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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Observations of smoke-influenced aerosol during the Yosemite Aerosol Characterization Study: Size distributions and chemical composition
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Observations of smoke-influenced aerosol during the Yosemite Aerosol Characterization Study: Size distributions and chemical composition

机译:优胜美地气溶胶特征研究期间受烟雾影响的气溶胶的观测:尺寸分布和化学成分

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摘要

The Yosemite Aerosol Characterization Study (YACS) took place in Yosemite National Park from 15 July to 5 September 2002, during which time air masses arriving at the site were believed to have been influenced by smoke from numerous wildfires active in the western United States. Physical, optical, and chemical aerosol measurements were made to characterize visibility and to help define aerosol sources contributing to haze in the park, with a particular emphasis on the role of prescribed and wild fires. Measurements of dry aerosol size distributions were made with a differential mobility analyzer (DMA) and an optical particle counter (OPC). An iterative alignment method assuming a range of refractive indices was applied to OPC size distributions to match them to DMA size distributions, returning the real refractive index that yielded the best fit and generating a complete size distribution for 0.04 < D_p < 2 μm. Retrieved dry aerosol real refractive indices generally ranged from 1.56 to 1.59 and were comparable to values estimated from composition measurements. Organic carbon was the dominant aerosol species during the study, particularly during periods identified as smoke impacted. Mie theory was used to determine mass scattering efficiencies (λ = 530 nm) from measured dry size distributions using retrieved refractive indices. These ranged from 3 to 6 m2 g?1, with the highest values occurring during smoke-impacted episodes.
机译:优胜美地气溶胶特征研究(YACS)于2002年7月15日至9月5日在优胜美地国家公园进行,在此期间,据信到达现场的空气团受到了美国西部活跃的多次野火烟雾的影响。进行了物理,光学和化学气溶胶测量,以表征能见度并帮助定义有助于雾霾在公园中的气溶胶来源,并特别强调规定火灾和野火的作用。使用差示迁移率分析仪(DMA)和光学粒子计数器(OPC)进行干燥气溶胶粒径分布的测量。假设OPC尺寸分布采用折光率范围的迭代对齐方法,以使其与DMA尺寸分布相匹配,返回产生最佳拟合的实际折射率,并生成0.04

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