Characterization of an Electronic Nicotine Delivery System (ENDS) Aerosol Generation Platform to Determine Exposure Risks

Author:

Zhang Qian1ORCID,Jeon Jennifer1,Goldsmith Travis2,Black Marilyn1,Greenwald Roby3,Wright Christa1

Affiliation:

1. Chemical Insights Research Institute, UL Research Institutes, Marietta, GA 30067, USA

2. Department of Physiology and Pharmacology, West Virginia University/IEStechno, Morgantown, WV 26505, USA

3. School of Public Health, Georgia State University, Atlanta, GA 30303, USA

Abstract

Evaluating vaping parameters that influence electronic nicotine delivery system (ENDS) emission profiles and potentially hazardous exposure levels is essential to protecting human health. We developed an automated multi-channel ENDS aerosol generation system (EAGS) for characterizing size-resolved particle emissions across pod- and mod-type devices using real-time monitoring instruments, an exposure chamber, and vaping parameters including different ventilation rates, device type and age, e-liquid formulation, and atomizer setup. Results show the ENDS device type, e-liquid flavoring, and nicotine content can affect particle emissions. In general, pod-type devices have unimodal particle size distributions and higher number emissions, while mod-type devices have bimodal size distributions and higher mass emissions. For pod-type devices, later puff fractions emit lower aerosols, which is potentially associated with the change of coil resistance and power during ageing. For a mod-type device, an atomizer with a lower resistance coil and higher power generates larger particle emissions than an atomizer with a greater resistance coil and lower power. The unventilated scenario produces higher particle emission factors, except for particle mass emission from pod-type devices. The data provided herein indicate the EAGS can produce realistic and reproducible puff profiles of pod- and mod-type ENDS devices and therefore is a suitable platform for characterizing ENDS-associated exposure risks.

Funder

Chemical Insights Research Institute

UL Research Institutes

Publisher

MDPI AG

Subject

Chemical Health and Safety,Health, Toxicology and Mutagenesis,Toxicology

Reference55 articles.

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2. U.S. Department of Health and Human Services (2016). E-Cigarette Use Among Youth and Young Adults: A Report of the Surgeon General, U.S. Department of Health and Human Services.

3. Effect of Puffing Behavior on Particle Size Distributions and Respiratory Depositions from Pod-Style Electronic Cigarette, or Vaping, Products;Ranpara;Front. Public Health,2021

4. Review of Health Consequences of Electronic Cigarettes and the Outbreak of Electronic Cigarette, or Vaping, Product Use-Associated Lung Injury;Cao;J. Med. Toxicol.,2020

5. Li, Y., Fairman, R.T., Churchill, V., Ashley, D.L., and Popova, L. (2020). Users’ Modifications to Electronic Nicotine Delivery Systems (ENDS): Interviews with ENDS Enthusiasts. Int. J. Environ. Res. Public Health, 17.

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