An, J. L., 2006: Ozone production efficiency in Beijing area with high NOx emissions. Acta Scientiae Circumstantiae, 26, 652-657.
An, J. L., Y. Li, Y. Chen, J. Li, Y. Qu, Y. J. Tang, 2013: Enhancements of major aerosol components due to additional HONO sources in the North China Plain and implications for visibility and haze. Adv. Atmos. Sci., 30, 57-66.
Avery, R. J., 2006: Reactivity-based VOC control for solvent products: More efficient ozone reduction strategies. Environmental Science and Technology, 40, 4845-4850.
Bo, Y., H. Cai, S. D. Xie, 2008: Spatial and temporal variation of historical anthropogenic NMVOCs emission inventories in China. Atmos. Chem. Phys., 8, 7297-7316.
Carter, W. P., 1994: Development of ozone reactivity scales for volatile organic compounds. Journal of the Air and Waste Management Association, 44, 881-899.
Chameides, W., and Coauthors, 1992: Ozone precursor relationships in the ambient atmosphere. J. Geophys. Res., 97, 6037-6055.
Chen, S., W. H. Brune, 2012: Global sensitivity analysis of ozone production and O3-NOx-VOC limitation based on field data. Atmos. Environ., 55, 288-296.
Chou, C. C. K., C.-Y. Tsai, C.-J. Shiu, S. C. Liu, T. Zhu, 2009: Measurement of NOy during Campaign of Air Quality Research in Beijing 2006 (CAREBeijing-2006): Implications for the ozone production efficiency of NOx. J. Geophys. Res., 114, D00G01, doi: 10.1029/2008jd010446.
De Smedt, I., J. F. MȔller, T. Stavrakou, R. van der A, H. Eskes, M. Van Roozendael, 2008: Twelve years of global observations of formaldehyde in the troposphere using GOME and SCIAMACHY sensors. Atmos. Chem. Phys., 8, 4947-4963.
Dusanter, S., and Coauthors, 2009: Measurements of OH and HO2 concentrations during the MCMA-2006 field campaign-Part 2: Model comparison and radical budget. Atmos. Chem. Phys., 9, 6655-6675.
Emmerson, K. M., N. Carslaw, M. J. Pilling, 2005: Urban atmospheric chemistry during the PUMA campaign 2: Radical budgets for OH, HO2 and RO2. Journal of Atmospheric Chemistry, 52, 165-183.
Emmons, L. K., and Coauthors, 2010: Description and evaluation of the Model for Ozone and Related chemical Tracers, version 4 (MOZART-4). Geoscientific Model Development Discussions, 3, 43-67.
Fast, J. D., and Coauthors, 2006: Evolution of ozone, particulates, and aerosol direct radiative forcing in the vicinity of Houston using a fully coupled meteorology-chemistry-aerosol model. J. Geophys. Res., 111, D21305, doi: 10.1029/2005jd006721.
Fu, J. S., D. G. Streets, C. J. Jang, J. M. Hao, K. He, L. T. Wang, Q. Zhang, 2009: Modeling regional/urban ozone and particulate matter in Beijing, China. Journal of the Air and Waste Management Association, 59, 37-44.
Fu, T.-M., and Coauthors, 2007: Space-based formaldehyde measurements as constraints on volatile organic compound emissions in east and south Asia and implications for ozone. J. Geophys. Res., 112, D06312, doi: 10.1029/2006JD007853.
Gao, H., and Coauthors, 2011: A study of air pollution of city clusters. Atmos. Environ., 45, 3069-3077.
Geng, F., X. Tie, A. Guenther, G. Li, J. Cao, P. Harley, 2011: Effect of isoprene emissions from major forests on ozone formation in the city of Shanghai, China. Atmos. Chem. Phys., 11, 10449-10459.
Grell, G. A., S. E. Peckham, R. Schmitz, S. A. McKeen, G. Frost, W. C. Skamarock, B. Eder, 2005: Fully coupled "online" chemistry within the WRF model. Atmos. Environ., 39, 6957-6975.
Guenther, A., T. Karl, P. Harley, C. Wiedinmyer, P. I. Palmer, C. Geron, 2006: Estimates of global terrestrial isoprene emissions using MEGAN (Model of Emissions of Gases and Aerosols from Nature). Atmos. Chem. Phys., 6, 3181-3210.
Hao, J., D. He, Y. Wu, L. Fu, K. He, 2000: A study of the emission and concentration distribution of vehicular pollutants in the urban area of Beijing. Atmos. Environ., 34, 453-465.
Huang, C., and Coauthors, 2011: Emission inventory of anthropogenic air pollutants and VOC species in the Yangtze River Delta region, China. Atmos. Chem. Phys., 11, 4105-4120.
Kanaya, Y., and Coauthors, 2009: Rates and regimes of photochemical ozone production over Central East China in June 2006: A box model analysis using comprehensive measurements of ozone precursors. Atmos. Chem. Phys., 9, 7711-7723.
Kleinman, L. I., 2005: The dependence of tropospheric ozone production rate on ozone precursors. Atmos. Environ., 39, 575-586.
Kleinman, L. I., P. H. Daum, Y. N. Lee, L. J. Nunnermacker, S. R. Springston, J. Weinstein-Lloyd, J. Rudolph, 2002: Ozone production efficiency in an urban area. J. Geophys. Res., 107, ACH 23-1-ACH 23-12, doi: 10.1029/2002JD002529.
Klimont, Z., D. G. Streets, S. Gupta, J. Cofala, L. Fu, Y. Ichikawa, 2002: Anthropogenic emissions of non-methane volatile organic compounds in China. Atmos. Environ., 36, 1309-1322.
Li, L., and Coauthors, 2012: Process analysis of regional ozone formation over the Yangtze River Delta, China using the Community Multi-scale Air Quality modeling system. Atmos. Chem. Phys., 12, 10 971-10 987.
Li, Y., J. An, M. Min, W. Zhang, F. Wang, P. Xie, 2011: Impacts of HONO sources on the air quality in Beijing, Tianjin and Hebei Province of China. Atmos. Environ., 45, 4735-4744.
Li, Y., J. An, I. Gultepe, 2014: Effects of additional HONO sources on visibility over the North China Plain. Adv. Atmos. Sci., 31(5), 1221-1232, doi: 10.1007/s00376-014-4019-1.
Liu, X.-H., and Coauthors, 2010: Understanding of regional air pollution over China using CMAQ, Part I: Performance evaluation and seasonal variation. Atmos. Environ., 44, 2415-2426.
Liu, Z., and Coauthors, 2012: Summertime photochemistry during CAREBeijing-2007: ROx budgets and O3 formation. Atmos. Chem. Phys., 12, 7737-7752.
Lu, K., and Coauthors, 2010: Oxidant (O3 + NO2) production processes and formation regimes in Beijing. J. Geophys. Res., 115, D07303.
Lu, K. D., and Coauthors, 2012: Observation and modelling of OH and HO2 concentrations in the Pearl River Delta 2006: A missing OH source in a VOC rich atmosphere. Atmos. Chem. Phys., 12, 1541-1569.
Ma, J. Z., and Coauthors, 2012: The IPAC-NC field campaign: A pollution and oxidization pool in the lower atmosphere over Huabei, China. Atmos. Chem. Phys., 12, 3883-3908.
Mao, J., and Coauthors, 2009: Airborne measurement of OH reactivity during INTEX-B. Atmos. Chem. Phys., 9, 163-173.
Ohara, T., H. Akimoto, J. Kurokawa, N. Horii, K. Yamaji, X. Yan, and , T. Hayasaka, 2007: An Asian emission inventory of anthropogenic emission sources for the period 1980-2020. Atmos. Chem. Phys., 7, 4419-4444.
Palmer, P. I., D. J. Jacob, A. M. Fiore, R. V. Martin, K. Chance, T. P. Kurosu, 2003: Mapping isoprene emissions over North America using formaldehyde column observations from space. J. Geophys. Res., 108, 4180, doi: 10.1029/2002JD002153.
Palmer, P. I., and Coauthors, 2006: Quantifying the seasonal and interannual variability of North American isoprene emissions using satellite observations of the formaldehyde column. J. Geophys. Res., 111, D12315, doi: 10.1029/2005JD006689.
Shao, M., X. Tang, Y. Zhang, W. Li, 2006: City clusters in China: Air and surface water pollution. Frontiers in Ecology and the Environment, 4, 353-361.
Shao, M., S. Lu, Y. Liu, X. Xie, C. Chang, S. Huang, Z. Chen, 2009: Volatile organic compounds measured in summer in Beijing and their role in ground-level ozone formation. J. Geophys. Res., 114, D00G06, doi:10.1029/2008JD010863.
Shirley, T., and Coauthors, 2006: Atmospheric oxidation in the Mexico City metropolitan area (MCMA) during April 2003. Atmos. Chem. Phys., 6, 2753-2765.
Sillman, S., 1999: The relation between ozone, NOx and hydrocarbons in urban and polluted rural environments. Atmos. Environ., 33, 1821-1846.
Sillman, S., D. Y. He, 2002: Some theoretical results concerning O3-NOx-VOC chemistry and NOx-VOC indicators. J. Geophys. Res., 107, 4659, doi: 10.1029/2001JD001123.
Simon, H., K. R. Baker, S. Phillips, 2012: Compilation and interpretation of photochemical model performance statistics published between 2006 and 2012. Atmos. Environ., 61, 124-139.
Song, S.-K., Y.-K. Kim, Z.-H. Shon, J.-Y. Ryu, 2012: Photochemical analyses of ozone and related compounds under various environmental conditions. Atmos. Environ., 47, 446-458.
Streets, D., and Coauthors, 2003: An inventory of gaseous and primary aerosol emissions in Asia in the year 2000. J. Geophys. Res., 108, 8809, doi: 10.1029/2002JD003093.
Tang, Y., J. An, Y. Li, F. Wang, 2014: Uncertainty in the uptake coefficient for HONO formation on soot and its impacts on concentrations of major chemical components in the Beijing-Tianjin-Hebei region. Atmos. Environ., 84, 163-171.
Thornton, J., and Coauthors, 2002: Ozone production rates as a function of NOx abundances and HOx production rates in the Nashville urban plume. J. Geophys. Res., 107, 4146, doi: 10.1029/2001jd000932.
Tie, X., F. Geng, L. Peng, W. Gao, C. Zhao, 2009: Measurement and modeling of O3 variability in Shanghai, China: Application of the WRF-Chem model. Atmos. Environ., 43, 4289-4302.
Tonooka, Y., and Coauthors, 2001: NMVOCs and CO emission inventory in East Asia. Water Air and Soil Pollution, 130, 199-204.
Wang, X., and Coauthors, 2010: Process analysis and sensitivity study of regional ozone formation over the Pearl River Delta, China, during the PRIDE-PRD2004 campaign using the Community Multiscale Air Quality modeling system. Atmos. Chem. Phys., 10, 4423-4437.
Wei, W., S. Wang, S. Chatani, Z. Klimont, J. Cofala, J. Hao, 2008: Emission and speciation of non-methane volatile organic compounds from anthropogenic sources in China. Atmos. Environ., 42, 4976-4988.
Xing, J., S. X. Wang, C. Jang, Y. Zhu, J. M. Hao, 2011: Nonlinear response of ozone to precursor emission changes in China: A modeling study using response surface methodology. Atmos. Chem. Phys., 11, 5027-5044.
Xu, X. B., B. Z. Ge, W. L. Lin, 2009: Progresses in the Research of Ozone Production Efficiency (OPE). Advances in Earth Science, 24, 845-853.
Zare, A., J. Brand t, J. H. Christensen, P. Irannejad, 2012: Evaluation of two isoprene emission models for use in a long-range air pollution model. Atmos. Chem. Phys. Discuss., 12, 9247-9281.
Zaveri, R. A., L. K. Peters, 1999: A new lumped structure photochemical mechanism for large-scale applications. J. Geophys. Res., 104, 30387-30415.
Zaveri, R. A., R. C. Easter, J. D. Fast, L. K. Peters, 2008: Model for simulating aerosol interactions and chemistry (MOSAIC). J. Geophys. Res., 113, D13204, doi:10.1029/2007JD008782.
Zhang, H., and Coauthors, 2012: Source apportionment of PM2.5 nitrate and sulfate in China using a source-oriented chemical transport model. Atmos. Environ., 62, 228-242.
Zhang, Q., and Coauthors, 2009: Asian emissions in 2006 for the NASA INTEX-B mission. Atmos. Chem. Phys., 9, 5131-5153.
Zhang, Y., and Coauthors, 2008: Regional integrated experiments on air quality over Pearl River Delta 2004 (PRIDE-PRD2004): Overview. Atmos. Environ., 42, 6157-6173.
Zhao, Y., S. Wang, C. P. Nielsen, X. Li, J. Hao, 2010: Establishment of a database of emission factors for atmospheric pollutants from Chinese coal-fired power plants. Atmos. Environ., 44, 1515-1523.
Zheng, J., L. Zhang, W. Che, Z. Zheng, S. Yin, 2009: A highly resolved temporal and spatial air pollutant emission inventory for the Pearl River Delta region, China and its uncertainty assessment. Atmos. Environ., 43, 5112-5122.