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电子香烟在颗粒相和气相中排放的气溶胶液滴尺寸分布和空气中尼古丁分配。

Aerosol droplet-size distribution and airborne nicotine portioning in particle and gas phases emitted by electronic cigarettes.

机构信息

Ingesciences, 1 Chemin des Arestieux, 33610, Cestas, France.

Mines Saint-Etienne, Univ Lyon, Univ Jean Monnet, INSERM, U1059 Sainbiose, Centre CIS, 42023, Saint-Etienne, France.

出版信息

Sci Rep. 2020 Dec 10;10(1):21707. doi: 10.1038/s41598-020-78749-6.

Abstract

The reliable characterization of particle size distribution and nicotine delivery emitted by electronic cigarettes (ECs) is a critical issue in their design. Indeed, a better understanding of how nicotine is delivered as an aerosol with an appropriate aerodynamic size is a necessary step toward obtaining a well-designed nicotine transfer from the respiratory tract to the bloodstream to better satisfy craving and improve smoking cessation rates. To study these two factors, recent models of EC devices and a dedicated vaping machine were used to generate aerosols under various experimental conditions, including varying the EC power level using two different types of atomizers. The aerodynamic particle sizing of the resulting aerosol was performed using a cascade impactor. The nicotine concentration in the refill liquid and the aerosol droplet was quantified by liquid chromatography coupled with a photodiode array. The vaporization process and the physical and chemical properties of the EC aerosol were very similar at 15 watts (W) and 25 W using the low-power atomizer but quite distinct at 50 W using the high-power atomizer, as follows: (1) the mass median aerodynamic diameters ranged from 1.06 to 1.19 µm (µm) for low power and from 2.33 to 2.46 µm for high power; (2) the nicotine concentrations of aerosol droplets were approximately 11 mg per milliliter (mg/mL) for low power and 17 mg/mL for high power; and (3) the aerosol droplet particle phase of the total nicotine mass emitted by EC was 60% for low power and 95% for high power. The results indicate that varying the correlated factors (1) the power level and (2) the design of atomizer (including the type of coil and the value of resistance used) affects the particle-size distribution and the airborne nicotine portioning between the particle phase and the gas phase in equilibrium with the airborne droplets.

摘要

可靠地表征电子烟(EC)所排放的颗粒尺寸分布和尼古丁输送是其设计中的一个关键问题。事实上,更好地了解尼古丁作为气溶胶输送的方式,以及适当的空气动力学尺寸,是从呼吸道向血液中输送尼古丁的良好设计的必要步骤,以更好地满足渴望并提高戒烟率。为了研究这两个因素,最近的 EC 设备模型和专用蒸气机被用于在各种实验条件下产生气溶胶,包括使用两种不同类型的雾化器改变 EC 功率水平。使用级联撞击器对生成气溶胶的空气动力学粒径进行了测量。通过液相色谱法与光电二极管阵列相结合,对补充液和气溶胶液滴中的尼古丁浓度进行了定量分析。在使用低功率雾化器时,在 15 瓦(W)和 25 W 下,蒸气化过程和 EC 气溶胶的物理和化学性质非常相似,但在使用高功率雾化器时则截然不同,具体表现为:(1)质量中值空气动力学直径在低功率下范围为 1.06 至 1.19 µm,在高功率下范围为 2.33 至 2.46 µm;(2)气溶胶液滴中的尼古丁浓度在低功率下约为 11 mg/mL,在高功率下约为 17 mg/mL;(3)EC 排放的总尼古丁质量中气溶胶液滴颗粒相为 60%,在高功率下为 95%。结果表明,改变相关因素(1)功率水平和(2)雾化器设计(包括线圈类型和使用的电阻值)会影响颗粒尺寸分布以及平衡与空气传播液滴的颗粒相与气相之间的空气中尼古丁分配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5ac/7728817/640a808f206c/41598_2020_78749_Fig1_HTML.jpg

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