烟雾
环境科学
微粒
污染物
空气质量指数
空气污染
环境卫生
环境化学
危险废物
气溶胶
环境工程
废物管理
气象学
化学
工程类
地理
医学
有机化学
作者
Katelyn O’Dell,Rebecca S. Hornbrook,Wade Permar,Ezra J. T. Levin,Lauren A. Garofalo,Eric C. Apel,N. J. Blake,A. Jarnot,Matson A. Pothier,Delphine K. Farmer,Lu Hu,T. Campos,Bonne Ford,Jeffrey R. Pierce,Emily V. Fischer
标识
DOI:10.1021/acs.est.0c04497
摘要
Wildfires have a significant adverse impact on air quality in the United States (US). To understand the potential health impacts of wildfire smoke, many epidemiology studies rely on concentrations of fine particulate matter (PM) as a smoke tracer. However, there are many gas-phase hazardous air pollutants (HAPs) identified by the Environmental Protection Agency (EPA) that are also present in wildfire smoke plumes. Using observations from the Western Wildfire Experiment for Cloud Chemistry, Aerosol Absorption, and Nitrogen (WE-CAN), a 2018 aircraft-based field campaign that measured HAPs and PM in western US wildfire smoke plumes, we identify the relationships between HAPs and associated health risks, PM, and smoke age. We find the ratios between acute, chronic noncancer, and chronic cancer HAPs health risk and PM in smoke decrease as a function of smoke age by up to 72% from fresh (<1 day of aging) to old (>3 days of aging) smoke. We show that acrolein, formaldehyde, benzene, and hydrogen cyanide are the dominant contributors to gas-phase HAPs risk in smoke plumes. Finally, we use ratios of HAPs to PM along with annual average smoke-specific PM to estimate current and potential future smoke HAPs risks.
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