人物經歷
工作經歷
2017.11-至今
副教授,南京大學環境學院
2015.07-2017.10
助理研究員,南京大學環境學院
2006.07-2010.03
環評工程師,廣西環境保護科學研究院
教育背景
2010.09-2015.06
博士,南京大學環境學院,環境科學(環境規劃與管理)專業
2012.12-2014.09
國家留學基金委聯合培養博士,美國Emory大學,公共衛生學院環境健康系
2004.09-2006.06
碩士,南京大學城市與資源學系(現地理與海洋科學學院),自然地理學專業
2000.09-2004.06
學士,南京大學城市與資源學系(現地理與海洋科學學院),資源環境與城鄉規劃管理專業
研究方向
環境風險評估與管理,大氣污染暴露及健康影響
講授課程
環境信息系統(本科核心課,主講,36課時理論課+36課時上機課)
環境調查與統計分析(碩士核心課,主講,36課時)
地球系統科學(本科核心課,參與,負責“地球系統變化影響評估”內容講授,4課時)
主持項目
[1] 第二次污染源普查數據匯總分析與第三方評估技術支持項目, 環境風險區劃和地圖繪製方法研究, 2019.05-2019.09
[2] 水專項子課題, 太湖流域重點行業排污許可制度績效評估及完善對策研究, 2018.01-2020.06
[3] 國家自然科學基金青年科學基金項目, 區域短壽命氣候污染物(SLCPs)環境風險評價及驅動因素研究(41601546), 2017.01-2019.12
[4] 江蘇省自然科學基金青年基金項目, 基於衛星遙感的區域PM2.5精細化暴露研究(BK20160624), 2016.07-2018.06
獲獎情況
[1] 大氣污染健康風險管理研究, 中國管理科學學會第六屆管理科學獎(學術類), 個人排名2/8.
[2] 環境風險全過程最佳化管控技術研究, 2016年度高等學校科學研究優秀成果獎科學技術進步一等獎, 個人排名12/18
[3] 南京大學優秀博士學位論文, 2016年
發表論文
2019
[1] Zongwei Ma, Riyang Liu, Yang Liu, Jun Bi*: Effects of air pollution control policies on PM2.5 pollution improvement in China from 2005 to 2017: a satellite-based perspective. Atmospheric Chemistry and Physics, 19 (2019): 6861-6877. DOI: 10.5194/acp-19-6861-2019
[2] Guozhi Cao, Jun Bi, Zongwei Ma*, Zhijuan Shao*, Jinnan Wang. Seasonal characteristics of the chemical composition of fine particles in residences of Nanjing, China. International Journal of Environmental Research and Public Health, 16 (2019): 1066. DOI: 10.3390/ijerph16061066
[3] Jing Dai, Shu Li, Jun Bi*, Zongwei Ma*. The health risk-benefit feasibility of nuclear power development. Journal of Cleaner Production, 224 (2019): 198-206. DOI: 10.1016/j.jclepro.2019.03.206
[4] Guozhi Cao, Yue Gao, Jinnan Wang, Xiafei Zhou, Jun Bi*, Zongwei Ma*. Spatially resolved risk assessment of environmental incidents in China. Journal of Cleaner Production, 219 (2019): 856-864. DOI: 10.1016/j.jclepro.2019.02.130
[5] Sisi Pu, Zhijuan Shao, Lei Yang, Riyang Liu, Jun Bi, Zongwei Ma*. How much will the Chinese public pay for air pollution mitigation? A nationwide empirical study based on a willingness-to-pay scenario and air purifier costs. Journal of Cleaner Production, 218 (2019): 51-60. DOI: 10.1016/j.jclepro.2019.01.270
[6] Zhijuan Shao, Xiangjun Yin, Jun Bi, Zongwei Ma*, Jinnan Wang. Spatiotemporal variations of indoor PM2.5 concentrations in Nanjing, China. International Journal of Environmental Research and Public Health, 16 (2019): 144. DOI: 10.3390/ijerph16010144
[7] Sisi Pu, Zhijuan Shao, Minrui Fang, Lei Yang, Riyang Liu, Jun Bi*, Zongwei Ma*. Spatial distribution of the public's risk perception for air pollution: A nationwide study in China. Science of the Total Environment, 655 (2019): 454-462. DOI: 10.1016/j.scitotenv.2018.11.232
2018
[8] Guozhi Cao, Lei Yang, Lingxuan Liu, Jun Bi, Zongwei Ma*, Jinnan Wang*. Environmental incidents in China: lessons from 2006 to 2015. Science of the Total Environment, 633 (2018): 1165-1172. DOI: 10.1016/j.scitotenv.2018.03.271
[9] 呂培辰, 李舒, 馬宗偉*, 畢軍*.中國環境風險評價體系的完善:來自美國的經驗和啟示[J]. 環境監測與預警, 2018, 10(2):1-5. DOI:10.3969/j.issn.1674-6732.2018.02.001
2017
[10] Miaomiao Liu, Jun Bi, Zongwei Ma*. Visibility-Based PM2.5 Concentrations in China: 1957−1964 and 1973−2014. Environmental Science & Technology, 51 (2017): 13161-13169. DOI: 10.1021/acs.est.7b03468
[11] Wenxi Yu, Yang Liu, Zongwei Ma*, Jun Bi*. Improving satellite-based PM2.5 estimates in China using Gaussian processes modeling in a Bayesian hierarchical setting. Scientific Reports, 7 (2017): 7048. DOI: 10.1038/s41598-017-07478-0
[12] Miaomiao Liu, Xingyu Liu, Yining Huang, Zongwei Ma*, Jun Bi*. Epidemic transition of environmental health risk during China’s urbanization. Science Bulletin, 62 (2017): 92-98. DOI: 10.1016/j.scib.2016.12.004
[13] Ting Wen, Jigan Wang, Zongwei Ma*, Jun Bi*. Driving forces behind the Chinese public's demand for improved environmental safety. Science of the Total Environment, 603-604 (2017): 237–243. DOI: 10.1016/j.scitotenv.2017.06.086
[14] Zhijuan Shao , Jun Bi, Zongwei Ma *, Jinnan Wang *. Seasonal trends of indoor fine particulate matter and its determinants in urban residences of Nanjing, China. Building and Environment, 125(2017): 319-325. DOI: 10.1016/j.buildenv.2017.09.002
[15] 戴婧, 馬宗偉*, 畢軍, 鄒麗萍, 胡鴻飛. 環評與環境風險全過程管理協同發展對策探析[J]. 環境影響評價, 2017, 39(1): 1-4. DOI: 10.14086/j.ceia.2017.01.01
2016
[16] Zongwei Ma, Xuefei Hu, Andrew M. Sayer, Robert C. Levy, Qiang Zhang, Yingang Xue, Shilu Tong, Jun Bi, Lei Huang*, Yang Liu*. Satellite-based spatiotemporal trends in PM2.5 concentrations: China, 2004–2013. Environmental Health Perspectives, 124 (2016): 184-192. DOI: 10.1289/ehp.1409481 (ESI高被引論文)
[17] Zongwei Ma, Yang Liu, Qiuyue Zhao, Miaomiao Liu, Yuanchun Zhou, Jun Bi*. Satellite-derived high resolution PM2.5 concentrations in Yangtze River Delta Region of China using improved linear mixed effects model. Atmospheric Environment, 133 (2016): 156-164. DOI: 10.1016/j.atmosenv.2016.03.040
[18] Zongwei Ma, Kai Chen, Zhiyuan Li, Jun Bi, Lei Huang*. Heavy metals in soils and road dusts in the mining areas of Western Suzhou, China: A preliminary identification of contaminated sites. Journal of Soils and Sediments, 16 (2016): 204-214. DOI: 10.1007/s11368-015-1208-1
[19] Yang Liu, Zongwei Ma*, Jianshu Lv*, Jun Bi. Identifying sources and hazardous risks of heavy metals in topsoils of rapidly urbanizing East China. Journal of Geographical Sciences, 26 (2016): 735-749. DOI: 10.1007/s11442-016-1296-x
[20] 戴婧, 畢軍, 馬宗偉*. 風險排序及其在環境風險管控中的套用[J].環境監控與預警, 2016, 8(1): 1-4,18
2014
[21] Zongwei Ma, Xuefei Hu, Lei Huang, Jun Bi*, Yang Liu*. Estimating ground-level PM2.5 in China using satellite remote sensing. Environmental Science & Technology, 48 (2014): 7436−7444, DOI: 10.1021/es5009399 (ESI高被引論文)
[22] Zongwei Ma, Tiantian Li, Changsheng Qu, Jun Bi*, Lei Huang*. Evaluation and source identification of trace element contamination of soils in the Qixia lead-zinc mining area, Jiangsu, China. Journal of Soils and Sediments, 14 (2014):1703–1712, DOI: 10.1007/s11368-014-0900-x
2013
[23] Zongwei Ma, Kai Chen, Zengwei Yuan, Jun Bi*, Lei Huang*. Ecological risk assessment of heavy metals in surface sediments of six major Chinese freshwater lakes. Journal of Environmental Quality, 42 (2013):341–350, DOI: 10.2134/jeq2012.0178