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« Previous AbstractExploration of sources of OVOCs in various atmospheres in southern China    Next AbstractCritical Role of Simultaneous Reduction of Atmospheric Odd Oxygen for Winter Haze Mitigation »

Environ Sci Technol


Title:Abundant Biogenic Oxygenated Organic Aerosol in Atmospheric Coarse Particles: Plausible Sources and Atmospheric Implications
Author(s):Huang XF; Dai J; Zhu Q; Yu K; Du K;
Address:"Key Laboratory for Urban Habitat Environmental Science and Technology, School of Environment and Energy , Peking University Shenzhen Graduate School , Shenzhen 518055 , China. Department of Mechanical and Manufacturing Engineering , University of Calgary , Calgary T2N 1N4 , Canada"
Journal Title:Environ Sci Technol
Year:2020
Volume:20200114
Issue:3
Page Number:1425 - 1430
DOI: 10.1021/acs.est.9b06311
ISSN/ISBN:1520-5851 (Electronic) 0013-936X (Linking)
Abstract:"Secondary organic aerosol (SOA) is a key component in atmospheric aerosols, strongly influencing air quality and climate. Most previous studies focused on SOA formation in the fine aerosol mode, and little is known about SOA formation across a broader size range, especially for the coarse aerosol mode. In this study, we coupled radiocarbon analysis and the offline aerosol mass spectrometric method to characterize water-soluble organic matter in size-segregated samples between 0.056 and 18 mum collected in urban Shenzhen, China. For the first time, detailed size distributions of different types of oxygenated organic aerosols (OOAs) are obtained. Fossil fuel OOA was mostly distributed in fine particles, and biogenic OOA occurred mostly in coarse particles. Organic composition and correlation analyses suggested that the major source of the coarse-mode OOA was more plausible to be heterogeneous reactions of biogenic volatile organic compounds (VOCs) on soil dust rather than primary biological materials. If so, this mechanism would complement the missing sinks of biogenic VOCs, significantly influence the regional and global organic aerosol budgets, and thus should be considered in air quality and climate models. This study highlights the urgent need for laboratory simulations of heterogeneous reactions of various VOCs on soil dust"
Keywords:Aerosols *Air Pollutants China Dust *Volatile Organic Compounds;
Notes:"MedlineHuang, Xiao-Feng Dai, Jing Zhu, Qiao Yu, Kuangyou Du, Ke eng Research Support, Non-U.S. Gov't 2020/01/01 Environ Sci Technol. 2020 Feb 4; 54(3):1425-1430. doi: 10.1021/acs.est.9b06311. Epub 2020 Jan 14"

 
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