Influence of Coil Power Ranges on the E-Liquid Consumption in Vaping Devices

As electronic cigarettes (e-cigarettes) represent a new constantly evolving product category, the systematic analysis of the developed devices and the e-liquid vaporization is challenging. Indeed, understanding how e-cigarettes work and the role of key parameters in the process are major issues. Thi...

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Main Authors: Sébastien Soulet, Marie Duquesne, Jean Toutain, Charly Pairaud, Hélène Lalo
Format: Article
Language:English
Published: MDPI AG 2018-08-01
Series:International Journal of Environmental Research and Public Health
Subjects:
Online Access:http://www.mdpi.com/1660-4601/15/9/1853
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spelling doaj-a4677f9ab69b410c8521fcc8c8fe68a62020-11-25T00:13:18ZengMDPI AGInternational Journal of Environmental Research and Public Health1660-46012018-08-01159185310.3390/ijerph15091853ijerph15091853Influence of Coil Power Ranges on the E-Liquid Consumption in Vaping DevicesSébastien Soulet0Marie Duquesne1Jean Toutain2Charly Pairaud3Hélène Lalo4Laboratoire Français du E-Liquide (LFEL), 218 Avenue du Haut Lévêque, 33600 Pessac, FranceBordeaux INP, CNRS, I2M Bordeaux, Site ENSAM, 16 Avenue Pey Berland, 33600 Pessac, FranceBordeaux INP, CNRS, I2M Bordeaux, Site ENSAM, 16 Avenue Pey Berland, 33600 Pessac, FranceLaboratoire Français du E-Liquide (LFEL), 218 Avenue du Haut Lévêque, 33600 Pessac, FranceLaboratoire Français du E-Liquide (LFEL), 218 Avenue du Haut Lévêque, 33600 Pessac, FranceAs electronic cigarettes (e-cigarettes) represent a new constantly evolving product category, the systematic analysis of the developed devices and the e-liquid vaporization is challenging. Indeed, understanding how e-cigarettes work and the role of key parameters in the process are major issues. This work focuses on an experimental study of how the power supplied by the battery to the atomizer coil influences e-liquid consumption. The reproducibility and the repeatability of e-liquid consumption were investigated over 20 series of 20 puffs for one of the tested atomizers. Then, the reproducibility and the repeatability of the e-liquid consumption was investigated over five series of 20 puffs for each tested atomizer. The wire behavior according to the supplied power could be separated into three regimes: under-heating (insufficient power to generate an aerosol), optimal vaporization characterized by a linear trend (vaporization of the e-liquid proportional to the supplied energy) and over-heating (dry-burn occurs). Using a controllable and repeatable energy supply, the reproducibility of the quantity of vaporized e-liquid was verified for each of the five series of 20 puffs programed for all the atomizers except one. Finally, the influence of the supplied power on the vaporization and the consumption of the e-liquid as well as the optimal power ranges were investigated and discussed. The results showed that atomizers with resistance ranging from 1 Ω to 1.8 Ω are efficient using all the energy supplied by the battery to vaporize the e-liquid and reducing the energy lost in the cotton or in the metal part of atomizer coil.http://www.mdpi.com/1660-4601/15/9/1853electronic cigarettevaping devicesemission generationstandardizationatomizersupplied power
collection DOAJ
language English
format Article
sources DOAJ
author Sébastien Soulet
Marie Duquesne
Jean Toutain
Charly Pairaud
Hélène Lalo
spellingShingle Sébastien Soulet
Marie Duquesne
Jean Toutain
Charly Pairaud
Hélène Lalo
Influence of Coil Power Ranges on the E-Liquid Consumption in Vaping Devices
International Journal of Environmental Research and Public Health
electronic cigarette
vaping devices
emission generation
standardization
atomizer
supplied power
author_facet Sébastien Soulet
Marie Duquesne
Jean Toutain
Charly Pairaud
Hélène Lalo
author_sort Sébastien Soulet
title Influence of Coil Power Ranges on the E-Liquid Consumption in Vaping Devices
title_short Influence of Coil Power Ranges on the E-Liquid Consumption in Vaping Devices
title_full Influence of Coil Power Ranges on the E-Liquid Consumption in Vaping Devices
title_fullStr Influence of Coil Power Ranges on the E-Liquid Consumption in Vaping Devices
title_full_unstemmed Influence of Coil Power Ranges on the E-Liquid Consumption in Vaping Devices
title_sort influence of coil power ranges on the e-liquid consumption in vaping devices
publisher MDPI AG
series International Journal of Environmental Research and Public Health
issn 1660-4601
publishDate 2018-08-01
description As electronic cigarettes (e-cigarettes) represent a new constantly evolving product category, the systematic analysis of the developed devices and the e-liquid vaporization is challenging. Indeed, understanding how e-cigarettes work and the role of key parameters in the process are major issues. This work focuses on an experimental study of how the power supplied by the battery to the atomizer coil influences e-liquid consumption. The reproducibility and the repeatability of e-liquid consumption were investigated over 20 series of 20 puffs for one of the tested atomizers. Then, the reproducibility and the repeatability of the e-liquid consumption was investigated over five series of 20 puffs for each tested atomizer. The wire behavior according to the supplied power could be separated into three regimes: under-heating (insufficient power to generate an aerosol), optimal vaporization characterized by a linear trend (vaporization of the e-liquid proportional to the supplied energy) and over-heating (dry-burn occurs). Using a controllable and repeatable energy supply, the reproducibility of the quantity of vaporized e-liquid was verified for each of the five series of 20 puffs programed for all the atomizers except one. Finally, the influence of the supplied power on the vaporization and the consumption of the e-liquid as well as the optimal power ranges were investigated and discussed. The results showed that atomizers with resistance ranging from 1 Ω to 1.8 Ω are efficient using all the energy supplied by the battery to vaporize the e-liquid and reducing the energy lost in the cotton or in the metal part of atomizer coil.
topic electronic cigarette
vaping devices
emission generation
standardization
atomizer
supplied power
url http://www.mdpi.com/1660-4601/15/9/1853
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