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联系方式

电子邮件:yuzhao@nju.edu.cn
电话:+86-25-89680650
地址:江苏省南京市仙林大道163号

          南京大学(仙林校区)环境学院B408,210023

 

 

 

教育背景
2008年7月 清华大学环境科学与工程系 硕士和博士(导师郝吉明院士
2003年7月 清华大学环境科学与工程系 学士

 

研究经历
2012年1月至今 南京大学环境学院 教授(环境工程系)
2008年9月-2011年12月  美国哈佛大学工程与应用科学学院 博士后(合作导师Michael B. McElroy教授Chris. P Nielsen
2006年6月-2006年9月 奥地利国际应用系统分析研究所 研究助理(合作者Markus Amann博士Janusz Cofala博士
2004年9月-2005年3月  挪威奥斯陆大学 访问学生(合作教授Hans Martin SeipThorjorn Larssen

 

研究领域:环境大气科学

多尺度大气污染物来源定量识别和评估校验;
区域和城市空气质量及改善途径;
大气污染物排放及控制的生态和环境健康效应

 

获奖/荣誉/学术兼职

国家-青年拔尖人才支持计划入选者;

国家自然科学基金委优秀青年科学基金获得者;

全国优秀博士学位论文获得者;

江苏省科学技术二等奖(城市尺度高分辨率大气污染物排放清单技术研发及应用,第一完成人);

教育部新世纪优秀人才支持计划入选者;

江苏省高层次人才引进计划(“双创计划”)入选者;

江苏省自然科学基金杰出青年基金获得者;

全国大气污染物源排放清单编制技术顾问专家组成员;

Aerosol and Air Quality Research编委;

Atmospheric Environment和Science of the Total Environment杰出评审人

 

代表论文 (全部论文列表)

  1. Zhao Y, Wang SX, Duan L, Lei Y, Cao PF, Hao JM. Primary air pollutant emissions of coal-fired power plants in China: Current status and future prediction. Atmospheric Environment, 42, 8442-8452, 2008.
  2. Zhao Y, Duan L, Xing J, Larssen T, Nielsen CP, Hao JM. Soil acidification in China: Is controlling SO2 emissions enough. Environmental Science & Technology, 43, 8021-8026, 2009 (Environmental Science & Technology欧盟委员会报道).
  3. Zhao Y*, Wang SX, Nielsen CP, Li XH, Hao JM. Establishment of a database of emission factors for atmospheric pollutants from Chinese coal-fired power plants. Atmospheric Environment, 44, 1515-1523, 2010 (2010年至今Atmospheric Environment 被引次数最高论文之一).
  4. Zhao Y*, Nielsen CP, Lei Y., McElroy MB, Hao JM. Quantifying the uncertainties of a bottom-up emission inventory of anthropogenic atmospheric pollutants in China. Atmospheric Chemistry and Physics, 11, 2295-2308, 2011 (ESI高引论文).
  5. Zhao Y*, Nielsen CP, McElroy MB. China’s CO2 emissions estimated from the bottom up: Recent trends, spatial distributions, and quantification of uncertainties. Atmospheric Environment, 59, 214-223, 2012 (哈佛大学美国国家科学基金会报道).
  6. Zhao Y*, Zhang J, Nielsen CP. The effects of recent control policies on trends in emissions of anthropogenic atmospheric pollutants and CO2 in China. Atmospheric Chemistry and Physics, 13, 487-508, 2013 (华尔街日报报道).
  7. Zhao Y*, Qiu L, Xu R, Xie F, Zhang Q, Yu Y, Nielsen CP, Qin H, Wang H, Wu X, Li W, Zhang J. Advantages of city-scale emission inventory for urban air quality research and policy: the case of Nanjing, a typical industrial city in the Yangtze River Delta, China, Atmospheric Chemistry and Physics, 15, 12623-12644, 2015.
  8. Xia Y, Zhao Y*, Nielsen CP. Benefits of China’s efforts in gaseous pollutant control indicated by the bottom-up emissions and satellite observations 2000–2014. Atmospheric Environment, 136, 43-53, 2016.

  9. Zhou Y, Zhao Y*, Mao P, Zhang Q, Zhang J, Qiu L, Yang Y. Development of a high-resolution emission inventory and its evaluation and application through air quality modeling for Jiangsu Province, China, Atmospheric Chemistry and Physics, 17, 211-233, 2017.

  10. Zhao Y*, Mao P, Zhou Y, Yang Y, Zhang J, Wang S, Dong Y, Xie F, Yu Y, Li W. Improved provincial emission inventory and speciation profiles of anthropogenic non-methane volatile organic compounds: a case study for Jiangsu, China, Atmospheric Chemistry and Physics, 17, 7733-7756, 2017.

  11. Zhao X, Zhao Y*, Chen D, Li C, Zhang J. Top-down estimate of black carbon emissions for city cluster using ground observations: A case study in southern Jiangsu, China. Atmospheric Chemistry and Physics 19, 2095-2113, 2019.

  12. Zhang Y, Bo X, Zhao Y*, Nielsen C. Benefits of current and future policies on emissions of China's coal-fired power sector indicated by continuous emission monitoring. Environmental Pollution, 251, 415-424, 2019.

  13. Yang Y, Zhao Y*, Quantification and evaluation of atmospheric pollutant emissions from open biomass burning with multiple methods: A case study for Yangtze River Delta region, China. Atmospheric Chemistry and Physics 19, 327-348, 2019.

  14. Zhao Y*, Yuan M, Huang X, Chen F, Zhang J. Quantification and evaluation of atmospheric ammonia emissions with different methods: a case study for the Yangtze River Delta region, China. Atmospheric Chemistry and Physics, 20, 4275–4294, 2020.

  15. Chen D ,  Zhao Y* , Zhang J , et al. Characterization and source apportionment of aerosol light scattering in a typical polluted city in the Yangtze River Delta, China[J]. Atmospheric Chemistry and Physics, 2020, 20(17):10193-10210.

  16. Yu Zhao*  , Yiwei Huang , Fangjian Xie , Xin Huang , Yang Yang.The effect of recent controls on emissions and aerosol pollution at city scale: A case study for Nanjing, China[J]. Atmospheric Environment, 2021,118080. 

  17. Yang Y, Zhao Y*, Zhang L, Zhang J, Huang X, Zhao X, Zhang Y, Xi M, Lu Y. Improvement of the satellite-derived NOx emissions on air quality modeling and its effect on ozone and secondary inorganic aerosol formation in the Yangtze River Delta, China Atmospheric Chemistry and Physics, 21, 1191–1209, 2021

  18. Yang J, Zhao Y*, Cao J, Nielsen C. Co-benefits of carbon and pollution control policies on air quality and health till 2030 in China, Environment International, 152, 106482, 2021.

  19. Zhang Y, Zhao Y*, Gao M, Bo X, Nielsen C. Air quality and health benefits from ultra-low emission control policy indicated by continuous emission monitoring: A case study in the Yangtze River Delta region, China. Atmospheric Chemistry and Physics, 21, 6411-6430, 2021.

  20. Zhou K, Zhao Y*, Zhang L, Xi M. Declining dry deposition of NO2 and SO2 with diverse spatiotemporal patterns in China from 2013 to 2018. Atmospheric Environment, 262, 118655, 2021.

  21. Zhao W, Zhao Y*, Ma M, Chang M, Duan L. Long-term variability in base cation, sulfur and nitrogen deposition and critical load exceedance of terrestrial ecosystems in China. Environmental Pollution, 289, 117974, 2021.

  22. Wu R, Zhao Y*, Xia S, Hu W, Xie F, Zhang Y, Sun J, Yu H, An J, Wang Y. Reconciling the bottom-up methodology and ground measurement constraints to improve the city-scale NMVOCs emission inventory: A case study of Nanjing, China. Science of the Total Environment, 812, 152447, 2022.

  23. Yu Zhao* , Mengxiao Xi, Qiang Zhang et.al  Decline in bulk deposition of air pollutants in China lags behind reductions in emissions[J]. Nature Geoscience, 2022, 15(3):190-195 .

  24. Liang Dai , Lei Zhang , Dong Chen , Yu Zhao*.  Assessment of carbonaceous aerosols in suburban Nanjing under air pollution control measures: Insights from long-term measurement [J]. Environmental Research,  212 (2022) 113302 .

 

 

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