Aged and Obscured Wildfire Smoke Associated with Downwind Health Risks.

IF 8.8 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL Environmental Science & Technology Letters Environ. Pub Date : 2024-11-04 eCollection Date: 2024-12-10 DOI:10.1021/acs.estlett.4c00785
Taekyu Joo, Mitchell J Rogers, Catelynn Soong, Tori Hass-Mitchell, Seulkee Heo, Michelle L Bell, Nga L Ng, Drew R Gentner
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Abstract

Fine-mode particulate matter (PM2.5) is a highly detrimental air pollutant, regulated without regard for chemical composition and a chief component of wildfire smoke. As wildfire activity increases with climate change, its growing continental influence necessitates multidisciplinary research to examine smoke's evolving chemical composition far downwind and connect chemical composition-based source apportionment to potential health effects. Leveraging advanced real-time speciated PM2.5 measurements, including an aerosol chemical speciation monitor in conjunction with source apportionment and health risk assessments, we quantified the stark pollution enhancements during peak Canadian wildfire smoke transport to New York City over June 6-9, 2023. Interestingly, we also observed lower-intensity, but frequent, multiday wildfire smoke episodes during May-June 2023, which risk exposure misclassification as generic aged organic PM2.5 via aerosol mass spectrometry given its extensive chemical transformations during 1 to 6+ days of transport. Total smoke-related organic PM2.5 showed significant associations with asthma exacerbations, and estimates of in-lung oxidative stress were enhanced with chemical aging, collectively demonstrating elevated health risks with increasingly frequent smoke episodes. These results show that avoiding underestimated aged biomass burning PM2.5 contributions, especially outside of peak episodes, necessitates real-time chemically resolved PM2.5 monitoring to enable next-generation health studies, models, and policy under far-reaching wildfire impacts in the 21st century.

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老化和遮蔽的野火烟雾与顺风健康风险有关。
细微颗粒物(PM2.5)是一种危害性极大的空气污染物,在监管时没有考虑其化学成分,也是野火烟雾的主要成分。随着气候变化,野火活动日益频繁,其对大陆的影响也越来越大,因此有必要开展多学科研究,以检查烟雾在远处顺风方向不断变化的化学成分,并将基于化学成分的来源划分与潜在的健康影响联系起来。利用先进的实时 PM2.5 分样测量方法(包括气溶胶化学分样监测仪),并结合来源分配和健康风险评估,我们量化了 2023 年 6 月 6 日至 9 日加拿大野火烟雾向纽约市输送高峰期的明显污染增强。有趣的是,我们还观察到 2023 年 5 月至 6 月期间强度较低、但频繁发生的多日野火烟雾事件,鉴于其在 1 至 6 天以上的传输过程中发生了广泛的化学变化,通过气溶胶质谱法有可能被误认为是一般的老化有机 PM2.5。与烟雾相关的有机 PM2.5 总量与哮喘恶化有显著关联,肺内氧化应激的估计值随化学老化而增加,这共同表明随着烟雾发生频率的增加,健康风险也随之增加。这些结果表明,要避免低估生物质燃烧产生的老化 PM2.5,尤其是在高峰期之外,就必须进行实时的化学解析 PM2.5 监测,以便在 21 世纪野火影响深远的情况下开展下一代健康研究、建立模型和制定政策。
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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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