DOI QR코드

DOI QR Code

기단 역궤적분석에 의한 경주시 대기오염물질의 농도 변화

Variation of Concentration of Air Pollutants with Air Mass Back-Trajectory Analysis in Gyeongju

  • Kim, Kyung-Won (Department of Environmental Engineering, Gyeongju University) ;
  • Bang, So-Yung (Meteorological Research Institute) ;
  • Jung, Jong-Hyun (Department of Public Health Administration, Sorabol College)
  • 발행 : 2008.04.30

초록

Gyeongju, which was the central city of the ancient civilization at Silla Kingdom, has various kinds of stone cultural properties. It is significantly important to preserve historical sources of Korea. However, recent air quality data measured in Gyeongju did not show good air quality level. In order to investigate variation of the concentration of the air pollutants with meteorological condition, an air quality monitoring and an aerosol sampling were conducted during the intensive monitoring period in Gyeongju. Impacts of the meteorological factors on the air pollutants were also analyzed based on the air mass pathway categories using HYSPLIT model and the local wind patterns using MM5 model. The prevailing air mass pathways were classified into four categories as following; category I affected by easterly marine aerosols, category II affected by northwesterly continental aerosols, category III affected by southwesterly continental aerosols, and category IV affected by northerly continental aerosols. The concentrations of the air quality standards were relatively lower during the fall intensive monitoring period. At that time, the easterly marine air mass pattern was dominated. The seasonal average mass concentration of $PM_{10,Opt}$, which optically measured at the monitoring site, was the highest value of $77.6{\pm}28.3\;{\mu}g\;m^{-3}$ during the spring intensive monitoring period but the lowest value of $20.1{\pm}5.3\;{\mu}g\;m^{-3}$ during the fall intensive monitoring period. The concentrations of $SO_2$ and CO were relatively higher when the air mass came from the northwestern continent or the northern continent. The concentrations of ${SO_4}^{2-}$ and ${NO_3}^-$ increased under the northwesterly continental condition. It was estimated that the acidic aerosols were dominated in the atmosphere of Gyeongju when the air mass came from the continental regions.

키워드

참고문헌

  1. 경주시(2005) 시정백서
  2. 김유근, 정주희, 배주현, 오인보, 권지혜, 서장원 (2006) WRF 모형을 통한 복잡 연안지역에서의 해상풍 모의개 선, 한국대기환경학회지, 22(3), 309-323
  3. 김진영, 김영성, 원재광, 윤순창, 우정헌, 조규탁 (2005) 팔당 호 유역에 대한 질소와 황의 건식 침적량 추정, 한국대기환경학회지, 21(1), 49-62
  4. 대구지방환경관리청 (2006) 환경질현황 대기오염 (http:// taegu.me.go.kr)
  5. 박지연, 임호진 (2006) 대구지역 겨울철과 봄철 미세먼지의 수용성 이온성분 특성, 한국대기환경학회지, 22(5), 627-641
  6. 울산광역시(2006) 울산광역시 2005년 월별 대기환경오염도 (http://www.ulsan.go.kr)
  7. 환경부 (2005) 대기오염측정망 기본계획 (2006-2010), 11- 1480000-000773-01
  8. 환경부(2006) 환경백서
  9. Brost, R.A., J.C. Wyngaard, and D.H. Lenshow (1982) Marine stratocumulus layers Part II: Turbulence budgets, J. Atmos. Sci., 39, 818-836 https://doi.org/10.1175/1520-0469(1982)039<0818:MSLPIT>2.0.CO;2
  10. Chow, J.C., J.G. Watson, and D.H. Lowental (1996) Sources and chemistry of $PM_{10}$ aerosol in Santa Barbara county, CA, Atmos. Environ., 30, 1489-1499 https://doi.org/10.1016/1352-2310(95)00363-0
  11. Draxler, R.R. (1996) Boundary layer isentropic and kinematic trajectories during the August 1993 North Atlantic Regional Experiment Intensive, J. Geophys. Res., 101, 29,255-29,268 https://doi.org/10.1029/95JD03760
  12. Grell, G.A., J. Dudhia, and D.R. Stauffer (1994) A Description of the fifth-generation Penn State/NCAR Mesoscale Model (MM5), NCAR Technical Note, NCAR/TN-398+STR
  13. Kim, K.W., Z. He, and Y.J. Kim (2004) Physico-chemical characteristics and radiative properties of Asian Dust particles observed at Kwangju, Korea during the 2001 ACE-Asia IOP, J. Geophys. Res., 109, D19, D19S02
  14. Moya, M., A.S. Ansari, and S.N. Pandis (2001) Partitioning of nitrate and ammonium between the gas and particulate phases during the 1997 IMADA-AVER Study in Mexico City, Atmos. Environ., 35(10), 1791-1804 https://doi.org/10.1016/S1352-2310(00)00292-2
  15. National Center Atmospheric Research (2003) PSU/NCAR mesoscale modeling system tutorial class notes and user's guide
  16. NWS Office of Science and Technology (1999) Interface control document for AWIPS-NESDIS (NOAAPORT ICD, section 4.7) (http://www.nws.noaa. gov/noaaport/ html/refs.shtml)
  17. Pielke, R.A. and M. Uliasz (1998) Use of meteorology models as input to regional and mesoscale air quality models- limitations and strengths, Atmos. Environ., 32, 1455-1466 https://doi.org/10.1016/S1352-2310(97)00140-4
  18. Pleim, J.E. and J.S. Chang (1992) A nonlocal closure model for vertical mixing in the convective boundary layer, Atmos. Environ., 26A, 965-981
  19. Rogerson, A.M. (1999) Transcritical flows in the coastal marine atmospheric boundary layer, J. Atmos. Sci., 56, 2761-2779 https://doi.org/10.1175/1520-0469(1999)056<2761:TFITCM>2.0.CO;2
  20. Saxena, P., A.B. Hudischewskyj, C. Seigneur, and J.H. Seinfeld (1986) A comparative study of equilibrium approaches to the chemical characterization of secondary aerosols, Atmos. Environ., 20(7), 1471-1483 https://doi.org/10.1016/0004-6981(86)90019-3
  21. Turn, S.Q., B.M. Jenkins, J.C. Chow, L.C. Pritchett, D.E. Campbell, T.A. Cahill, and S.A. Whalen (1997) Elemental characterization of particulate matter emitted from biomass burning: wind tunnel-derived source profiles for herbaceous and wood fuels, J. Geophys. Res., 102(D3), 3683-3699 https://doi.org/10.1029/96JD02979
  22. Zampieri, M., P. Malguzzi, and A. Buzzi (2005) Sensitivity of quantitative precipitation forecasts to boundary layer parameterization: a flash flood case study in the Western Mediterranean, Nat. Hazards Earth Syst. Sci., 5, 603-612 https://doi.org/10.5194/nhess-5-603-2005

피인용 문헌

  1. Comparison of Chemical Compositions of Size-segregated Atmospheric Aerosols between Asian Dust and Non-Asian Dust Periods at Background Area of Korea vol.33, pp.11, 2012, https://doi.org/10.5012/bkcs.2012.33.11.3651
  2. Transportation Route in Gimhae Region Using the HYSPLIT Model vol.22, pp.8, 2013, https://doi.org/10.5322/JESI.2013.22.8.1043