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Impact of the regional transport of urban Beijing pollutants on downwind areas in summer: ozone production efficiency analysis Cover

Impact of the regional transport of urban Beijing pollutants on downwind areas in summer: ozone production efficiency analysis

By: ,  ,  ,   and    
Open Access
|Jan 2012

References

  1. Akimoto, H. 2003. Global air quality and pollution. Science 302, 1716–1719. .
  2. An, J. 2006. Ozone production efficiency in Beijing area with high NOx emissions (in Chinese with English abstract). Acta Scientiae Circumstantiae 26, 652–657. .
  3. Bowman, F. M. and Seinfeld, J. H. 1994. Ozone productivity of atmospheric organics. J. Geophys. Res. 99, 5309–5324. .
  4. Carpenter, L. J., Green, T. J., Mills, G. P., Bauguitte, S., Penkett, S. A. and co-authors. 2000. Oxidized nitrogen and ozone production efficiencies in the springtime free troposphere over the Alps. J. Geophys. Res. Atmos. 105, 14547–14559. .
  5. Chameides, W. L., Fehsenfeld, F., Rodgers, M. O., Cardelino, C., Martinez, J. and co-aurthors. 1992. Ozone precursor relationships in the ambient atmosphere. J. Geophys. Res. 97, 6037–6055. .
  6. Chan, C. Y., Chan, L. Y., Cui, H., Zheng, X. D., Zheng, Y. G. and co-authors. 2003. Origin of the springtime tropospheric ozone maximum over east China at LinAn in 2001. Tellus B 55, 982–992. .
  7. Chan, C. K. and Yao, X. 2008. Air pollution in mega cities in China. Atmos. Environ. 42, 1–42. .
  8. Chou, C. C. K., Tsai, C. Y., Shiu, C. J., Liu, S. C. and Zhu, T. 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. Atmos. 114. D00G01, DOI: 10.1029/2008jd010446. .
  9. Finlayson-Pitts, B. J. and Pitts, J. N. J. 1997. Tropospheric air pollution: ozone, airborne toxics, polycyclic aromatic hydrocarbons, and particles. Science 276, 1045–1051. .
  10. Ge, B., Xu, X., Lin, W. and Wang, Y. 2010. Observational study of ozone production efficiency at the Shangdianzi Regional Background Station (in Chinese with English abstract). Environ. Sci. 31, 1444–1450. .
  11. Hao, J. M., Wang, L. T., Li, L., Hu, J. N. and Yu, X. C. 2005. Air pollutants contribution and control strategies of energy-use related sources in Beijing. Sci. China Ser. D 48, 138–146. .
  12. Huang, X. F., He, L. Y., Hu, M., Canagaratna, M. R., Sun, Y. and co-authors. 2010. Highly time-resolved chemical characterization of atmospheric submicron particles during 2008 Beijing Olympic Games using an Aerodyne High-Resolution Aerosol Mass Spectrometer. Atmos. Chem. Phys. 10, 8933–8945. .
  13. Kleinman, L., Daum, P. H., Lee, Y.-N., Nunnermacker, L. J., Springston, S. R. and co-authors. 2002. Ozone production efficiency in an urban area. J. Geophys. Res. 107, 4733. DOI: 10.1029/2002JD002529. .
  14. Kleinman, L., Lee, Y.-N., Springston, S. R., Nunnermacker, L. J., Zhou, X. and co-authors. 1994. Ozone formation at a rural site in the southeastern United States. J. Geophys. Res. 99, 3469–3482. .
  15. Lei, W., Zavala, M., de Foy, B., Volkamer, R. and Molina, L. T. 2008. Characterizing ozone production and response under different meteorological conditions in Mexico City. Atmos. Chem. Phys. 8, 7571–7581. .
  16. Li, C., Marufu, L. T., Dickerson, R. R., Li, Z. Q., Wen, T. X. and co-authors. 2007. In situ measurements of trace gases and aerosol optical properties at a rural site in northern China during East Asian Study of Tropospheric Aerosols: an international regional experiment 2005. J. Geophys. Res. Atmos. 112, D22S04. DOI: 10.1029/2006JD007592. .
  17. Li, J., Wang, Z., Akimoto, H., Tang, J. and Uno, I. 2009. Modeling of the impacts of China's anthropogenic pollutants on the surface ozone summer maximum on the northern Tibetan Plateau. Geophys. Res. Lett. 36, L24802. DOI: 10.1029/2009GL041123. .
  18. Li, J., Wang, Z. and Xiang, W. 2011. Daytime atmospheric oxidation capacity of urban Beijing under polluted conditions during the 2008 Beijing Olympic Games and the impact of aerosols. SOLA 7, 73–76. .
  19. Lin, W., Xu, X., Ge, B. and Liu, X. 2011. Gaseous pollutants in Beijing urban area during the heating period 2007–2008: variability, sources, meteorological and chemical impacts. Atmos. Chem. Phys. 11, 8157–8170. .
  20. Lin, W., Xu, X., Ge, B. and Zhang, X. 2009. Characteristics of gaseous pollutants at Gucheng, a rural site southwest of Beijing. J. Geophys. Res. 114, 1–17. .
  21. Lin, W., Xu, X., Zhang, X. and Tang, J. 2008. Contributions of pollutants from North China Plain to surface ozone at the Shangdianzi GAW Station. Atmos. Chem. Phys. 8, 5889–5898. .
  22. Liu, S. C., Trainer, M. and Fehnsenfeld, F. C. 1987. Ozone production in the rural troposphere and the implications for regional and global ozone distributions. J. Geophys. Res. 92, 4191–4207. .
  23. Marion, T., Perros, P. E., Losno, R.and Steiner, E. 2001. Ozone production efficiency in savanna and forested areas during the EXPRESSO experiment. J. Atmos. Chem. 38, 3–30. .
  24. Meng, Z. Y., Xu, X. B., Yan, P., Ding, G. A., Tang, J. and co-authors. 2009. Characteristics of trace gaseous pollutants at a regional background station in Northern China. Atmos. Chem. Phys. 9, 927–936. .
  25. Mills, G., Hayes, F., Simpson, D., Emberson, L., Norris, D. and co-authors. 2011. Evidence of widespread effects of ozone on crops and (semi-)natural vegetation in Europe (1990-2006) in relation to AOT40-and flux-based risk maps. Global Change Biol. 17, 592–613. .
  26. Molina, M. J. and Molina, L. T. 2004. Megacities and atmospheric pollution. J. Air Waste Manag. 54, 644–680. .
  27. Nunnermacker, L. J., Imre, D., Daum, P. H., Kleinman, L., Lee, Y. N. and co-authors. 1998. Characterization of the Nashville urban plume on July 3 and July 18, 1995. J. Geophys. Res. 103, 28129–28148. .
  28. Olszyna, K. J., Bailey, E. M., Simonaitis, R. and Meagher, J. F. 1994. O3 and NOy relationships at a rural site. J. Geophys. Res. 99, 14557–14563. .
  29. Pan, X. L., Wang, Z. F. and Wang, X. Q. 2010. An observation study of ozone dry deposition over grassland in the suburban area of Beijing[J]. Chinese J. Atmos. Sci. (In Chinese) 34, 120–130. .
  30. Ran, L., Zhao, C. S., Geng, F. H., Tie, X. X., Tang, X. and co-authors. 2009. Ozone photochemical production in urban Shanghai, China: analysis based on ground level observations. J. Geophys. Res. Atmos. 114, D15301. DOI: 10.1029/2008JD010752. .
  31. Rickard, A. R., Salisbury, G., Monks, P. S., Lewis, A. C., Baugitte, S. and co-authors. 2002. Comparison of measured ozone production efficiencies in the marine boundary layer at two European coastal sites under different pollution regimes. J. Atmos. Chem. 43, 107–134. .
  32. Shao, M., Tang, X., Zhang, Y. and Li, W. 2006. City clusters in China: air and surface water pollution. Front. Ecol. Environ. 4, 353–361. .
  33. Shen, X. J., Sun, J. Y., Zhang, Y. M., Wehner, B., Nowak, A. and co-authors. 2011. First long-term study of particle number size distributions and new particle formation events of regional aerosol in the North China Plain. Atmos. Chem. Phys. 11, 1565–1580. .
  34. St John, J. C., Chameides, W. L. and Sayor, R. 1998. Role of anthropogenic NOx and VOC as ozone precursors: a case study from the SOS Nashville/middle Tennessee Ozone study. J. Geophys. Res. 103, 22415–22423. .
  35. Stehr, J. W., Dickerson, R. R., Hollock-Waters, K. A., Doddridge, B. G. and Kirk, D. 2000. Observations of NOy, CO, and SO2 and the origin of reactive nitrogen in the eastern United States. J. Geophys. Res. 105, 3553–3563. .
  36. Stohl, A., Kim, J., Li, S., O'Doherty, S., Muhle, J. and co-authors. 2010. Hydrochlorofluorocarbon and hydrofluorocarbon emissions in East Asia determined by inverse modeling. Atmos. Chem. Phys. 10, 3545–3560. .
  37. Tang, X., Wang, Z., Zhu, J., Gbaguidi, A. E., Wu, Q. and co-authors. 2010. Sensitivity of ozone to precursor emissions in urban Beijing with a Monte Carlo scheme. Atmos. Environ. 44, 3833–3842. .
  38. Thielmann, A., Prevot, A. S. H. and Staehelin, J. 2002. Sensitivity of ozone production derived from field measurements in the Italian Po basin. J. Geophys. Res. 107, 8194. DOI: 8110.1029/2000JD000119. .
  39. Tong, D. Q., Kang, D. W., Aneja, V. P. and Ray, J. D. 2005. Reactive nitrogen oxides in the southeast United States national parks: source identification, origin, and process budget. Atmos. Environ. 39, 315–327. .
  40. Trainer, M., Ridley, B. A., Buhr, M. P., Kok, G., Walega, J. and co-authors. 1995. Regional ozone and urban plumes in the southeastern United States: Birmingham, a case study. J. Geophys. Res. 100, 18823–18834. .
  41. Wang, T., Ding, A., Gao, J. and Wu, W. S. 2006. Strong ozone production in urban plumes from Beijing, China. Geophys. Res. Lett. 33, L21806. DOI: 10.1029/2006GL027689. .
  42. Wang, T., Nie, W., Gao, J., Xue, L. K., Gao, X. M. and co-authors. 2010b. Air quality during the 2008 Beijing Olympics: secondary pollutants and regional impact. Atmos. Chem. Phys. 10, 7603–7615. .
  43. Wang, Z., Sha, W. and Ueda, H. 2000. Numerical modeling of pollutant transport and chemistry during a high-ozone event in northern Taiwan. Tellus B 52, 1189–1205. .
  44. Wang, B., Shao, M., Lu, S. H., Yuan, B., Zhao, Y. and co-authors. 2010a. Variation of ambient non-methane hydrocarbons in Beijing city in summer 2008. Atmos. Chem. Phys. 10, 5911–5923. .
  45. Wang, X., Zhang, Y., Hu, Y., Zhou, W., Lu, K. and co-authors. 2010c. 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. .
  46. Witte, J. C., Schoeberl, M. R., Douglass, A. R., Gleason, J. F., Krotkov, N. A. and co-authors. 2009. Satellite observations of changes in air quality during the 2008 Beijing Olympics and Paralympics. Geophys. Res. Lett. 36, L17803. DOI: 10.1029/2009GL039236. .
  47. Wu, Q. Z., Wang, Z. F., Gbaguidi, A., Gao, C., Li, L. N. and co-authors. 2011. A numerical study of contributions to air pollution in Beijing during CAREBeijing-2006. Atmos. Chem. Phys. 11, 5997–6011. .
  48. Xu, X., Ge, B. and Lin, W. 2009. Progress in the research of ozone production efficiency (OPE) (in Chinese with English abstract). Adv. Earth Sci. 24, 845–853. .
  49. Xu, X., Lin, W., Wang, T., Yan, P., Tang, J. and co-authors. 2008. Long-term trend of surface ozone at a regional background station in eastern China 1991-2006: enhanced variability. Atmos. Chem. Phys. 8, 2595–2607. .
  50. Xu, J., Ma, J. Z., Zhang, X. L., Xu, X. B., Xu, X. F. and co-authors. 2011. Measurements of ozone and its precursors in Beijing during summertime: impact of urban plumes on ozone pollution in downwind rural areas. Atmos. Chem. Phys. 11, 12241–12252. .
  51. Yan, P., Wang, Z., Wang, X., Fu, Q. and Wang, Q. 2011. Impact of pollutant transport on the air quality of Shanghai in 2007. SOLA 7, 85–88. .
  52. Yang, T., Wang, Z. F., Zhang, B., Wang, X. Q., Wang, W. and co-authors. 2010. Evaluation of the effect of air pollution control during the Beijing 2008 Olympic Games using Lidar data. Chinese Sci. Bull. 55, 1311–1316. .
  53. Yang, D. Z., Xu, J., Yan, P., Wang, S. and Ding, G.A. 2005. On the similarity of the aerosol characteristics in city and suburb of Beijing. Quart. Sci. 25, 54–62. .
  54. Yu, H., Wang, P. C., Zong, X. M., Li, X. and Lu, D. R. 2010. Change of NO2 column density over Beijing from satellite measurement during the Beijing 2008 Olympic Games. Chinese Sci. Bull. 55, 308–313. .
  55. Zhang, R., Shen, Z., Zhang, L., Zhang, M., Wang, X. and co-authors. 2011. Elemental composition of atmospheric particles during periods with and without traffic restriction in Beijing: the effectiveness of traffic restriction measure. SOLA 7, 61–64. .
  56. Zhang, Q., Streets, D. G., Carmichael, G. R., He, K. B., Huo, H. and co-authors. 2009. Asian emissions in 2006 for the NASA INTEX-B mission. Atmos. Chem. Phys. 9, 5131–5153. .
Language: English
Page range: 17348 - 17348
Submitted on: Aug 12, 2011
Published on: Jan 1, 2012
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2012 B. Z. Ge, X. B. Xu, W. L. Lin, J. Li, Z. F. Wang, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.