个人护理产品相关挥发性有机化合物的室内排放、氧化和新粒子形成

IF 8.9 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL Environmental Science & Technology Letters Environ. Pub Date : 2024-08-30 DOI:10.1021/acs.estlett.4c0035310.1021/acs.estlett.4c00353
Tianren Wu, Tatjana Müller, Nijing Wang, Joseph Byron, Sarka Langer, Jonathan Williams and Dusan Licina*, 
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引用次数: 0

摘要

个人护理产品 (PCP) 含有多种挥发性有机化合物 (VOC),在室内常规使用 PCP 对室内空气质量和人体化学接触具有重要影响。这项试验室研究利用气溶胶仪器和两台在线质谱仪,对室内使用五种带香味的五氯苯酚产生的挥发性有机化合物排放进行了量化,并检测了臭氧引发的活性挥发性有机化合物氧化后形成的气相氧化产物和微粒。测试的五氯苯酚包括一种香水、一种滚珠除臭剂、一种身体喷雾、一种发胶和一种润手液。在室内使用这些五氯苯酚会释放出 200 多种挥发性有机化合物,导致室内挥发性有机化合物混合比达到百万分之几。五氯苯酚的挥发性有机化合物排放系数从 2 到 964 mg g-1 不等。我们发现了萜烯及其衍生物的大量排放,它们很可能被用作五氯苯酚的芳香添加剂。在室内臭氧存在的情况下使用五氯苯酚时,这些活性挥发性有机化合物会发生氧化反应,形成各种气相氧化蒸汽,并导致快速的新颗粒形成(NPF)事件,其颗粒增长率比室外大气中的 NPF 事件高出 10 倍。在 NPF 事件期间,所产生的超细粒子浓度达到 ∼34000 至 ∼200000 cm-3。
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Indoor Emission, Oxidation, and New Particle Formation of Personal Care Product Related Volatile Organic Compounds

Personal care products (PCPs) contain diverse volatile organic compounds (VOCs) and routine use of PCPs indoors has important implications for indoor air quality and human chemical exposures. This chamber study deployed aerosol instrumentation and two online mass spectrometers to quantify VOC emissions from the indoor use of five fragranced PCPs and examined the formation of gas-phase oxidation products and particles upon ozone-initiated oxidation of reactive VOCs. The tested PCPs include a perfume, a roll-on deodorant, a body spray, a hair spray, and a hand lotion. Indoor use of these PCPs emitted over 200 VOCs and resulted in indoor VOC mixing ratios of several parts per million. The VOC emission factors for the PCPs varied from 2 to 964 mg g–1. We identified strong emissions of terpenes and their derivatives, which are likely used as fragrant additives in the PCPs. When using the PCPs in the presence of indoor ozone, these reactive VOCs underwent oxidation reactions to form a variety of gas-phase oxidized vapors and led to rapid new particle formation (NPF) events with particle growth rates up to ten times higher than outdoor atmospheric NPF events. The resulting ultrafine particle concentrations reach ∼34000 to ∼200000 cm–3 during the NPF events.

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来源期刊
Environmental Science & Technology Letters Environ.
Environmental Science & Technology Letters Environ. ENGINEERING, ENVIRONMENTALENVIRONMENTAL SC-ENVIRONMENTAL SCIENCES
CiteScore
17.90
自引率
3.70%
发文量
163
期刊介绍: Environmental Science & Technology Letters serves as an international forum for brief communications on experimental or theoretical results of exceptional timeliness in all aspects of environmental science, both pure and applied. Published as soon as accepted, these communications are summarized in monthly issues. Additionally, the journal features short reviews on emerging topics in environmental science and technology.
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