Physical and Chemical Characterization of Aerosols Produced from Commercial Nicotine Salt-Based E-Liquids.

IF 3.7 3区 医学 Q2 CHEMISTRY, MEDICINAL Chemical Research in Toxicology Pub Date : 2025-01-20 Epub Date: 2024-12-09 DOI:10.1021/acs.chemrestox.4c00315
Trevor Harris
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Abstract

Nicotine salt e-liquids are widely used in pod-style and disposable electronic nicotine delivery systems (ENDS). Studying the physical and chemical properties of their emissions can inform their toxicological impact. A prior companion study reported the harmful and potentially harmful constituents (HPHCs) and aerosol particle sizes produced from laboratory-made nicotine salt and freebase nicotine e-liquids to assess the effects of varying nicotine salts and nicotine protonation. This study reports the HPHCs and aerosol particle sizes for commercial brand nicotine salt and freebase nicotine formulations. Several tobacco, fruit, mint, and menthol flavored e-liquids of varying nicotine concentrations were tested with open and closed pod-style ENDS and a disposable ENDS. The nicotine yields showed a positive correlation with aerosol output, and the aerosol nicotine mass fractions reflected the e-liquid nicotine quantities. Benzene, crotonaldehyde, and 2,3-pentanedione were not detected or quantified in any of the aerosols, whereas acetaldehyde, acrolein, diacetyl, and formaldehyde were each quantified in at least one of the tested conditions. The aerosol particle number concentrations indicated that 97-99% of the aerosols for all the ENDS tested were composed of ultrafine (<0.1 μm) and fine (0.1-1.0 μm) aerosol particle sizes, and the mass median aerodynamic diameters ranged from 1.0 to 1.4 μm. The estimated regional deposition fractions and total respiratory depositions were calculated for all the ENDS conditions using a dosimetry modeling program. The calculations predicted depositions would predominantly occur in the pulmonary and head regions with a low total respiratory deposition (≤41%) calculated for all ENDS tested. This study broadens the availability of high-quality and reliable testing data of popular commercial nicotine salt-based ENDS for the scientific and regulatory communities. In conjunction with the previous work on the model e-liquids, these studies offer an extensive examination of the HPHCs and physical aerosol parameters of nicotine salt e-liquids.

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商用烟碱盐基电子烟液生产气溶胶的物理化学特性。
尼古丁盐电子液体广泛应用于豆荚式和一次性电子尼古丁输送系统(ENDS)。研究其排放物的物理和化学性质可以了解其毒理学影响。先前的一项配套研究报告了实验室制造的尼古丁盐和自由碱尼古丁电子液体产生的有害和潜在有害成分(HPHCs)和气溶胶颗粒大小,以评估不同尼古丁盐和尼古丁质子化的影响。本研究报告了商业品牌尼古丁盐和自由碱尼古丁配方的HPHCs和气溶胶颗粒大小。几种不同尼古丁浓度的烟草、水果、薄荷和薄荷味电子液体分别用开放式和封闭式豆荚式终端和一次性终端进行了测试。烟碱得率与气溶胶输出量呈正相关,气溶胶烟碱质量分数反映了烟液烟碱量。苯、巴豆醛和2,3-戊二酮在任何气溶胶中均未被检测或定量,而乙醛、丙烯醛、二乙酰和甲醛在至少一种测试条件下均被定量。气溶胶粒子数浓度表明,所有被测终端的气溶胶中有97-99%由超细(
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来源期刊
CiteScore
7.90
自引率
7.30%
发文量
215
审稿时长
3.5 months
期刊介绍: Chemical Research in Toxicology publishes Articles, Rapid Reports, Chemical Profiles, Reviews, Perspectives, Letters to the Editor, and ToxWatch on a wide range of topics in Toxicology that inform a chemical and molecular understanding and capacity to predict biological outcomes on the basis of structures and processes. The overarching goal of activities reported in the Journal are to provide knowledge and innovative approaches needed to promote intelligent solutions for human safety and ecosystem preservation. The journal emphasizes insight concerning mechanisms of toxicity over phenomenological observations. It upholds rigorous chemical, physical and mathematical standards for characterization and application of modern techniques.
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