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국회도서관 홈으로 정보검색 소장정보 검색

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권호기사

권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
기사명 저자명 페이지 원문 목차
광학 입자 측정기 비교 측정에 의한 입경별 일평균 블랙카본 분석= Diurnal Size Distributions of Black Carbon by Comparison of Optical Particulate Measurements, 1 . 1 박다정, 이광열, 박기홍, 배민석 pp.1-8

도로이동오염원의 활동도와 도로변 질소산화물 농도의 관계 = Relation with Activity of Road Mobile Source and Roadside Nitrogen Oxide Concentration 김진식, 최윤주, 이경빈, 김신도 pp.9-20
태화산 PM_2.5_ OC와 EC의 변화 특성 = Variation of OC and EC in PM_2.5_ at Mt. Taehwa 함지영, 이미혜, 김현석, 박현주, 조강남, 박정민 pp.21-31
황사 배출량이 동아시아 지역 PM_10_ 농도에 미치는 영향 = (The)Effect of Dust Emissions on PM_10_ Concentration in East Asia 최대련, 구윤서, 조진식, 장영기, 이재범, 박현주 pp.32-45
열적외 영상과 Landsat 8 위성으로부터 관측된 지표면 온도 비교 = Comparison of Surface Temperatures between Thermal Infrared Image and Landsat 8 Satellite 조채윤, 지준범, 박문수, 박성화, 최영진 pp.46-56
마이크로탑스 II 다파장 복사계를 이용한 대기 에어로솔 광학 두께 관측 = Aerosol Optical Thickness Measurements from the Microtops-II Multi-wavelength Radiometer 이권호, 이규태 pp.57-66
황사, 연무, 박무 현상이 미세먼지 화학조성에 미치는 영향 = Influences of Asian Dust, Haze, and Mist Events on Chemical Compositions of Fine Particulate Matters at Gosan Site, Jeju Island in 2014 : 2014년 제주도 고산지역 측정 송정민, 부준오, 양승혁, 이재윤, 김원형, 강창희 pp.67-81

2014년 2월 서울의 고농도 미세먼지 기간 중에 CMAQ-DDM을 이용한 국내외 기여도 분석 = Analysis of Domestic and Foreign Contributions using DDM in CMAQ during Particulate Matter Episode Period of February 2014 in Seoul 김종희, 최대련, 구윤서, 이재범, 박현주 pp.82-99
강원도 춘천과 영월에서 측정한 미세먼지 농도 특성 및 고농도 원인 분석 = Characteristics of Fine Particles Measured in Two Different Functional Areas and Identification of Factors Enhancing Their Concentrations 조성환, 김현웅, 한영지, 김우진 pp.100-113
PM_10_ 장기노출 예측모형 개발을 위한 국가 대기오염측정자료의 탐색과 활용 = Exploration and Application of Regulatory PM_10_ Measurement Data for Developing Long-term Prediction Models in South Korea 이선주, 김호, 김선영 pp.114-126

참고문헌 (30건) : 자료제공( 네이버학술정보 )

참고문헌 목록에 대한 테이블로 번호, 참고문헌, 국회도서관 소장유무로 구성되어 있습니다.
번호 참고문헌 국회도서관 소장유무
1 Borge, R., J. Lopez, J. Lumbreras, A. Narros, and E. Rodriguez (2010) Influence of boundary conditions on CMAQ simulations over the Iberian Peninsula, Atmos. Environ., 44(23), 2681-2695. 미소장
2 Choi, Y.J. and H.J.S. Fernando (2008) Implementation of a windblown dust parameterization into MODELS-3/CMAQ: Application to episodic PM events in the US/Mexico border, Atmos. Environ. 42(24), 6039-6046. 미소장
3 ENVIRON (2012) User’s guide to the Comprehensive Air Quality Model with Extensions (CAMx). Version 6.0. Available at: http://www.camx.com 미소장
4 Gillette, D.A. and R. Passi (1988) Modeling dust emission caused by wind erosion, J. Geophys. Res., 93(D11), 14233-14242, doi:10.1029/JD093iD11p14233. 미소장
5 Han, X., C. Ge, J. Tao, M. Zhang, and R. Zhang (2012) Air Quality Modeling for a Strong Dust Event in East Asia in March 2010, Aerosol Air Qual. Res., 12(4), 615-628, doi:10.4209/aaqr.2011.11.0191. 미소장
6 Han, Z., H. Ueda, K. Matsuda, R. Zhang, K. Argo, Y. Kanai, and H. Hasome (2004) Model study on particle size segregation and deposition during Asian dust events in March 2002, J. Geophys. Res., 109(D19), doi:10.1029/2004JD004920. 미소장
7 Huang, K., G. Zhuang, Q. Wang, J.S. Fu, Y. Lin, T. Liu, L. Han, and C. Deng (2014) Extreme haze pollution in beijing during january 2013: chemical characteristics formation mechanism and role of fog processing, Atmos. Chem. Phys. Discuss., 14, 7517-7556. 미소장
8 In, H.J. and S.U. Park (2002) A simulation of long-range transport of Yellow Sand observed in April 1998 in Korea, Atmos. Environ., 36(26), 4173-4187. 미소장
9 In, H.J. and S.U. Park (2003) The soil particle size-dependent emission parameterization for an Asian dust (Yellow Sand) observed in Korea on April 2002, Atmos. Environ., 37(33), 4625-4636. 미소장
10 Jang, Y.G. and J. Kim (2011) Developing the PM emission inventories in Korea, Air Quality Modeling in Asia, 2011, 24-25. 미소장
11 Ji, D., L. Liang, Y. Wang, J. Zhang, M. Cheng, Y. Sun, Z. Liu, L. Wang, G. Tang, B. Hu, N. Chao, and T. Wen (2014) The heaviest particulate air-pollution episodes occurred in northern China in January, 2013:Insights gained from observation, Atmos. Environ., 92, 546-556. 미소장
12 Koo, Y.S., S.T. Kim, H.Y. Yun, J.S. Han, J.Y. Lee, K.H. Kim, and E.C. Jeon (2008) The simulation of aerosol transport over East Asia region, Atmos. Res., 90(2-4), 264-271. 미소장
13 Koo, Y.S., S.T. Kim, J.S. Cho, and Y.K. Jang (2012) Performance evaluation of the updated air quality forecasting system for Seoul predicting PM10, Atmos. Environ., 58, 56-69. 미소장
14 Koo, Y.S., D.R. Choi, H.Y. Kwon, J.Y. Jang, and J.S. Han (2015) Improvement of PM10 prediction in East Asia using inverse modeling, Atmos. Envrion., 106, 318-328. 미소장
15 Lee, D., Y. Lee, K. Jang, C. Yoo, K. Kang, J. Lee, S. Jung, J. Park, S. Lee, J. Han, J. Hong, and S. Lee (2011b)Korean National Emissions Inventory System and 2007 Air Pollutant Emissions, Asian Journal of Atmos. Environ., 5(4), 278-291. 미소장
16 Lee, E.H. and S.U. Park (2005) A numerical simulation of an Asian dust (Hwangsa) event observed in Korea on March 10-12, 2004 using the modified ADAM model, Adv. Geosci., 5, 67-76. 미소장
17 Lee, S., C.H. Ho, and Y.S. Choi (2011a) High-PM10 concentration episodes in Seoul, Korea: background sources and related meteorological conditions. Atmos. Environ., 45(39), 7240-7247. http://dx.doi.org/10.1016/j.atmosenv.2011.08.071 미소장
18 Lee, S., C.H. Ho, Y.G. Lee, H.J. Choi, and C.K. Song (2013)Influence of transboundary air pollutants from China on the high PM10 episode in Seoul, Korea for the period October 16-20, 2008, Atmos. Environ., 77, 430-439. http://dx.doi.org/10.1016/j.atmosenv. 2013.05.006 미소장
19 National Institute of Meteorological Research (2009) Report of Hwangsa on 2008. Park, S.U., A. Choe, E.H. Lee, M.S. Park, and X. Song (2010)The Asian Dust Aerosol Model2 (ADAM2) with the use of Normalized Difference Vegetation Index (NDVI) obtained from the Spot4/vegetation data, Theor. Appl. Climatol., 101(1), 191-208, doi:10. 1007/s00704-009-0244-4. 미소장
20 Park, S.U., J.H. Cho, and M.S. Park (2013) Analyses of high aerosol concentration events (dense haze/mist) occurred in East Asia during 10-16 January 2013 using the data simulated by the Aerosol Modeling System, Int. J. Chem., 2(3), 10-26. 미소장
21 Skamarock, W.C. and J.B. Klemp (2008) A time-split nonhydrostatic atmospheric model for weather research and forecasting applications, J. Comput. Phys., 227, 3465-3485. 미소장
22 The China National Environmental Monitoring Centre (2007)Technological Rules Concerned “Ambient Air Quality Daily Report”. 미소장
23 U.S. Environmental Protection Agency (2007) Guidance on the Use of Models and Other Analyses for Demonstrating Attainment of Air Quality Goals for Ozone, PM2.5, and Regional Haze, Office of Air Quality Planning and Standards, Air Quality Analysis Division, Air Quality Modeling Group, Research Triangle Park, North Carolina. 미소장
24 Wang, H., J. An, L. Shen, B. Zhu, C. Pan, L. Zirui, X. Liu, Q. Duan, X. Liu, and Y. Wang (2014b) Mechanism for the formation and microphysical characteristics of submicron aerosol during heavy haze pollution episode in the Yangtze River Delta, China, Sci. Total Envrion., 490, 501-508. 미소장
25 Wang, K., Y. Zhang, A. Nenes, and C. Fountoukis (2012) Implementation of dust emission and chemistry into the Community Multiscale Air Quality modeling system and initial application to an Asian dust storm episode, Atmos. Chem. Phys., 12, 10209-10237. 미소장
26 Wang, Y., L. Yao, L. Wang, Z. Liu, D. Ji, G. Tnag, J. Zhang, Y. Sun, H. Bo, and J. Xin (2014a) Mechanism for the formation of the January 2013 heavy haze pollution episode over central and eastern China, Science China, Earth Sciences, 57(1), 14-25. 미소장
27 ON THE VALIDATION OF MODELS 네이버 미소장
28 Willmott, C.J. (1982) Some comments on the evaluation of model performance. Bull. Amer. Meteorol. Soc., 63(11), 1309-1313. 미소장
29 Yarwood, G., S. Rao, M. Yocke, and G. Whitten (2005) Updates to the carbon bond chemical mechanism: CB05. Final report to the U.S. EPA, RT-0400675. 미소장
30 Zhang, Q., D.G. Streets, G.R. Carmichael, K.B. He, H. Huo, A. Kannari, Z. Klimont, I.S. Park, S. Reddys, J.S. Fu, D. Chem, L. Duan, Y. Lei, L.T. Wang, and Z.L. Yao (2009) Asian emission in 2006 for the NASA INTEX-B mission, Atmos. Chem. Phys., 9, 5131-5153. 미소장