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Chemical Composition Based Aerosol Optical Properties According to Size Distribution and Mixture Types during Smog and Asian Dust Events in Seoul,Korea
Authors:Chang Hoon Jung  Ji Yi Lee  Junshik Um  Seung Soo Lee  Yong Pyo Kim
Institution:1.Department of Health Management,Kyungin Women’s University,Incheon,Korea;2.Department of Environmental Engineering,Chosun University,Gwangju,Korea;3.Department of Atmospheric Sciences,University of Illinois at Urbana-Champaign,Urbana,USA;4.Earth System Science Interdisciplinary Center,University of Maryland,College Park,USA;5.Department of Chemical Engineering and Materials Science,Ewha Womans University,Seoul,Korea
Abstract:This study investigated the optical properties of aerosols involved in different meteorological events, including smog and Asian dust days. Carbonaceous components and inorganic species were measured in Seoul, Korea between 25 and 31 March 2012. Based on the measurements, the optical properties of aerosols were calculated by considering composition, size distribution, and mixing state of aerosols. To represent polydisperse size distributions of aerosols, a lognormal size distribution with a wide range of geometric mean diameters and geometric standard deviations was used. For the optical property calculations, the Mie theory was used to compute single-scattering properties of aerosol particles with varying size and composition. Analysis of the sampled data showed that the water-soluble components of organic matter increased on smog days, whereas crustal elements increased on dust days. The water content significantly influenced the optical properties of aerosols during the smog days as a result of high relative humidity and an increase in the water-soluble component. The absorption coefficients depended on the aerosol mixture type and the aerosol size distributions. Therefore, to improve our knowledge on radiative impacts of aerosols, especially the regional impacts of aerosols in East Asia, accurate measurements of aerosols, such as size distribution, composition, and mixture type, under different meteorological conditions are required.
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