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Emissions from Electronic Cigarettes: Key Parameters Affecting the Release of Harmful Chemicals

机译:电子烟的排放:影响有害化学物质释放的关键参数

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摘要

Use of electronic cigarettes has grown exponentially over the past few years, raising concerns about harmful emissions. This study quantified potentially toxic compounds in the vapor and identified key parameters affecting emissions. Six principal constituents in three different refill "e-liquids" were propylene glycol (PG), glycerin, nicotine, ethanol, acetol, and propylene oxide. The latter, with mass concentrations of 0.4-0.6%, is a possible carcinogen and respiratory irritant. Aerosols generated with vaporizers contained up to 31 compounds, including nicotine, nicotyrine, formaldehyde, acetaldehyde, glycidol, acrolein, acetol, and diacetyl. Glycidol is a probable carcinogen not previously identified in the vapor, and acrolein is a powerful irritant. Emission rates ranged from tens to thousands of nanograms of toxicants per milligram of e-liquid vaporized, and they were significantly higher for a single-coil vs a double-coil vaporizer (by up to an order of magnitude for aldehydes). By increasing the voltage applied to a single-coil device from 3.3 to 4.8 V, the mass of e-liquid consumed doubled from 3.7 to 7.5 mg puff~(-1) and the total aldehyde emission rates tripled from 53 to 165 μg puff~(-1), with acrolein rates growing by a factor of 10. Aldehyde emissions increased by more than 60% after the device was reused several times, likely due to the buildup of polymerization byproducts that degraded upon heating. These findings suggest that thermal degradation byproducts are formed during vapor generation. Glycidol and acrolein were primarily produced by glycerin degradation. Acetol and 2-propen-1-ol were produced mostly from PG, while other compounds (e.g., formaldehyde) originated from both. Because emissions originate from reaction of the most common e-liquid constituents (solvents), harmful emissions are expected to be ubiquitous when e-cigarette vapor is present.
机译:在过去几年中,电子烟的使用呈指数增长,引起了人们对有害排放的担忧。这项研究量化了蒸气中潜在的有毒化合物,并确定了影响排放的关键参数。三种不同的笔芯“电子液体”中的六个主要成分是丙二醇(PG),甘油,尼古丁,乙醇,丙酮醇和环氧丙烷。后者的质量浓度为0.4-0.6%,可能是致癌物和呼吸道刺激物。蒸发器产生的气溶胶包含多达31种化合物,包括尼古丁,烟碱,甲醛,乙醛,缩水甘油,丙烯醛,丙酮醇和二乙酰。缩水甘油是以前在蒸气中未发现的可能的致癌物,而丙烯醛是强刺激物。每毫克蒸发的电子液体,排放速率范围从数十到数千纳克的毒物,并且单线圈蒸发器与双线圈蒸发器的排放率显着更高(醛的数量级高达一个数量级)。通过将单线圈设备施加的电压从3.3 V增加到4.8 V,消耗的电子液体的质量从3.7 mg puff〜(-1)增加了一倍,总醛释放速率从53μgpuff〜增加了三倍,达到165μgpuff〜。 (-1),丙烯醛的速率增加了10倍。设备多次重复使用后,醛类的排放量增加了60%以上,这可能是由于聚合副产物在加热时降解所致。这些发现表明在蒸气产生过程中形成了热降解副产物。缩水甘油和丙烯醛主要是由甘油降解产生的。乙酰基和2-丙-1-醇主要由PG产生,而其他化合物(例如甲醛)则来自两者。因为排放源于最常见的电子液体成分(溶剂)的反应,所以当存在电子烟蒸气时,有害排放物将普遍存在。

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  • 来源
    《Environmental Science & Technology》 |2016年第17期|9644-9651|共8页
  • 作者单位

    Indoor Environment Group, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, MS70-108B, Berkeley, California 94720, United States,Institut de Chimie de Clermont-Ferrand (ICCF), Universite Clermont Auvergne, Sigma-Clermont, BP 10448, F-63000 Clermont-Ferrand, France,ICCF, UMR 6296, CNRS, F-63178 Aubiere, France;

    Indoor Environment Group, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, MS70-108B, Berkeley, California 94720, United States;

    Division Quimica de la Remediacion Ambiental, CNEA-CONICET, Avenida Gral. Paz, (1650) San Martin, Buenos Aires, Argentina;

    Indoor Environment Group, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, MS70-108B, Berkeley, California 94720, United States;

    Division Quimica de la Remediacion Ambiental, CNEA-CONICET, Avenida Gral. Paz, (1650) San Martin, Buenos Aires, Argentina,Instituto de Investigacion e Ingenieria Ambiental, Universidad de General San Martin, Campus Miguelete, Av. 25 de Mayo y Francia, (1650) San Martin, Buenos Aires, Argentina;

    Indoor Environment Group, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, MS70-108B, Berkeley, California 94720, United States;

    Indoor Environment Group, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, MS70-108B, Berkeley, California 94720, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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