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JAPCA Volume 38, 1988 - Issue 5
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A Critical Review

Ozone Air Quality Models

Pages 616-645 | Published online: 08 Mar 2012

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William R. Stockwell, Emily Saunders, Wendy S. Goliff & Rosa M. Fitzgerald. (2020) A perspective on the development of gas-phase chemical mechanisms for Eulerian air quality models. Journal of the Air & Waste Management Association 70:1, pages 44-70.
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Martin J. Wolf, Daniel C. Esty, Honghyok Kim, Michelle L. Bell, Sam Brigham, Quinn Nortonsmith, Slaveya Zaharieva, Zachary A. Wendling, Alex de Sherbinin & John W. Emerson. (2022) New Insights for Tracking Global and Local Trends in Exposure to Air Pollutants. Environmental Science & Technology 56:7, pages 3984-3996.
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Jia Mao, Lili Wang, Chuhan Lu, Jingda Liu, Mingge Li, Guiqian Tang, Dongsheng Ji, Nan Zhang & Yuesi Wang. (2020) Meteorological mechanism for a large-scale persistent severe ozone pollution event over eastern China in 2017. Journal of Environmental Sciences 92, pages 187-199.
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Hyeon-Ju Park, Jin-Soo Park, Sang-Woo Kim, Heesung Chong, Hana Lee, Hyunjae Kim, Joon-Young Ahn, Dai-Gon Kim, Jhoon Kim & Sang Seo Park. (2019) Retrieval of NO2 Column Amounts from Ground-Based Hyperspectral Imaging Sensor Measurements. Remote Sensing 11:24, pages 3005.
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V.H. Almanza, I. Batyrshin & G. Sosa. (2014) Multi-criteria selection of an Air Quality Model configuration based on quantitative and linguistic evaluations. Expert Systems with Applications 41:3, pages 869-876.
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P. K. Quinn, T. S. Bates, E. Baum, N. Doubleday, A. M. Fiore, M. Flanner, A. Fridlind, T. J. Garrett, D. Koch, S. Menon, D. Shindell, A. Stohl & S. G. Warren. (2008) Short-lived pollutants in the Arctic: their climate impact and possible mitigation strategies. Atmospheric Chemistry and Physics 8:6, pages 1723-1735.
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Pedro Jiménez-Guerrero, Oriol Jorba, José M. Baldasano & Santiago Gassó. (2008) The use of a modelling system as a tool for air quality management: Annual high-resolution simulations and evaluation. Science of The Total Environment 390:2-3, pages 323-340.
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Pierre Tulet, Alf Grini, Robert J. Griffin & Sebastien Petitcol. (2006) ORILAM-SOA: A computationally efficient model for predicting secondary organic aerosols in three-dimensional atmospheric models. Journal of Geophysical Research: Atmospheres 111:D23.
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Alberto Mendoza-Dominguez & Armistead G. Russell. (2000) Iterative Inverse Modeling and Direct Sensitivity Analysis of a Photochemical Air Quality Model. Environmental Science & Technology 34:23, pages 4974-4981.
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V Crassier, K Suhre, P Tulet & R Rosset. (2000) Development of a reduced chemical scheme for use in mesoscale meteorological models. Atmospheric Environment 34:16, pages 2633-2644.
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Anne C. Heard, Michael J. Pilling & Alison S. Tomlin. (1998) Mechanism reduction techniques applied to tropospheric chemistry. Atmospheric Environment 32:6, pages 1059-1073.
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Hung‐po Chao, Stephen C. Peck & Y. Steve Wan. (2006) Managing Uncertainty: The Tropospheric Ozone Challenge. Risk Analysis 14:4, pages 465-475.
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I-Fen Li, Pratim Biswas & Shafiqul Islam. (1994) Estimation of the dominant degrees of freedom for air pollutant concentration data: Applications to ozone measurements. Atmospheric Environment 28:9, pages 1707-1714.
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David P. Chock & Sandra L. Winkler. (1994) A particle grid air quality modeling approach: 1. The dispersion aspect. Journal of Geophysical Research 99:D1, pages 1019.
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P. Ciccioli. 1993. Chemistry and Analysis of Volatile Organic Compounds in the Environment. Chemistry and Analysis of Volatile Organic Compounds in the Environment 92 174 .
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