Literature DB >> 26743740

Effect of variable power levels on the yield of total aerosol mass and formation of aldehydes in e-cigarette aerosols.

I G Gillman1, K A Kistler2, E W Stewart3, A R Paolantonio3.   

Abstract

The study objective was to determine the effect of variable power applied to the atomizer of refillable tank based e-cigarette (EC) devices. Five different devices were evaluated, each at four power levels. Aerosol yield results are reported for each set of 25 EC puffs, as mass/puff, and normalized for the power applied to the coil, in mass/watt. The range of aerosol produced on a per puff basis ranged from 1.5 to 28 mg, and, normalized for power applied to the coil, ranged from 0.27 to 1.1 mg/watt. Aerosol samples were also analyzed for the production of formaldehyde, acetaldehyde, and acrolein, as DNPH derivatives, at each power level. When reported on mass basis, three of the devices showed an increase in total aldehyde yield with increasing power applied to the coil, while two of the devices showed the opposite trend. The mass of formaldehyde, acetaldehyde, and acrolein produced per gram of total aerosol produced ranged from 0.01 to 7.3 mg/g, 0.006 to 5.8 mg/g, and <0.003 to 0.78 mg/g, respectively. These results were used to estimate daily exposure to formaldehyde, acetaldehyde, and acrolein from EC aerosols from specific devices, and were compared to estimated exposure from consumption of cigarettes, to occupational and workplace limits, and to previously reported results from other researchers.
Copyright © 2015 The Authors. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  2,4-DNPH derivatives of aldehydes; Acetaldehyde; Acrolein; Chemical composition; Electronic nicotine delivery systems; Electronic-cigarettes; Formaldehyde; Liquid chromatography; Toxicology

Mesh:

Substances:

Year:  2015        PMID: 26743740     DOI: 10.1016/j.yrtph.2015.12.019

Source DB:  PubMed          Journal:  Regul Toxicol Pharmacol        ISSN: 0273-2300            Impact factor:   3.271


  79 in total

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3.  Generation of Electronic Cigarette Aerosol by a Third-Generation Machine-Vaping Device: Application to Toxicological Studies.

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4.  Electronic cigarette chemicals transfer from a vape shop to a nearby business in a multiple-tenant retail building.

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Review 5.  [E-Cigarettes - Operating Principle, Ingredients, and Associated Acute Lung Injury].

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Journal:  Pneumologie       Date:  2020-02-03

6.  Assessing electronic cigarette effects and regulatory impact: Challenges with user self-reported device power.

Authors:  Alyssa K Rudy; Adam M Leventhal; Nicholas I Goldenson; Thomas Eissenberg
Journal:  Drug Alcohol Depend       Date:  2017-08-18       Impact factor: 4.492

7.  Indoor Air Quality and Passive E-cigarette Aerosol Exposures in Vape-Shops.

Authors:  Yeongkwon Son; Daniel P Giovenco; Cristine Delnevo; Andrey Khlystov; Vera Samburova; Qingyu Meng
Journal:  Nicotine Tob Res       Date:  2020-10-08       Impact factor: 4.244

Review 8.  E-Cigarette Chemistry and Analytical Detection.

Authors:  Robert M Strongin
Journal:  Annu Rev Anal Chem (Palo Alto Calif)       Date:  2019-03-08       Impact factor: 10.745

Review 9.  Electronic cigarettes: One size does not fit all.

Authors:  Amika K Sood; Matthew J Kesic; Michelle L Hernandez
Journal:  J Allergy Clin Immunol       Date:  2018-03-06       Impact factor: 10.793

10.  E-Cigarette or Vaping Product Use-associated Lung Injury: Developing a Research Agenda. An NIH Workshop Report.

Authors:  Laura E Crotty Alexander; Lorraine B Ware; Carolyn S Calfee; Sean J Callahan; Thomas Eissenberg; Carol Farver; Maciej L Goniewicz; Ilona Jaspers; Farrah Kheradmand; Talmadge E King; Nuala J Meyer; Vladimir B Mikheev; Peter G Shields; Alan Shihadeh; Robert Strongin; Robert Tarran
Journal:  Am J Respir Crit Care Med       Date:  2020-09-15       Impact factor: 21.405

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