Articles | Volume 13, issue 19
https://doi.org/10.5194/acp-13-9869-2013
https://doi.org/10.5194/acp-13-9869-2013
Research article
 | 
08 Oct 2013
Research article |  | 08 Oct 2013

NOx emissions in China: historical trends and future perspectives

B. Zhao, S. X. Wang, H. Liu, J. Y. Xu, K. Fu, Z. Klimont, J. M. Hao, K. B. He, J. Cofala, and M. Amann

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Cited articles

Akimoto, H. and Narita, H.: Distribution of SO2, NOx and CO2 emissions from fuel combustion and Industrial activities in Asia with 1-degrees-X1-degrees resolution, Atmos. Environ., 28, 213–225, 1994.
Amann, M., Jiang, K. J., Hao, J. M., and Wang, S. X.: Scenarios for cost-effective control of air pollution and greenhouse gases in China, International Institute for Applied Systems Analysis, Laxenburg, Austria, 51 pp., 2008.
Amann, M., Bertok, I., Borken-Kleefeld, J., Cofala, J., Heyes, C., Hoglund-Isaksson, L., Klimont, Z., Nguyen, B., Posch, M., Rafaj, P., Sandler, R., Schopp, W., Wagner, F., and Winiwarter, W.: Cost-effective control of air quality and greenhouse gases in Europe: Modeling and policy applications, Environ. Modell. Softw., 26, 1489–1501, https://doi.org/10.1016/j.envsoft.2011.07.012, 2011.
Bo, Y., Cai, H., and Xie, S. D.: Spatial and temporal variation of historical anthropogenic NMVOCs emission inventories in China, Atmos. Chem. Phys., 8, 7297–7316, https://doi.org/10.5194/acp-8-7297-2008, 2008.
Cai, H. and Xie, S. D.: Estimation of vehicular emission inventories in China from 1980 to 2005, Atmos. Environ., 41, 8963–8979, 2007.
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