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次氯酸与木烟雾气溶胶的反应:对室内空气质量和室外活性氯的影响。

Reaction of HOCl with Wood Smoke Aerosol: Impacts on Indoor Air Quality and Outdoor Reactive Chlorine.

作者信息

Jorga Spiro D, Wang Yutong, Abbatt Jonathan P D

机构信息

Department of Chemistry, University of Toronto, Toronto, M5S 3H6Ontario, Canada.

出版信息

Environ Sci Technol. 2023 Jan 6. doi: 10.1021/acs.est.2c07577.

Abstract

High loadings of biomass burning (BB) aerosol particles from wildfire or residential heating sources can be present in both outdoor and indoor environments, where they deposit onto surfaces such as walls and furniture. These pollutants can interact with oxidants in both the aerosol and deposited forms. Hypochlorous acid (HOCl), a strong oxidant emitted during cleaning with chlorine-cleaning agents such as bleach, can attain mixing ratios of hundreds of ppbv indoors; moreover, lower mixing ratios are naturally present outdoors. Here, we report the heterogeneous reactivity of HOCl with wood smoke aerosol particles. After exposure to gas-phase HOCl, the particle chlorine content increased reaching chlorine-to-organic mass ratios of 0.07 with the chlorine covalently bound as organochlorine species, many of which are aromatic. Investigating individual potential BB components, we observed that unsaturated species such as coniferaldehyde and furfural react efficiently with HOCl. These observations indicate that organochlorine pollutants will form indoors when bleach cleaning a wildfire impacted space. The chlorine component of particles internally mixed with BB material and chloride initially increased, upon HOCl exposure, indicating that active chlorine recycling in the outdoor environment will be suppressed in the presence of BB emissions.

摘要

来自野火或住宅供暖源的生物质燃烧(BB)气溶胶颗粒的高负荷量可能同时存在于室外和室内环境中,并沉积在墙壁和家具等表面上。这些污染物可以与气溶胶形式和沉积形式的氧化剂发生相互作用。次氯酸(HOCl)是一种在用含氯清洁剂(如漂白剂)清洁过程中释放的强氧化剂,在室内可达到数百ppbv的混合比;此外,在室外自然存在较低的混合比。在此,我们报告了HOCl与木烟雾气溶胶颗粒的非均相反应活性。在暴露于气相HOCl后,颗粒中的氯含量增加,氯与有机物质的质量比达到0.07,其中氯以有机氯物种的形式共价结合,许多有机氯物种是芳香族的。研究单个潜在的BB成分时,我们观察到诸如松柏醛和糠醛等不饱和物种能与HOCl高效反应。这些观察结果表明,在用漂白剂清洁受野火影响的空间时,室内会形成有机氯污染物。与BB物质和氯化物内部混合的颗粒中的氯成分在暴露于HOCl后最初会增加,这表明在存在BB排放的情况下,室外环境中的活性氯循环将受到抑制。

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