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http://dx.doi.org/10.5322/JES.2012.21.4.535

Continuous Measurements of Size Separated Atmospheric Aerosol Number Concentration in Background Area  

Kang, Chang-Hee (Department of Chemistry, Jeju National University)
Hu, Chul-Goo (Department of Environmental Engineering, Jeju National University)
Publication Information
Journal of Environmental Science International / v.21, no.4, 2012 , pp. 535-543 More about this Journal
Abstract
The aerosol number concentration have measured with an aerodynamic particle sizer spectrometer(APS) at Gosan site, which is known as background area in Korea, from January to September 2011. The temporal variation and the size distribution of aerosol number concentration have been investigated. The entire averaged aerosol number concentration in the size range 0.25~32.0 ${\mu}m$ is about 252 particles/$cm^3$. The number concentration in small size ranges(${\leq}0.5{\mu}m$) are very higher than those in large size ranges, such as, the number concentration in range of larger than 6.5 ${\mu}m$ are almost zero particles/$cm^3$. The contributions of the number concentration to PM10 and/or PM2.5 are about 34%, 20.1% and 20.4% in the size range 0.25~0.28 ${\mu}m$, 0.28~0.30 ${\mu}m$ and 0.30~0.35 ${\mu}m$, respectively, however, the contributions are below 1% in range of larger than 0.58 ${\mu}m$. The monthly variations in the number concentration in smaller size range(<1.0 ${\mu}m$) are evidently different from the variations in range of larger than 1.0 ${\mu}m$, but the variations are appeared similar patterns in smaller size range(<1.0 ${\mu}m$), also the variations in range of larger than 1.0 ${\mu}m$ are similar too. The diurnal variations in the number concentration for smaller particle(<1.0 ${\mu}m$) are not much, but the variations for larger particle are very evident. Size-fractioned aerosol number concentrations are dramatically decreased with increased particle size. The monthly differences in the size-fractioned number concentrations for smaller size range(<0.7 ${\mu}m$) are not observed, however, the remarkable monthly differences are observed for larger size than 0.7 ${\mu}m$.
Keywords
Aerosol; Number concentration; Temporal variation; Size distribution; Background site;
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1 Stanier, C. O., Khlystov, A. Y., Pandis, S. N., 2004, Ambient aerosol size distributions and number concentrations measured during the pittsburgh air quality study (PAQS), Atmospheric Environment, 38, 3275-3284.   DOI   ScienceOn
2 Vyziene, R., Girgždys, A., 2009, Investigation of aerosol number concentration in jonava town, Journal of Environmental Engineering and Landscape Management, 17(1), 51-59.   DOI
3 Watanabe, K., Suzuki, I., Dokiya, Y., 2005, Aerosol number concentrations during kosa events on suburban hills in Japan, Water, Air, and Soil Pollution, 5, 195-206.   DOI   ScienceOn
4 Yan, F., Hu, H., Yu, T., 2004, Analysis of particulate mass concentration, aerosol number concentration and visibility in beijing, China Particuology, 2(1), 25-30.   DOI   ScienceOn
5 박경윤, 이호근, 서명석, 장광미, 강창희, 허철구, 김영준, 1994, 제주도 고산 측정소에서의 대기오염 배경농도 측정 및 분석, 한국대기보전학회지, 10(4), 252- 259.
6 전영신, 김지영, 최재천, 신도식, 1999, 황사시 서울과 안면도의 대기 중 에어로졸 수농도 특성, 한국대기환경학회지, 15(5), 575-586.
7 최병철, Iwasaka, Y., 임재철, 정상부, 김윤석, Dmitri, T., Nagatani, T., Yamada, M., 김상백, 홍기만, 이영곤, 유희정, 2005, 광학입자계수기를 이용한 안면도 연직 에어러솔 수농도 크기 분포 특성, 한국기상학회 대기지, 15(3), 149-153.
8 Longley, I. D., Inglis, D. W. F., Gallagher, M. W., Williams, P. I., Allan, J. D., Coe, H., 2005, Using NOx and CO monitoring data to indicate fine aerosol number concentrations and emission factors in three UK conurbations, Atmospheric Environment, 39, 5157-5169.   DOI   ScienceOn
9 Bigi, A., B., Ghermandi, G., 2011, Particle Number Size Distribution and Weight Concentration of Background Urban Aerosol in a Po Valley Site, Water Air Soil Pollut, 220, 265-278.   DOI
10 Buzorius, G., Hämeri, K., Pekkanen, J., Kulmala, M., 1999, Spatial variation of aerosol number concentration in helsinki city, Atmospheric Environment, 33, 553-565.   DOI   ScienceOn
11 Minoura, H., Takekawa, H., 2005, Observation of number concentrations of atmospheric aerosols and analysis of nanoparticle behavior at an urban background area in japan, Atmospheric Environment, 39, 5806-5816.   DOI   ScienceOn
12 Renjian, Z., Zhiwei, H., Zhenxing, S., Junji, C., 2008, Continuous Measurement of Number Concentrations and Elemental composition of aerosol Particles for a Dust Storm Event in Beijing, Advances in Atmospheric Siciences, 25(1), 89-95.   DOI
13 Sharma, D. K., Rai, J., Israil, M., Singh, P., 2003, Summer variations of the atmospheric aerosol number concentration over roorkee, india, Journal of Atmospheric and Solar-Terrestrial Physics, 65, 1007-1019.   DOI   ScienceOn
14 Sharma, N. L., Sharma, J. C., Singh, M., Sharma, P., Chand, K., Negi, A. K., Sharma, M., Thakur, H. K., 2011, Atmospheric ultrafine aerosol number concentration and its correlation with vehicular flow at two sites in the western Himalayan region: Kullu-Manali, India, J. Earth Syst. Sci., 130(2), 281-290.
15 김지영, 최병철, 2002, 한반도에서 측정된 에어러솔의 크기 분포와 지역별 특성, 한국기상학회지, 38(2), 95-104.