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Differential toxicities of fine particulate matters from various sources

机译:来自各种来源的细颗粒物的差异毒性

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摘要

Fine particulate matters less than 2.5 µm (PM2.5) in the ambient atmosphere are strongly associated with adverse health effects. However, it is unlikely that all fine particles are equally toxic in view of their different sizes and chemical components. Toxicity of fine particles produced from various combustion sources (diesel engine, gasoline engine, biomass burning (rice straw and pine stem burning), and coal combustion) and non-combustion sources (road dust including sea spray aerosols, ammonium sulfate, ammonium nitrate, and secondary organic aerosols (SOA)), which are known major sources of PM2.5, was determined. Multiple biological and chemical endpoints were integrated for various source-specific aerosols to derive toxicity scores for particles originating from different sources. The highest toxicity score was obtained for diesel engine exhaust particles, followed by gasoline engine exhaust particles, biomass burning particles, coal combustion particles, and road dust, suggesting that traffic plays the most critical role in enhancing the toxic effects of fine particles. The toxicity ranking of fine particles produced from various sources can be used to better understand the adverse health effects caused by different fine particle types in the ambient atmosphere, and to provide practical management of fine particles beyond what can be achieved only using PM mass which is the current regulation standard.
机译:周围大气中小于2.5μm(PM2.5)的细颗粒物与不良健康影响密切相关。但是,考虑到它们的大小和化学成分的不同,所有细颗粒都不可能具有相同的毒性。来自各种燃烧源(柴油机,汽油机,生物质燃烧(稻草和松木茎燃烧)和煤炭燃烧)和非燃烧源(道路尘土,包括海雾气溶胶,硫酸铵,硝酸铵,确定了PM2.5的主要来源和二次有机气溶胶(SOA)。整合了针对各种特定来源气溶胶的多个生物学和化学终点,以得出源自不同来源的颗粒的毒性评分。柴油发动机排气颗粒获得最高的毒性评分,其次是汽油发动机排气颗粒,生物质燃烧颗粒,燃煤颗粒和道路扬尘,表明交通运输在增强细颗粒的毒性作用中起着至关重要的作用。由各种来源产生的细颗粒的毒性等级可用于更好地了解环境大气中不同细颗粒类型对健康造成的不利影响,并提供细颗粒的实际管理,这超出了仅使用PM质量才能达到的效果。当前的法规标准。

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