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沈惠中
副教授(研究员)
shenhz@sustech.edu.cn

基本概况:

沈惠中,南方科技大学环境科学与工程学院副教授,国家级青年人才。先后在北京大学获得学士及博士学位,并在美国佐治亚理工学院从事博士后研究。主要研究方向为区域及全球温室气体及大气污染物的排放表征、驱动力及效应分析。代表性成果包括:1)系统评估了全球大气多环芳烃的排放、传输及肺癌风险;2)揭示了中国城市化过程中的人口迁移对生活能源结构转型、污染物排放、空气质量及人群健康的影响;3)评估了气候变化及能源政策等因素对污染物排放、空气质量、农田及自然生态系统的影响。致力于发展和应用空气质量模式及其正向和伴随敏感度分析方法,用于重污染事件诊断、健康影响评估和排放反演。研究成果在Nature Climate Change、Nature Food、Nature Human Behaviour、Science Advances、One Earth、Environmental Science & Technology等国际一流和知名期刊发表。合计发表SCI论文200余篇,英文专著1部,Web of Science总引用超过1万次,H指数61。

 

工作经历:

2022-至今, 南方科技大学, 环境科学与工程学院,副教授(研究员)

2021-2022, 南方科技大学, 环境科学与工程学院,助理教授(副研究员)

2016-2020, 佐治亚理工学院, 土木与环境工程学院,博士后研究员

2014-2016, 北京大学, 城市与环境学院,博士后研究员

 

教育背景:

2009-2014,北京大学,城市与环境学院,博士

2005-2009,北京大学,城市与环境学院,学士

 

社会兼职:

1. Environmental Science and Ecotechnology编委

2. Environmental Science & Technology编辑顾问委员会委员


研究方向:

温室气体及大气污染物排放的量化表征、驱动力及效应分析


教学:

1. 本科生课程:大气污染与防治 (主讲)

2. 研究生课程: 大气环境数值模拟 (主讲)


学术成果(发表论著或者论文)

1. Xie, D., Shen, H.*, Zhang, R., Mai, Z., Guan, T., Guo, P., Wang, Z., Chen, Y., Shen, G., Tao, S., 2026. Substantial PM2.5-Related Health Gains from Large-Scale Migration in China. Environmental Science & Technology. https://doi.org/10.1021/acs.est.6c00289.

2. Zhang, J., Shen, H.*, Lei, T., Zheng, Z., Zheng, L., Shen, G., He, J., Guo, P., Xu, R., Chen, Y., Cheng, Y., Su, H., Sun, H.Z., Meng, J., Guan, D., 2026. Plant-Level Health Benefits from Decarbonizing the Iron and Steel Industry in China. Environmental Science & Technology. https://doi.org/10.1021/acs.est.5c11135.

3. Wang, Z., Shen, H.*, Zhang, R., Xu, R., Guo, P., Zheng, Z., He, J., Wu, S., Chen, Y., Xie, D., Zhang, J., Zheng, L., Su, H., Guan, D., 2026. Construction activities drive half of China's ambient PM2.5 health burden. Environmental Science and Ecotechnology 29: 100666.

4. Wang, Z., Shen, H.*, Xie, D., Li, G., Xu, R., Chen, Y., Zheng, L., Zhang, R., Guo, Z., Wang, C., Ye, J., Zeng, Z., 2026. Urban-rural divergence in construction-related CO2 emissions in China amidst urbanization. Resources, Environment and Sustainability 100362.

5. Xu, R., Shen, H.*, Wang, P., Wang, T., Chen, Y., Guo, P., Mai, Z., He, J., Zheng, Z., Zhang, R., Wang, Z., Meng, J., Zhu, Y., Zhang, Y., Li, J., Dai, R., Zheng, S., Wang, C., Ye, J., Zhu, L., Shen, G., Fu, T.-M., Yang, X., Russell, A.G., Tao, S., 2026. Operational efficiencies reduce emission intensity of online shopping in China by one-third between 2000 and 2023. One Earth 9: 101564.

6. Zheng, Z., Shen, H.*, Chen, Y., Guo, P., Wang, Z., Zheng, L., Liu, Q., Luan, T., Sun, H.Z., Tao, S., 2026. Advancing Finely Resolved Adjoint Analysis of Global Premature Mortality From Ambient PM2.5 Exposure. Journal of Geophysical Research: Atmospheres 131: e2025JD043629.

7. Xu, R., Shen, H.*, Wang, P., Wang, T., Chen, Y., Guo, P., Mai, Z., He, J., Zheng, Z., Zhang, R., Wang, Z., Meng, J., Wang, C., Ye, J., Zhu, L., Shen, G., Fu, T.-M., Yang, X., Russell, A.G., Tao, S., 2025. E-commerce growth reduces primary PM2.5 emissions but increases secondary PM2.5 precursors in China. Environmental Science & Technology 59(41): 22060−22073.

8. Zhang, R., Chen, Z., Wu, X., Liu, Q., Mai, Z., Zheng, Z., Chen, Y., Tao, S., Hu, Y., Zhao, S., Hakami, A., Russell, A.G. and Shen, H.*, 2025. Adjoint analysis of PM2.5 and O3 episodes in priority control zones in China. Environmental Science and Ecotechnology 27: 100612.

9. Zheng, L., Adalibieke, W., Zhou, F.*, He, P.*, Chen, Y., Guo, P., He, J., Zhang, Y., Li, J., Li, W., Gan, Y., Xu, P., Wang, C., Ye, J., Zhu, L., Shen, G., Fu, Y.-M., Yang, X., Zhao, S., Hakami, A., Meng, J.*, Shen, H.*, 2025. Indirect emissions contribute a quarter of air pollution-related health burden of food systems in China. Nature Food 6: 766−776.

10. Han, Y., Shen, H.*, He, X., Mai, Z., Zhang, R., Zheng, Z., Liu, Y., Zhang, X., Li, G., Zhang, Z., Liang, Z., Chen, Y., Xie, Y., Li, M., Shen, G., Wang, C., Ye, J., Zhu, L., Fu, T., Yang, X., 2025. A Comprehensive Analysis of Interflight Variability in Carbon Dioxide Emissions from Global Aviation. Environmental Science & Technology 59: 6179−6191.

11. Guo, P., Shen, H.*, Chen Y., Dai H., Mai Z., Xu R., Zhang R., Wang Z., He J., Zheng L., Sun H.Z., Ke K., Meng J., Liu M., Li J., Adalibieke W., Wang C., Ye J., Zhu L., Shen G., Fu, T.-M., Tsang A., Yang X., Russell A.G., Driscoll C.T., Tao S., 2024. Carbon dioxide emissions from global overseas coal-fired power plants. Nature Climate Change 14: 1151–1157.

12. Zheng L., Adalibieke W., Zhou F.*, He, P.*, Chen Y., Guo, P., He J., Zhang Y., Xu P., Wang C., Ye J., Zhu L., Shen G., Fu, T.-M., Yang X., Zhao S., Hakami A., Russell A.G., Tao S., Meng J.*, Shen, H.*, 2024. Health burden from food systems is highly unequal across income groups. Nature Food 5: 251–261.

13. Mai, Z., Shen, H.*, Zhang, A., Sun, H., Zheng, L., Guo, J., Liu, C., Chen, Y., Wang, C., Ye, J., Zhu, L., Fu, T.-M., Yang, X., Tao, S., 2024. Convolutional Neural Networks Facilitate Process Understanding of Megacity Ozone Temporal Variability. Environmental Science & Technology https://doi.org/10.1021/acs.est.3c07907.

14. He, J., Shen, H.*, Lei, T., Chen, Y., Meng, J., Sun, Z., Li, M., Wang, C., Ye, J.H., Zhu, L., Zhou, Z.H., Shen, G., Guan, D., Fu, T.-M., Yang, X., Tao, S., 2023. Investigation of Plant-Level Volatile Organic Compound Emissions from Chemical Industry Highlights the Importance of Differentiated Control in China. Environmental Science & Technology 57(50): 21295–21305.

15. Zhang, J., Shen, H.*, Chen, Y., Meng, J., Li, J., He, J., Guo, P., Dai, R., Zhang, Y., Xu, R., Wang, J.H., Zheng, S., Lei, T., Shen, G., Wang, C., Ye, J., Zhu, L., Sun, H., Fu, T.-M., Yang, X., Guan, D., Tao, S., 2023. Iron and Steel Industry Emissions: A Global Analysis of Trends and Drivers. Environmental Science & Technology 57(43): 16477–16488.

16. Zheng, S., Shen, H.*, Shen, G., Chen, Y., Ma, J., Cheng, H., Tao, S., 2022. Vertically-resolved indoor measurements of air pollution during Chinese cooking. Environmental Science and Ecotechnology 12: 100200.

17. Shen, H., Luo, Z., Xiong, R., Liu, X., Zhang, L., Li, Y., Du, W., Chen, Y., Cheng, H., Shen, G., Tao, S., 2021. A critical review of pollutant emission factors from fuel combustion in home stoves. Environment International 157: 106841.

18. Shen, H.*, Sun, Z. (co-1st), Chen, Y., Russell, A.G., Hu, Y., Odman, M.T., Qian, Y., Archibald, A.T., Tao, S., 2021. Novel method for ozone isopleth construction and diagnosis for the ozone control strategy of Chinese cities. Environmental Science & Technology 55(23): 15625-15636.

19. Zhang, B., Shen, H.*, Liu, P., Guo, H., Hu, Y., Chen, Y., Xie, S., Xi, Z., Russell, A.G., 2021. Significant contrasts in aerosol acidity between China and the United States. Atmospheric Chemistry and Physics, 21: 8341–8356.

20. Shen, H., Shen, G.*, Chen, Y., Russell, A.G., Hu, Y., Duan, X., Meng, W., Xu, Y., Yun, X., Lyu, B., Zhao, S., Hakami, A., Tao, S., Smith, K.R., 2021. Increased air pollution exposure among the Chinese population during the national quarantine in 2020. Nature Human Behaviour, 5: 239–246.

21. Shen, H., Hou, W., Zhu, Y., Zheng, S., Ainiwaer, S., Shen, G., Chen, Y., Cheng, H., Hu, J., Tao, S.*, 2021. Temporal and spatial variation of PM2.5 in indoor air monitored by low-cost sensors. Science of The Total Environment, 770: 145304.

22. Shen, H., Liu, B., Chen, Y., Zhu, X., Yun, X., Meng, W., Lu, C., Shen, G., Hu, Y., Russell, A.G., Smith, K.R., Tao, S.*, 2021. Individual and population level protection from particulate matter exposure by wearing facemasks. Environment International, 146: 106026.

23. Shen, H.*, Chen, Y., Hu, Y., Ran, L., Lam, S.K., Pavur, G.K., Zhou, F., Pleim, J.E., Russell, A.G., 2020. Intense warming will significantly increase cropland ammonia volatilization threatening food security and ecosystem health. One Earth, 3(1): 126-134.

24. Chen, Y., Shen, H.*, Shih, J.S., Russell, A.G., Shao, S., Hu, Y., Odman M.T., Nenes, A., Pavur, G.K., Zou, Y., Chen, Z., Smith, R., Burtraw, D., Driscoll, C.T., 2020. Greater contribution from agricultural sources to future reactive nitrogen deposition in the United States. Earth’s Future, 11: e2019EF001453.

25. Zhao, Y., Zhang, K.*, Xu, X., Shen, H.*, Zhu, X., Zhang, Y., Hu, Y., Shen, G., 2020. Substantial changes in nitrogen dioxide and ozone after excluding meteorological impacts during the COVID-19 outbreak in mainland China. Environmental Science & Technology Letters, 7(6): 402-408.

26. Zhong, Q., Shen, H.*, Yun, X., Chen, Y., Ren, Y., Xu, H., Shen, G., Du, W., Meng, J., Li, W., Ma, J., Tao, S., 2020. Global sulfur dioxide emissions and the driving forces. Environmental Science & Technology, 54(11): 6508–6517.

27. Shen, H.*, Chen, Y. (co-1st), Li, Y. (co-1st), Russell, A.G., Hu, Y., Henneman, L.R.F., Odman, M.T., Shih, J.S., Burtraw, D., Shao, S., Yu, H., Qin, M., Chen, Z., Lawal, A.S., Pavur, G.K., Brown, M.A., Driscoll, C.T., 2019. Relaxing energy policies coupled with climate change will significantly undermine efforts to attain U.S. ozone standards. One Earth, 1(2): 229–239.

28. Shen, H., Tao, S.*, Chen, Y., Odman, M.T., Zou, Y., Huang, Y., Chen, H., Zhong, Q., Zhang, Y., Chen, Y., Su, S., Lin, N., Zhuo, S., Li, B., Wang, X., Liu, W., Liu, J., Pavur, G.K. and Russell, A.G., 2019. Global Fire Forecasts Using Both Large-Scale Climate Indices and Local Meteorological Parameters. Global Biogeochemical Cycles, 33(8): 1129–1145.

29. Zhong, Q., Shen, H.*, Yun, X., Chen, Y., Ren, Y., Xu, H., Shen, G., Ma, J. and Tao, S., 2019. Effects of International Fuel Trade on Global Sulfur Dioxide Emissions. Environmental Science & Technology Letters, 6(12): 727–731.

30. Shen, H., Chen, Y., Russell, A.G., Hu, Y., Shen, G., Yu, H., Henneman, L.R.F., Ru, M., Huang, Y., Zhong, Q., Chen, Y.C., Li, Y., Zou, Y., Zeng, E.Y., Fan, R. and Tao, S.*, 2018. Impacts of rural worker migration on ambient air quality and health in China: From the perspective of upgrading residential energy consumption. Environment International, 113: 290–299.

31. Shen, H., Tao, S.*, Chen, Y., Ciais, P., Guneralp, B., Ru, M., Zhong, Q., Yun, X., Zhu, X., Huang, T., Tao, W., Chen, Y., Li, B., Wang, X., Liu, W., Liu, J. and Zhao, S., 2017. Urbanization-induced population migration has reduced ambient PM2.5 concentrations in China. Science Advances, 3(7).

32. Shen, H., Tao, S.*, Liu, J., Huang, Y., Chen, H., Li, W., Zhang, Y., Chen, Y., Su, S., Lin, N., Xu, Y., Li, B., Wang, X. and Liu, W., 2014. Global lung cancer risk from PAH exposure highly depends on emission sources and individual susceptibility. Scientific Reports, 4: 6561.

33. Shen, H., Huang, Y., Wang, R., Zhu, D., Li, W., Shen, G., Wang, B., Zhang, Y., Chen, Y., Lu, Y., Chen, H., Li, T., Sun, K., Li, B., Liu, W., Liu, J. and Tao, S.*, 2013. Global Atmospheric Emissions of Polycyclic Aromatic Hydrocarbons from 1960 to 2008 and Future Predictions. Environmental Science & Technology, 47(12): 6415–6424.

34. Shen, H., Tao, S.*, Wang, R., Wang, B., Shen, G., Li, W., Su, S., Huang, Y., Wang, X., Liu, W., Li, B. and Sun, K., 2011. Global time trends in PAH emissions from motor vehicles. Atmospheric Environment, 45(12): 2067–2073.