清华大学环境学院硕士研究生导师——邢佳
姓 名:邢佳
所在单位:大气污染与控制教研所
职 称:助理教授
邮寄地址:北京清华大学中意环境节能楼229
电子邮箱:xingjia@tsinghua.edu.cn
教育背景
2002.9-2006.7 清华大学环境科学与工程系 学士
2006.9-2011.7 清华大学环境科学与工程系 博士
工作履历
2016-至今 清华大学环境学院 助理教授
2011-2016 美国环保署国家大气暴露实验室 博士后研究员
2008-2009 美国北卡罗来纳大学 访问学者
2006-2007 奥地利国际系统分析研究所 访问学者
学术兼职
学术会员:美国地学学会、美国气象学会、大气固废管理协会
研究领域
区域大气化学及气候模型、大气污染物年代际排放清单
能源-气候-污染综合评估系统、大气污染控制与环境效益的非线性响应与费效最优化
学术成果
代表性文章
1. Xing, J., Mathur, R., Pleim, J., Hogrefe, C., Wang, J., Gan, C.-M., Sarwar, G., Wong, D. C., and McKeen, S.: Representing the effects of stratosphere–troposphere exchange on 3-D O3 distributions in chemistry transport models using a potential vorticity-based parameterization, Atmos. Chem. Phys., 16, 10865-10877, doi:10.5194/acp-16-10865-2016, 2016.
2. Xing, J., Wang, J., Mathur, R., Pleim, J., Wang, S., Hogrefe, C., Gan, C.M., Wong, D.C. and Hao, J., Unexpected benefits of reducing aerosol cooling effects. Environmental Science & Technology, 50(14), pp.7527-7534, 2016.
3. Wang, J., Xing, J., Mathur, R., Pleim, J., Wang, S., Hogrefe, C., Gan, C., Wong, C.D. and Hao, J., 2016. Historical Trends in PM 2.5-Related Premature Mortality during 1990-2010 across the Northern Hemisphere. Environ. Health Perspect, DOI:10.1289/EHP298, 2016.
4. Xing, J., Mathur, R., Pleim, J., Hogrefe, C., Gan, C.-M., Wong, D. C., Wei, C. and Wang, J.: Air pollution and climate response to aerosol direct radiative effects: A modeling study of decadal trends across the northern hemisphere, J. Geophys. Res. Atmos., 120, 12,221–12,236, doi:10.1002/2015JD023933, 2015.
5. Xing, J., Mathur, R., Pleim, J., Hogrefe, C., Gan, C.-M., Wong, D. C., Wei, C., Gilliam, R., and Pouliot, G.: Observations and modeling of air quality trends over 1990–2010 across the Northern Hemisphere: China, the United States and Europe, Atmos. Chem. Phys., 15, 2723-2747, doi:10.5194/acp-15-2723-2015, 2015.
6. Xing, J., Mathur, R., Pleim, J., Hogrefe, C., Gan, C.-M., Wong, D. C., Wei, C., Gilliam, R., and Pouliot, G.: Observations and modeling of air quality trends over 1990–2010 across the Northern Hemisphere: China, the United States and Europe, Atmos. Chem. Phys., 15, 2723-2747, doi:10.5194/acp-15-2723-2015, 2015.
7. Xing, J., Pleim, J., Mathur, R., Pouliot, G., Hogrefe, C., Gan, C.-M., and Wei, C.: Historical gaseous and primary aerosol emissions in the United States from 1990 to 2010, Atmos. Chem. Phys., 13, 7531-7549, doi:10.5194/acp-13-7531-2013, 2013.
8. Xing, J., Wang, S. X., Jang, C., Zhu, Y., and Hao, J. M.: Nonlinear response of ozone to precursor emission changes in China: a modeling study using response surface methodology, Atmos. Chem. Phys., 11, 5027-5044, doi:10.5194/acp-11-5027-2011, 2011.
9. Xing, J., Wang, S. X., Chatani, S., Zhang, C. Y., Wei, W., Hao, J. M., Klimont, Z., Cofala, J., and Amann, M.: Projections of air pollutant emissions and its impacts on regional air quality in China in 2020, Atmos. Chem. Phys., 11, 3119-3136, doi:10.5194/acp-11-3119-2011, 2011.
10. Xing, J., Zhang, Y., Wang, S., Liu, X., Cheng, S., Zhang, Q., Chen, Y.S., Streets, D., Jang, C., Hao, J. and Wang, W. Modeling study on the air quality impacts from emission reductions and atypical meteorological conditions during the 2008 Beijing Olympics. Atmospheric Environment, 45(10), 1786-1798, 2011.
11. Wang, S., Xing, J., Zhao, B., Jang, C., and Hao, J. Effectiveness of national air pollution control policies on the air quality in metropolitan areas of China. Journal of Environmental Sciences, 26(1), 13-22, 2014.
12. Wang, S., Xing, J., Jang, C., Zhu, Y., Fu, J. S., and Hao, J., Impact assessment of ammonia emissions on inorganic aerosols in east China using response surface modeling technique. Environmental science & technology, 45(21), 9293-9300, 2011.
13. Wang, S., Xing, J., Chatani, S., Hao, J., Klimont, Z., Cofala, J., and Amann, M. Verification of anthropogenic emissions of China by satellite and ground observations. Atmospheric Environment, 45(35), 6347-6358, 2011.
14. Seltzer, K.M., Nolte, C.G., Spero, T.L., Appel, K.W. and Xing, J. Evaluation of near surface ozone and particulate matter in air quality simulations driven by dynamically downscaled historical meteorological fields. Atmospheric Environment, 138, pp.42-54, 2016.
15. Zhao, B., Wang, S. X., Xing, J., Fu, K., Fu, J. S., Jang, C., Zhu, Y., Dong, X. Y., Gao, Y., Wu, W. J., Wang, J. D., and Hao, J. M.: Assessing the nonlinear response of fine particles to precursor emissions: development and application of an extended response surface modeling technique v1.0, Geosci. Model Dev., 8, 115-128, doi:10.5194/gmd-8-115-2015, 2015.
16. Simon, H., Reff, A., Wells, B., Xing, J. and Frank, N.: Ozone trends across the United States over a period of decreasing NOx and VOC emissions, Environmental Science and Technology, 49, 186?195, 2015.
17. Sarwar, G., Simon, H., Xing, J., and Mathur, R.: Importance of tropospheric ClNO2 chemistry across the Northern Hemisphere. Geophys. Res. Lett., 41, 4050–4058, doi:10.1002/2014GL059962, 2014.
18. Wang, S., Zhao, M., Xing, J., Wu, Y., Zhou, Y., Lei, Y., He, K., Fu, L., and Hao, J. Quantifying the air pollutants emission reduction during the 2008 Olympic Games in Beijing. Environmental Science & Technology, 44(7), 2490-2496,2010.
19. Klimont, Z., Cofala, J., Xing, J., Wei, W., Zhang, C., Wang, S., Jang, K., Bhandari, P., Mathur, R., Purohit, P., Rafaj, P., Chambers, A., Amann, M. and Hao, J. Projections of SO2, NOx and carbonaceous aerosols emissions in Asia. Tellus B, 61(4), 602-617,2009.
20. Zhao, Y., Duan, L., Xing, J., Larssen, T., Nielsen, C. P., and Hao, J.: Soil acidification in China: is controlling SO2 emissions enough?. Environmental science & technology, 43(21), 8021-8026, 2009.
来源:https://www.tsinghua.edu.cn/publish/env/6422/2017/20170314101145829644886/20170314101145829644886_.html
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