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用于筛选电子果汁散装材料中挥发性有机化合物图谱的顶空分析。

Headspace analysis for screening of volatile organic compound profiles of electronic juice bulk material.

机构信息

Field Studies Branch, Respiratory Health Division, National Institute for Occupational Safety and Health, 1095 Willowdale Rd, Morgantown, WV, 26505, USA.

California Department of Public Health, Richmond, CA, 94804, USA.

出版信息

Anal Bioanal Chem. 2018 Sep;410(23):5951-5960. doi: 10.1007/s00216-018-1215-3. Epub 2018 Jul 4.

Abstract

The use of electronic nicotine delivery systems continues to gain popularity, and there is concern for potential health risks from inhalation of aerosol and vapor produced by these devices. An analytical method was developed that provided quantitative and qualitative chemical information for characterizing the volatile constituents of bulk electronic cigarette liquids (e-liquids) using a static headspace technique. Volatile organic compounds (VOCs) were screened from a convenience sample of 146 e-liquids by equilibrating 1 g of each e-liquid in amber vials for 24 h at room temperature. Headspace was transferred to an evacuated canister and quantitatively analyzed for 20 VOCs as well as tentatively identified compounds using a preconcentrator/gas chromatography/mass spectrometer system. The e-liquids were classified into flavor categories including brown, fruit, hybrid dairy, menthol, mint, none, tobacco, and other. 2,3-Butanedione was found at the highest concentration in brown flavor types, but was also found in fruit, hybrid dairy, and menthol flavor types. Benzene was observed at concentrations that are concerning given the carcinogenicity of this compound (max 1.6 ppm in a fruit flavor type). The proposed headspace analysis technique coupled with partition coefficients allows for a rapid and sensitive prediction of the volatile content in the liquid. The technique does not require onerous sample preparation, dilution with organic solvents, or sampling at elevated temperatures. Static headspace screening of e-liquids allows for the identification of volatile chemical constituents which is critical for identifying and controlling emission of potentially hazardous constituents in the workplace.

摘要

电子尼古丁传送系统的使用继续流行,人们担心这些装置所产生的气溶胶和蒸气吸入可能带来健康风险。本研究开发了一种分析方法,该方法使用静态顶空技术为批量电子烟液(e-液)的挥发性成分提供定性和定量的化学信息。通过将每个 e-液平衡在琥珀色小瓶中 24 小时,在室温下从 146 个 e-液的便利样本中筛选挥发性有机化合物(VOCs)。将顶空转移到抽空的罐中,并使用预浓缩器/气相色谱/质谱系统对 20 种 VOC 以及暂定鉴定化合物进行定量分析。将 e-液分为棕色、水果、混合乳制品、薄荷醇、薄荷、无、烟草和其他口味类别。在棕色口味类型中发现了最高浓度的 2,3-丁二酮,但也在水果、混合乳制品和薄荷口味类型中发现了这种物质。苯的浓度令人担忧,因为这种化合物具有致癌性(在一种水果口味类型中最高可达 1.6ppm)。所提出的顶空分析技术与分配系数相结合,可以快速灵敏地预测液体中的挥发性含量。该技术不需要繁琐的样品制备、有机溶剂稀释或在高温下采样。e-液的静态顶空筛选可识别挥发性化学成分,这对于识别和控制工作场所潜在危险成分的排放至关重要。

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