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中国科学院大学研究生导师简介-童全松

中国科学院大学 免费考研网/2016-05-09

童全松 男 博导 东北地理与农业生态研究所
1975年生,中国科学院东北地理与农业生态研究所特聘研究员、博士生导师。主要从事大气气溶胶和臭氧的排放源、形成机制及其对人体健康, 农作物和气候变化的影响等领域的研究。开发了综合环境影响评估模型——空气污染影响模型(Air Pollution Impact Model, AMIP),将大气污染排放和环境浓度以及人体暴露联系起来,对空气污染对人体健康的影响进行预测和评估。最新开发的沙尘暴模型FENGSHA已经应用在美国环保局(US EPA)和大气海洋局(US NOAA)空气质量预报系统中。并在Nature、New England Journal of Medicine、Environmental Science & Technology, Journal of Geophysical Research –Atmospheres, Atmospheric Environment等国际学术刊物上发表论文30多篇

研究领域大气气溶胶的排放源、形成机制及其对人体健康和气候变化的影响等
招生信息招生专业:环境科学
招生方向:大气环境

招生专业


教育背景

教育经历1994-1998 中国海洋大学 化学 理学学士
2000-2003 美国北卡罗来纳州立大学 大气科学 博士
2004-2006 美国普林斯顿大学 环境风险评估 博士后
工作经历2010-至今 中国科学院东北地理与农业生态研究所 特聘研究员
2009-2011 美国国家海洋和大气管理局暨ERT 资深研究员
2006-2009 美国环保署国家剂量暴露研究实验室暨STC 研究员
2006-2012 美国北卡罗来纳州立大学 兼职助理教授
2004年 美国耶鲁大学森林与环境研究学院客座讲师
2003-2006 美国普林斯顿大学国际事务学院助理研究员

专利与奖励获奖情况
Early Career Scientist Assembly, National Center for Atmospheric Research (NCAR), 2010;
Outstanding Scientific Service, US Environmental Protection Agency (EPA), 2009;
National Science Foundation (NSF) MIRTHE Lectureship, Baltimore, MD, 2008.
START Young Scientist Award, 2006;
Who is Who in America, 2006;
Sigma Xi, Princeton Chapter, 2004;
Glaser Postdoctoral Research Fellowship, 2003-2005;
National Park Service Graduate Fellowship, North Carolina State University, 2000-2003;

出版信息论文发表
[1] Bao, H.M., S. Yu, and Tong, D.Q., Massive volcanic SO2 oxidation and sulphate aerosol deposition in Cenozoic North America, Nature, 465: 909-912, 17 June 2010.
[2] Tong, D.Q., N.Z., Muller, H. Kan, and R.O., Mendelsohn (2009). Using air quality modeling to study source–receptor relationships between nitrogen oxides emissions and ozone exposures over the United States, Environment International, 35:1107-1119.
[3] Tong, D.Q., R. Mathur, D. Kang, S. Yu, K.L. Schere, and G. Pouliot (2009). Vegetation exposure to ozone over the continental United States: Assessment of exposure indices by the Eta-CMAQ air quality forecast model, Atmospheric Environment, 43(3), pp724-733.
[4] Tong, D.Q., H. Kan, and S. Yu (2009). (Correspondence) Ozone Exposure and Mortality, The New England Journal of Medicine, 360(26), 2787-2787.
[5] Tong, D.Q. and D.L. Mauzerall (2008). Summertime State-Level Source-Receptor Relationships between NOx Emissions and Downwind Surface Ozone Concentrations over the Continental United States, Environmental Science and Technology, 42 (21), 7976–7984.
[6] Tong, D.Q., R. Mathur, K. Schere, D. Kang and S. Yu (2007). The use of air quality forecasts to assess impacts of air pollution on crops: A case study of assessing soybean yield losses from ozone in the United States. Atmospheric Environment, 41(38), pp 8772-8784.
[7] Tong, Q., D. Mauzerall, and R. Mendelsohn (2007). Modeling Source-Receptor Relationships and Health Impacts of Air Pollution in the United States, Air Pollution Modeling and Its Application XVII, pp. 119-126, doi:10.1007/**4-1.
[8] Tong, D.Q., and D.L., Mauzerall (2006). Spatial variability of summertime tropospheric O3 in the continental United States: an evaluation of the CMAQ model and its implications, Atmospheric Environment, Vol. 40, pp.3041.
[9] Tong, D.Q., Muller, N., D.L. Mauzerall, and R. Mendelsohn (2006), An integrated assessment of the impacts of ozone resulting from Nitrogen Oxide emissions near Atlanta, Environmental Science and Technology, Vol. 40, 5, pp.1395, 2006.
[10] Tong, D.Q., Arya, S.P., Aneja, V.P., and Ray, J. (2006). On the surface high-ozone events in the rural southeast United States National Parks: temporal distribution, origin and case study, the International Journal of Global Environmental Issues, Vol. 6, Nos. 2/3, pp.173-188.
[11] Tong, D.Q., Kang, D., Aneja, V.P., and Ray, J.D. (2005). Reactive Nitrogen Oxides in Southeast United States National Parks: Source Identification, Origin, and Process Budget, Atmospheric Environment, 39, pp.315-327.

科研活动在研项目:
中国科学院知识创新前沿项目“东北大气气溶胶排放模拟研究”

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