Electronic cigarettes: product characterisation and design considerations
Top Cited Papers
Open Access
- 14 April 2014
- journal article
- review article
- Published by BMJ in Tobacco Control
- Vol. 23 (suppl 2), ii4-ii10
- https://doi.org/10.1136/tobaccocontrol-2013-051476
Abstract
To review the available evidence regarding electronic cigarette (e-cigarette) product characterisation and design features in order to understand their potential impact on individual users and on public health. Systematic literature searches in 10 reference databases were conducted through October 2013. A total of 14 articles and documents and 16 patents were included in this analysis. Numerous disposable and reusable e-cigarette product options exist, representing wide variation in product configuration and component functionality. Common e-cigarette components include an aerosol generator, a flow sensor, a battery and a nicotine-containing solution storage area. e-cigarettes currently include many interchangeable parts, enabling users to modify the character of the delivered aerosol and, therefore, the product's 'effectiveness' as a nicotine delivery product. Materials in e-cigarettes may include metals, rubber and ceramics. Some materials may be aerosolised and have adverse health effects. Several studies have described significant performance variability across and within e-cigarette brands. Patent applications include novel product features designed to influence aerosol properties and e-cigarette efficiency at delivering nicotine. Although e-cigarettes share a basic design, engineering variations and user modifications result in differences in nicotine delivery and potential product risks. e-cigarette aerosols may include harmful and potentially harmful constituents. Battery explosions and the risks of exposure to the e-liquid (especially for children) are also concerns. Additional research will enhance the current understanding of basic e-cigarette design and operation, aerosol production and processing, and functionality. A standardised e-cigarette testing regime should be developed to allow product comparisons.Keywords
This publication has 13 references indexed in Scilit:
- Metal and Silicate Particles Including Nanoparticles Are Present in Electronic Cigarette Cartomizer Fluid and AerosolPLOS ONE, 2013
- Electronic cigarette aerosol particle size distribution measurementsInhalation Toxicology, 2012
- In Vitro Particle Size Distributions in Electronic and Conventional Cigarette Aerosols Suggest Comparable Deposition PatternsNicotine & Tobacco Research, 2012
- Thermal runaway caused fire and explosion of lithium ion batteryJournal of Power Sources, 2012
- Does e-cigarette consumption cause passive vaping?Indoor Air, 2012
- Electronic nicotine delivery systems: a research agendaTobacco Control, 2011
- Conventional and electronic cigarettes (e-cigarettes) have different smoking characteristicsNicotine & Tobacco Research, 2010
- Unintentional Child Poisonings Through Ingestion of Conventional and Novel Tobacco ProductsPediatrics, 2010
- Electronic cigarettes: Safety concerns and regulatory issuesAmerican Journal of Health-System Pharmacy, 2009
- Tobacco-free electronic cigarettes and cigars deliver nicotine and generate concern: Figure 1Tobacco Control, 2007