统产生重大影响。了解电子烟的汽化特性和气溶胶光学性质对于评估人类暴露于气溶胶​​是重要的。设计并建造了一个实验平台,以模拟电子烟的雾化过程,并检测气溶胶的激光透射率。基于MIE理论,分析了400-780nm的可见波长范围内的单颗粒的光学性质和用于气溶胶的多分散颗粒系统。结果表明,由线圈提供的更高的加热功率导致E-液体的平均平均汽化速率。同时,随着加热功率的增加,气溶胶的激光束的稳态透射率降低。在相同的加热功率和膨化形貌下,由由较高植物甘油(Vg)含量组成的E-液体产生的气溶胶的总颗粒质量(TPM)降低。电子烟雾气溶胶粒子的散射效率随粒径的增加而增加。随着入射可见波长的增加,气溶胶的多分散颗粒系统的体积散射系数降低。 E-液体中的较高Vg含量导致雾化的TPM和粒子数浓度降低,并且增加了可见波长范围内的体积散射系数。它可以解释一种有趣的现象,即由E-液体产生的气溶胶带来的较低的TPM和更好的视觉效果可以同时观察到具有较高的Vg含量的气溶胶。建议使用质量指数(例如,TPM,平均蒸发速率,平均质量浓度,激光透射率激光透射率)用于综合评估气溶胶的相对量。结果对电子烟产生的气溶胶的客观和定量评估具有潜在的重要意义。 (c)2021 elestvier有限公司保留所有权利。

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