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首页> 外文期刊>Aerosol and Air Quality Research >Transport and Mitigation of Exhaled Electronic Cigarette Aerosols in a Multizone Indoor Environment
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Transport and Mitigation of Exhaled Electronic Cigarette Aerosols in a Multizone Indoor Environment

机译:多筒室内环境中呼出电子烟雾气溶胶的运输和减轻

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Using an electronic cigarette (e-cig) has been shown to emit a substantial amount of particles and degrade indoor air quality. Here, we tested the effectiveness of different mitigation strategies to reduce indoor particulate pollution due to e-cigs. We simultaneously measured concentrations of particle number (PNC) and fine particle (PM2.5) mass in a vaping room and an adjacent non-vaping room, both of which were well controlled, during e-cig use under six different experimental conditions: (1) the baseline scenario, in which the connecting door between the two rooms was open, the ventilation in both rooms was low, and no air purifier was operated; (2) the connecting door between the two rooms was closed; (3) the ventilation was enhanced in the vaping room; (4) the ventilation was enhanced in the non-vaping room; (5) an air purifier was operated in the vaping room; and (6) an air purifier was operated in the non-vaping room. We found that the particle concentrations significantly decreased in both of the rooms when either the ventilation was enhanced or the air purifier was operated. Closing the connecting door between the two rooms produced the largest reduction (42%) of PNC in the non-vaping room; however, it also led to a 26% increase of PNC in the vaping room. Previous studies have demonstrated that vape shops contain high concentrations of particles when no mitigation strategies are implemented. Our results provide a basis for assessing and reducing exposure to e-cig aerosols and its associated health effects in future studies.
机译:已经显示使用电子烟(E-CIG)发射大量颗粒并降低室内空气质量。在这里,我们测试了不同缓解策略的有效性,以减少由于E-CIGS引起的室内颗粒污染。在六种不同实验条件下的E-CIG使用期间,我们在蒸发室和相邻的非蒸馏室中同时测量颗粒数(PNC)和细颗粒(PM2.5)质量的浓度,并且在六种不同的实验条件下使用良好的控制:( 1)基线情景,其中两个房间之间的连接门打开,两个房间的通风都很低,没有操作空气净化器; (2)两个房间之间的连接门关闭; (3)蒸气室的通风增强; (4)在非蒸气室中的通风增强; (5)空气净化器在Vaping室中操作; (6)空气净化器在非蒸馏室中操作。我们发现,在增强通风或操作空气净化器时,两个房间颗粒浓度显着降低。关闭两个房间之间的连接门在非蒸馏室中产生最大的PNC减少(42%);然而,它也导致蒸气室中PNC增加了26%。以前的研究表明,当没有实施缓解策略时,Vape商店含有高浓度的颗粒。我们的结果为在未来的研究中提供了评估和减少E-CIG AEROSOLS及其相关的健康影响的基础。

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