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=Published / In press=
 
=Published / In press=
#'''Feng, X.''', '''Ma, Y.''', '''Lin, H.''', '''Fu, T.-M.*''', Zhang, Y., '''Wang, X.''', '''Zhang, A.''', Yuan, Y., Han, Z., Mao, J., Wang, D., Zhu, L., '''Wu, Y.''', Li, Y., Yang, X. (2023), Impacts of ship emissions on air quality in Southern China: opportunistic insights from the abrupt emission changes in early 2020, ''Environmental Science & Technology'', doi:10.1021/acs.est.3c04155. [https://atmoschem.org.cn/papers/1Feng_et_al_2023-Impacts-of-ship-emissions-on-air-quality-in-southern-china-opportunistic-insights-from-the-abrupt.pdf PDF]    [https://pubs.acs.org/doi/epdf/10.1021/acs.est.3c04155 Full text].
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[http://120.25.167.165:8888/down/YT78Lhsun01z Download All PDFs]
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# Kim, H., Park, R. J., Hong, S.-Y., Park, D.-H., Kim, S.-W., Oak, Y. J., '''Feng, X.''', '''Lin, H.''', '''Fu, T.-M.''' (2024), A mixed layer height parameterization in a 3-D chemical transport model: Implications for gas and aerosol simulations. ''Science of the Total Environment'', doi:10.1016/j.scitotenv.2024.176838. [https://www.sciencedirect.com/science/article/pii/S004896972406995X Full text]
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# Cai, B., Wang, Y., Yang, X., Li, Y., Zhai, J., Zeng, Y., Ye, J., Zhu, L., '''Fu, T.-M.''', Zhang, Q. (2024), Rapid aqueous-phase dark reaction of phenols with nitrosonium ions: Novel mechanism for atmospheric nitrosation and nitration at low pH, ''PNAS Nexus'', doi:10.1093/pnasnexus/pgae385. [https://doi.org/10.1093/pnasnexus/pgae385 Full text]
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# Zhai, J., Shao, S., Yang, X., Zeng, Y., '''Fu, T.-M.''', Zhu, L., Shen, H., Ye, J., Wang, C., Tao, S. (2024), Chemically Resolved Respiratory Deposition of Ultrafine Particles Characterized by Number Concentration in the Urban Atmosphere, ''Environmental Science & Technology'', doi:10.1021/acs.est.4c03279. [https://doi.org/10.1021/acs.est.4c03279 Full text]
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# Wang, D., Pu, D., De Smedt, I., Zhu, L. *, Yang, X. *, Sun, W., Xia, H., Song, Z., Li, X., Li, J., Zhang, A., Feng, X., Chen, Y., Yang, X., Fu, T.-M., Wang, J. (2024), Evolution of global O3-NOx-VOCs sensitivity before and after the COVID-19 from the ratio of formaldehyde to NO2 from satellites observations, ''Journal of Environmental Sciences'', [https://doi.org/10.1016/j.jes.2024.07.029 Full text]
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# '''Wu, W.''', '''Fu, T.-M.*''', Arnold, S.*, Spracklen, D.V., '''Zhang, A.''', '''Tao, W.''', '''Wang, X.''', '''Hou, Y.''', '''Mo, J.''', '''Chen, J.''', '''Li, Y.''', '''Feng, X.''', '''Lin, H.''', Huang, Z., Zheng, J., Shen, H., Zhu, L., Wang, C., Ye, J., Yang, X. (2024), Temperature-dependent evaporative anthropogenic VOC emissions significantly exacerbate regional ozone pollution. ''Environmental Science & Techonology'', doi:10.1021/acs.est.3c09122.[https://pubs.acs.org/doi/10.1021/acs.est.3c09122 Full text]
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# '''Zhang, L.''', '''Fu, T.-M.*''', Hu, Z., Liu, H., Meng, Z., Ma, L., Dai, J., Zhang, F. (2024), Springtime mesoscale convective systems over South China: a historic radar image-based analysis of climatological features, interannual variability, and potential connections with surface aerosol, ''Environmental Research Letters'', doi:10.1088/1748-9326/ad2024. [https://iopscience.iop.org/article/10.1088/1748-9326/ad2024 Full text]
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#Hu, W., Zhao, Y., Lu, N., Wang, X., Zheng, B., Henze, D. K., Zhang, L., '''Fu, T.-M.''', Zhai, S. (2024), Changing responses of PM2.5 and ozone to source emissions in the Yangtze River Delta using the adjoint model, ''Environmental Science & Technology'', 58(1), 628-638, doi:10.1021/acs.est.3c05049. [https://pubs.acs.org/doi/abs/10.1021/acs.est.3c05049 Full text]
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#Wang, F., Xiang, L., Leung, K. S.-Y. et al. (2024), Emerging contaminants: a One Health perspective, ''The Innovation'', doi:10.1016/j.xinn.2024.100612. [https://www.sciencedirect.com/science/article/pii/S266667582400050X Full text]
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#Mai, Z., Shen, H., '''Zhang, A.''', Sun, H. Z., 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'', doi:10.1021/acs.est.3c07907. [https://pubs.acs.org/doi/10.1021/acs.est.3c07907 Full text]
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#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, doi:10.1038/s43016-024-00946-7. [https://www.nature.com/articles/s43016-024-00946-7 Full text]
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#Zeng, Y., Zhang, A., Yang, X., Xing, C., Zhai, J., Wang, Y., Cai, B., Shi, S., Zhang, Y., Shen, Z., '''Fu, T.-M.''', Zhu, L., Shen, H., Ye., J., Wang, C. (2024), Internal exposure potential of water-soluble organic molecules in urban PM2.5 evaluated by non-covalent adductome of human serum albumin, ''Environment International'', 184, 108492, doi:10.1016/j.envint.2024.108492. [https://www.sciencedirect.com/science/article/pii/S0160412024000783?via%3Dihub Full text]
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#Liu, S., Shu, L., Zhu, L. *, Song, Y., Sun, W., Chen, Y., Wang, D., Pu, D., Li, X., Sun, S., Li, J., Zuo, X., Fu, W., Yang, X., '''Fu, T.-M.''' (2024), Underappreciated emission spikes and impacts on air quality during heatwaves, ''Earths Future'', 12(2), 302023EF003937, doi:10.1029/2023EF003937. [https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2023EF003937 Full text]
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#Wang, Y., Xing, C., Cai, B., Qiu, W., Zhai, J., Zeng, Y., Zhang, A., Shi, S., Zhang, Y., Yang, X., '''Fu, T.-M.''', Shen, H., Wang, C., Zhu, L., Ye, J. (2024), Impact of antioxidants on PM2.5 oxidative potential, radical level, and cytotoxicity, ''Science of the Total Environment'', 912, 169555, doi:10.1016/j.scitotenv.2023.169555. [https://www.sciencedirect.com/science/article/abs/pii/S0048969723081858?via%3Dihub Full text]
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#Zuo, X., Sun, W., De Smedt, I., Li, X., Liu, S., Pu, D., Sun, S., Li, J., Chen, Y., Fu, W., Zhang, P., Li, Y., Yang, X., '''Fu, T.-M.''', Shen, H., Ye, J., Wang, C., Zhu, L. (2023), Observing downwind structures of urban HCHO plumes from space: Implications to non-methane volatile organic compound emissions, ''Geophysical Research Letters'', 50(24), e2023GL106062, doi:10.1029/2023GL106062. [https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2023GL106062 Full text]
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#Chen, Y., Liu, S., Zhu, L., Seo S., Richter, A., Li, X., Ding, A., Sun, W., Shu, L., Wang, X., Valks, P., Hendrick, F., Koenig, T. K., Volkamer, R., Bai, B., Wang, D., Pu, D., Sun, S., Li, J., Zuo, X., Fu, W., Li, Y., Zhang, P., Yang, X., '''Fu, T.-M.''' (2023), Global observations of tropospheric bromine monoxide (BrO) columns from TROPOMI, ''Journal of Geophysical Research-Atmospheres'', 128(24), e2023JD039091, doi:10.1029/2023JD03901. [https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2023JD039091 Full text]
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#Liu, S., Li, X., Li, J., Shu, L., '''Fu, T.-M.''', Yang, X., Zhu, L. (2023), Observing network effect of shipping emissions from space: a natural experiment in the world’s busiest port, ''PNAS Nexus'', doi:10.1093/pnasnexus/pgad391. [https://academic.oup.com/pnasnexus/article/2/11/pgad391/7420191?login=false Full text]
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#'''Feng, X.''', '''Ma, Y.''', '''Lin, H.''', '''Fu, T.-M.*''', Zhang, Y., '''Wang, X.''', '''Zhang, A.''', Yuan, Y., Han, Z., Mao, J., Wang, D., Zhu, L., '''Wu, Y.''', Li, Y., Yang, X. (2023), Impacts of ship emissions on air quality in Southern China: opportunistic insights from the abrupt emission changes in early 2020, ''Environmental Science & Technology'', doi:10.1021/acs.est.3c04155. [https://atmoschem.org.cn/papers/1Feng_et_al_2023-Impacts-of-ship-emissions-on-air-quality-in-southern-china-opportunistic-insights-from-the-abrupt.pdf PDF]    [https://pubs.acs.org/doi/epdf/10.1021/acs.est.3c04155 Full text]. [https://pubs.acs.org/cms/10.1021/esthag.2023.57.issue-44/asset/esthag.2023.57.issue-44.largecover-3.jpg Journal cover image].
 
#'''Li, Y.''', '''Fu, T.-M.*''', Yu, J. Z.*, Yu, X., Chen, Q., Miao, R., Zhou, Y., '''Zhang, A.''', Ye, J., Yang, X., Tao, S., Liu, H., Yao, W. (2023), Dissecting the contributions of organic nitrogen aerosols to global atmospheric nitrogen deposition and implications for ecosystems, ''National Science Review'', nwad244, doi:10.1093/nsr/nwad244. [https://atmoschem.org.cn/papers/2Li_et_al_2023_National_Science_Review_Dissecting.pdf PDF]  [https://doi.org/10.1093/nsr/nwad244 Full text]
 
#'''Li, Y.''', '''Fu, T.-M.*''', Yu, J. Z.*, Yu, X., Chen, Q., Miao, R., Zhou, Y., '''Zhang, A.''', Ye, J., Yang, X., Tao, S., Liu, H., Yao, W. (2023), Dissecting the contributions of organic nitrogen aerosols to global atmospheric nitrogen deposition and implications for ecosystems, ''National Science Review'', nwad244, doi:10.1093/nsr/nwad244. [https://atmoschem.org.cn/papers/2Li_et_al_2023_National_Science_Review_Dissecting.pdf PDF]  [https://doi.org/10.1093/nsr/nwad244 Full text]
# Zhai, J., Yu, G., Zhang, J., Shi, S., Yuan, Y., Jiang, S., Xing, C., Cai, B., Zeng, Y., Wang, Y., Zhang, A., Zhang, Y., '''Fu, T.-M.''', Zhu, L., Shen, H., Ye, J., Wang, C., Tao, S., Li, M., Zhang, Y.*, Yang, X.* (2023), Impact of ship emissions on air quality in the Greater Bay Area in China under the Latest Global Marine Fuel Regulation, ''Enviornmental Science & Technology'',  doi:10.1021/acs.est.3c03950.[https://pubs.acs.org/doi/10.1021/acs.est.3c03950 Full text].
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# Zhang, J., Shen, H., Chen, Y., Meng, J., Li, J., He, J., Guo, P., Dai, R., Zhang, Y., Xu, R., Wang, J., Zheng, S., Lei, T., Shen, G., Wang, C., Ye, J., Zhu, L., Sun, H.Z., '''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'', doi:10.1021/acs.est.3c05474. [https://pubs.acs.org/doi/10.1021/acs.est.3c05474 Full text]
# 刘婵芳, '''张傲星*''', 房庆, 叶毓婧, 杨红龙, '''陈炯恺''', '''吴雯潞''', '''侯岳''', '''莫佳佳''', '''傅宗玫'''. (2023), 深圳市2022年春季新冠疫情管控期间空气质量分析[J/OL], ''环境科学'', 44(6):3117-3129, doi:10.13227/j.hjkx.202205313. [https://www.hjkx.ac.cn/hjkx/ch/reader/view_abstract.aspx?flag=1&file_no=20230612&journal_id=hjkx Full text]
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# Zhai, J., Yu, G., Zhang, J., Shi, S., Yuan, Y., Jiang, S., Xing, C., Cai, B., Zeng, Y., Wang, Y., Zhang, A., Zhang, Y., '''Fu, T.-M.''', Zhu, L., Shen, H., Ye, J., Wang, C., Tao, S., Li, M., Zhang, Y.*, Yang, X.* (2023), Impact of ship emissions on air quality in the Greater Bay Area in China under the Latest Global Marine Fuel Regulation, ''Enviornmental Science & Technology'',  doi:10.1021/acs.est.3c03950. [https://atmoschem.org.cn/papers/3Zhai_et_al_2023_EST_Impact-of-ship-emissions.pdf PDF]  [https://pubs.acs.org/doi/10.1021/acs.est.3c03950 Full text].
# '''Zhang, A.''', '''Fu, T.-M.*''', '''Feng, X.''', Guo, J., Liu, C., '''Chen, J.''', '''Mo, J.''', Zhang, X., '''Wang, X.''', '''Wu, W.''', '''Hou, Y.''', Yang, H., Lu, C. (2023), Deep learning-based ensemble forecasts and predictability assessments for surface ozone pollution. ''Geophysical Research Letters'', e2022GL102611, doi:10.1029/2022GL102611. [https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2022GL102611 Full text]
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# 刘婵芳, '''张傲星*''', 房庆, 叶毓婧, 杨红龙, '''陈炯恺''', '''吴雯潞''', '''侯岳''', '''莫佳佳''', '''傅宗玫'''. (2023), 深圳市2022年春季新冠疫情管控期间空气质量分析[J/OL], ''环境科学'', 44(6):3117-3129, doi:10.13227/j.hjkx.202205313. [https://atmoschem.org.cn/papers/4Shenzhen_2022_Covid_HuanJingKeXue.pdf PDF]  [https://www.hjkx.ac.cn/hjkx/ch/reader/view_abstract.aspx?flag=1&file_no=20230612&journal_id=hjkx Full text]
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# '''Zhang, A.''', '''Fu, T.-M.*''', '''Feng, X.''', Guo, J., Liu, C., '''Chen, J.''', '''Mo, J.''', Zhang, X., '''Wang, X.''', '''Wu, W.''', '''Hou, Y.''', Yang, H., Lu, C. (2023), Deep learning-based ensemble forecasts and predictability assessments for surface ozone pollution. ''Geophysical Research Letters'', e2022GL102611, doi:10.1029/2022GL102611. [https://atmoschem.org.cn/papers/5GRL_2023_Zhang_Deep_Learning_Forecasts.pdf PDF]  [https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2022GL102611 Full text]
 
# '''Wang, X.''', '''Fu, T.-M.*''', Zhang, L.*, Lu, X., Liu, X., Amnuaylojaroen, T., Latif, M. T., '''Ma, Y.''', '''Zhang, L.''', '''Feng, X.''', Zhu, L., Shen, H., Yang, X. (2022), Rapidly changing emissions drove substantial surface and tropospheric ozone increases over Southeast Asia, ''Geophysical Research Letters'', e2022GL100223, doi:10.1029/2022GL100223.  [https://atmoschem.org.cn/papers/Wang_et_al_2022_Geophysical_Research_Letters.pdf PDF] [https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1029/2022GL100223 Full text].
 
# '''Wang, X.''', '''Fu, T.-M.*''', Zhang, L.*, Lu, X., Liu, X., Amnuaylojaroen, T., Latif, M. T., '''Ma, Y.''', '''Zhang, L.''', '''Feng, X.''', Zhu, L., Shen, H., Yang, X. (2022), Rapidly changing emissions drove substantial surface and tropospheric ozone increases over Southeast Asia, ''Geophysical Research Letters'', e2022GL100223, doi:10.1029/2022GL100223.  [https://atmoschem.org.cn/papers/Wang_et_al_2022_Geophysical_Research_Letters.pdf PDF] [https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1029/2022GL100223 Full text].
 
# Xing, C., Wang, Y., Yang, X., Zeng, Y., Zhai, J., Cai, B., Zhang, A., '''Fu, T.-M.''', Zhu, L., Li, Y., Wang, X., Zhang, Y. (2022), Seasonal variation of driving factors of ambient PM2.5 oxidative potential in Shenzhen, China, ''Science of the Total Environment'', 862(1), doi:10.1016/j.scitotenv.2022.160771.[https://atmoschem.org.cn/papers/Xing_et_al_2022_Science_of_the_Total_Environment.pdf PDF] [https://www.sciencedirect.com/science/article/pii/S0048969722078743 Full text].
 
# Xing, C., Wang, Y., Yang, X., Zeng, Y., Zhai, J., Cai, B., Zhang, A., '''Fu, T.-M.''', Zhu, L., Li, Y., Wang, X., Zhang, Y. (2022), Seasonal variation of driving factors of ambient PM2.5 oxidative potential in Shenzhen, China, ''Science of the Total Environment'', 862(1), doi:10.1016/j.scitotenv.2022.160771.[https://atmoschem.org.cn/papers/Xing_et_al_2022_Science_of_the_Total_Environment.pdf PDF] [https://www.sciencedirect.com/science/article/pii/S0048969722078743 Full text].
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# '''Lin, H.''', '''Feng, X.''', '''Fu, T.-M.*''', '''Tian, H.''', '''Ma, Y.''', '''Zhang, L.''', Jacob, D.J., Yantosca, R.M., Sulprizio, M.P., Lundgren, E.W., Zhuang, J., Zhang, Q., Lu, X., Zhang, L., Shen, L., Guo, J., Eastham, S.D., Keller, C.A. (2020), WRF-GC (v1.0): online coupling of WRF (v3.9.1.1) and GEOS-Chem (v12.2.1) for regional atmospheric chemistry modeling – Part 1: Description of the one-way model, ''Geosci. Model Dev.'', doi:10.5194/gmd-13-3241-2020. [https://atmoschem.org.cn/papers/Lin_et_al_2020_Geoscientific_Model_Development.pdf PDF ] [https://gmd.copernicus.org/articles/13/3241/2020/gmd-13-3241-2020.html Full text]
 
# '''Lin, H.''', '''Feng, X.''', '''Fu, T.-M.*''', '''Tian, H.''', '''Ma, Y.''', '''Zhang, L.''', Jacob, D.J., Yantosca, R.M., Sulprizio, M.P., Lundgren, E.W., Zhuang, J., Zhang, Q., Lu, X., Zhang, L., Shen, L., Guo, J., Eastham, S.D., Keller, C.A. (2020), WRF-GC (v1.0): online coupling of WRF (v3.9.1.1) and GEOS-Chem (v12.2.1) for regional atmospheric chemistry modeling – Part 1: Description of the one-way model, ''Geosci. Model Dev.'', doi:10.5194/gmd-13-3241-2020. [https://atmoschem.org.cn/papers/Lin_et_al_2020_Geoscientific_Model_Development.pdf PDF ] [https://gmd.copernicus.org/articles/13/3241/2020/gmd-13-3241-2020.html Full text]
 
# Elguindi, N., Granier, C., Stavrakou, S., Darras, S., Bauwens, M., '''Cao, H.''', Chen, C., Denier van der Gon, H. A. C., Dubovik, O., '''Fu, T.-M.''', Henze, D. K., Jiang, Z., Keita, S., Kuenen, J. J. P., Kurokawa, J., Liousse, C., Miyazaki, K., Muller, J.-F., Qu, Z., Solmon, F., Zheng, B. (2020), Intercomparison of magnitudes and trends in anthropogenic surface emissions from bottom-up inventories, top-down estimates, and emission scenarios. ''Earth's Future'',doi:10.1029/2020EF001520[https://atmoschem.org.cn/papers/N.Elguindi_et_al_Earth's_Future.pdf PDF ] [https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2020EF001520 Full text]
 
# Elguindi, N., Granier, C., Stavrakou, S., Darras, S., Bauwens, M., '''Cao, H.''', Chen, C., Denier van der Gon, H. A. C., Dubovik, O., '''Fu, T.-M.''', Henze, D. K., Jiang, Z., Keita, S., Kuenen, J. J. P., Kurokawa, J., Liousse, C., Miyazaki, K., Muller, J.-F., Qu, Z., Solmon, F., Zheng, B. (2020), Intercomparison of magnitudes and trends in anthropogenic surface emissions from bottom-up inventories, top-down estimates, and emission scenarios. ''Earth's Future'',doi:10.1029/2020EF001520[https://atmoschem.org.cn/papers/N.Elguindi_et_al_Earth's_Future.pdf PDF ] [https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2020EF001520 Full text]
# '''Ma, Y.''', '''Fu, T.-M.*''', '''Tian, H.''', Gao, J., Hu, M., Guo, J., Zhang, Y., Sun, Y., '''Zhang, L.''', Yang, X., Wang, X. (2020), Emergency Response Measures to Alleviate a Severe Haze Pollution Event in Northern China during December 2015: Assessment of Effectiveness. ''Aerosol and Air Quality Research'', doi:10.4209/aaqr.2019.09.0442. [https://atmoschem.org.cn/papers/Ma_et_al_2020_Aerosol_and_Air_Quality_Research.pdf Full text]
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# '''Ma, Y.''', '''Fu, T.-M.*''', '''Tian, H.''', Gao, J., Hu, M., Guo, J., Zhang, Y., Sun, Y., '''Zhang, L.''', Yang, X., Wang, X. (2020), Emergency Response Measures to Alleviate a Severe Haze Pollution Event in Northern China during December 2015: Assessment of Effectiveness. ''Aerosol and Air Quality Research'', doi:10.4209/aaqr.2019.09.0442. [https://atmoschem.org.cn/papers/Ma_et_al_2020_Aerosol_and_Air_Quality_Research.pdf PDF]  [https://aaqr.org/articles/aaqr-19-09-oa-0442 Full Text]
# Wang, X., Ye, X., Chen, J., Wang, X., Yang, X., '''Fu, T.-M.''', Zhu, L., Liu, C. (2020), Direct links between hygroscopicity and mixing state of ambient aerosols: estimating particle hygroscopicity from their single-particle mass spectra, ''Atmos. Chem. Phys.'', 20, 6273–6290, doi:10.5194/acp-20-6273-2020. [https://atmoschem.org.cn/papers/Wang_et_al_2020_Atmospheric_Chemistry_and_Physics.pdf Full text]
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# Wang, X., Ye, X., Chen, J., Wang, X., Yang, X., '''Fu, T.-M.''', Zhu, L., Liu, C. (2020), Direct links between hygroscopicity and mixing state of ambient aerosols: estimating particle hygroscopicity from their single-particle mass spectra, ''Atmos. Chem. Phys.'', 20, 6273–6290, doi:10.5194/acp-20-6273-2020. [https://atmoschem.org.cn/papers/Wang_et_al_2020_Atmospheric_Chemistry_and_Physics.pdf PDF] [https://acp.copernicus.org/articles/20/6273/2020/ Full Text]
#Xu, X., Lu, X., Li, X. Liu, Y., Wang, X., Chen, H., Chen, J., Yang, X., '''Fu, T.-M.''', Zhao, Q., Fu, Q. (2020), ROS-generation potential of Humic-like substances (HULIS) in ambient PM2.5 in urban Shanghai: Association with HULIS concentration and light absorbance, ''Chemosphere'', 256, 127050, doi: 10.1016/j.chemosphere.2020.127050. [https://atmoschem.org.cn/papers/Xu-et-al-2020-Chemosphere.pdf Full text]
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#Xu, X., Lu, X., Li, X. Liu, Y., Wang, X., Chen, H., Chen, J., Yang, X., '''Fu, T.-M.''', Zhao, Q., Fu, Q. (2020), ROS-generation potential of Humic-like substances (HULIS) in ambient PM2.5 in urban Shanghai: Association with HULIS concentration and light absorbance, ''Chemosphere'', 256, 127050, doi: 10.1016/j.chemosphere.2020.127050. [https://atmoschem.org.cn/papers/Xu-et-al-2020-Chemosphere.pdf PDF ][https://www.sciencedirect.com/science/article/pii/S0045653520312431 Full Text]
# Zhang, R., Zhang, Y., '''Lin, H.''', '''Feng, X.''', '''Fu, T.-M.''', Wang, Y. (2020), NOx emission reduction and recovery during COVID-19 in East China, ''Atmosphere'', 11(4), 433, doi:10.3390/atmos11040433. [https://atmoschem.org.cn/papers/Zhang-et-al-2020-Atmosphere.pdf Full text]
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# Zhang, R., Zhang, Y., '''Lin, H.''', '''Feng, X.''', '''Fu, T.-M.''', Wang, Y. (2020), NOx emission reduction and recovery during COVID-19 in East China, ''Atmosphere'', 11(4), 433, doi:10.3390/atmos11040433. [https://atmoschem.org.cn/papers/Zhang-et-al-2020-Atmosphere.pdf PDF ] [https://www.mdpi.com/2073-4433/11/4/433 Full Text]
# '''Jiang, Z.''', Jolleys, M. D., '''Fu, T.-M.*''', Palmer, P. I.*, '''Ma, Y.''', '''Tian, H.''', Li, J., Yang, X. (2020), Spatiotemporal and probability variations of surface PM2.5 over China between 2013 and 2019 and the associated changes in health risks: an integrative observation and model analyses, ''Science of the Total Environment'', 723, doi:10.1016/j.scitotenv.2020.137896. [https://atmoschem.org.cn/papers/Jiang-et-al-2020-Science-of-the-Total-Environment.pdf Full text]
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# '''Jiang, Z.''', Jolleys, M. D., '''Fu, T.-M.*''', Palmer, P. I.*, '''Ma, Y.''', '''Tian, H.''', Li, J., Yang, X. (2020), Spatiotemporal and probability variations of surface PM2.5 over China between 2013 and 2019 and the associated changes in health risks: an integrative observation and model analyses, ''Science of the Total Environment'', 723, doi:10.1016/j.scitotenv.2020.137896. [https://atmoschem.org.cn/papers/Jiang-et-al-2020-Science-of-the-Total-Environment.pdf PDF] [https://www.sciencedirect.com/science/article/pii/S0048969720314091 Full Text]
# '''Zhang, L.''', '''Fu, T.-M.*''', '''Tian, H.''', '''Ma, Y.''', Chen, J.-P., Tsai, T.-C., Tsai, I.-C., Meng, Z., Yang, X. (2020), Anthropogenic aerosols significantly reduce mesoscale convective system occurrences and precipitation over Southern China in April, ''Geophys. Res. Lett.'', doi: 10.1029/2019GL086204. [https://atmoschem.org.cn/papers/Zhang-et-al-2020-Geophys.-Res.-Lett..pdf Full text]
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# '''Zhang, L.''', '''Fu, T.-M.*''', '''Tian, H.''', '''Ma, Y.''', Chen, J.-P., Tsai, T.-C., Tsai, I.-C., Meng, Z., Yang, X. (2020), Anthropogenic aerosols significantly reduce mesoscale convective system occurrences and precipitation over Southern China in April, ''Geophys. Res. Lett.'', doi: 10.1029/2019GL086204. [https://atmoschem.org.cn/papers/Zhang-et-al-2020-Geophys.-Res.-Lett.pdf PDF ] [https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2019GL086204 Full Text]
# Zhang*, Y., Vu, T. V., Sun, J., He, J., Shen, X., Lin, W., Zhang, X., Zhong, J., Gao, W., Wang, Y., '''Fu, T.-M.''', '''Ma., Y.''', Li, W., Shi, Z. (2020), Significant Changes in Chemistry of Fine Particles in Wintertime Beijing from 2007 to 2017: Impact of Clean Air Actions, ''Environmental Science & Technology'', doi:10.1021/acs.est.9b04678. [https://atmoschem.org.cn/papers/Zhang-et-al-2020-Environmental-Science-Technology.pdf Full text]
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# Zhang*, Y., Vu, T. V., Sun, J., He, J., Shen, X., Lin, W., Zhang, X., Zhong, J., Gao, W., Wang, Y., '''Fu, T.-M.''', '''Ma., Y.''', Li, W., Shi, Z. (2020), Significant Changes in Chemistry of Fine Particles in Wintertime Beijing from 2007 to 2017: Impact of Clean Air Actions, ''Environmental Science & Technology'', doi:10.1021/acs.est.9b04678. [https://atmoschem.org.cn/papers/Zhang-et-al-2020-Environmental-Science-Technology.pdf PDF ] [https://pubmed.ncbi.nlm.nih.gov/31766848/ Full Text]
# Zhao, Y.-H., Zhang, L.*, Zhou, M., Chen, D., Lu, X., Tao, W., Liu, J.-F., '''Tian, H.''', '''Ma, Y.-P.''', '''Fu, T.-M.'''(2019), Influences of planetary boundary layer mixing parameterization on summertime surface ozone concentration and dry deposition over North China, ''Atmospheric Environment'', 218, 116950, doi:10.1016/j.atmosenv.2019.116950. [https://atmoschem.org.cn/papers/Zhao_et_al_2019_Atmospheric_Environment.pdf Full text]
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# Zhao, Y.-H., Zhang, L.*, Zhou, M., Chen, D., Lu, X., Tao, W., Liu, J.-F., '''Tian, H.''', '''Ma, Y.-P.''', '''Fu, T.-M.'''(2019), Influences of planetary boundary layer mixing parameterization on summertime surface ozone concentration and dry deposition over North China, ''Atmospheric Environment'', 218, 116950, doi:10.1016/j.atmosenv.2019.116950. [https://atmoschem.org.cn/papers/Zhao_et_al_2019_Atmospheric_Environment.pdf PDF ] [https://www.sciencedirect.com/science/article/pii/S1352231019305898 Full Text]
# Lu, X.*, Zhang, L.*, Chen, Y., Zhou, M., Zheng, B., Li, K., Liu, Y., Lin, J., '''Fu, T.-M.''', and Zhang, Q. (2019), Exploring 2016–2017 surface ozone pollution over China: source contributions and meteorological influences, ''Atmos. Chem. Phys.'', 19, 8339–8361, doi:10.5194/acp-19-8339-2019. [https://atmoschem.org.cn/papers/Lu_et_al_2019_Atmospheric_Chemistry_and_Physics.pdf Full text]
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# Lu, X.*, Zhang, L.*, Chen, Y., Zhou, M., Zheng, B., Li, K., Liu, Y., Lin, J., '''Fu, T.-M.''', and Zhang, Q. (2019), Exploring 2016–2017 surface ozone pollution over China: source contributions and meteorological influences, ''Atmos. Chem. Phys.'', 19, 8339–8361, doi:10.5194/acp-19-8339-2019. [https://atmoschem.org.cn/papers/Lu_et_al_2019_Atmospheric_Chemistry_and_Physics.pdf PDF ] [https://acp.copernicus.org/articles/19/8339/2019/ Full Text]
# '''Fu, T.-M.*''' and '''H. Tian''' (2019), Climate change penalty to ozone air quality: review of current understandings and knowledge gaps, ''Current Pollution Reports'',  5, 159–171, doi:10.1007/s40726-019-00115-6. [https://atmoschem.org.cn/papers/Fu_et_al_2019_Current_Pollution_Reports.pdf Full text]
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# '''Fu, T.-M.*''' and '''H. Tian''' (2019), Climate change penalty to ozone air quality: review of current understandings and knowledge gaps, ''Current Pollution Reports'',  5, 159–171, doi:10.1007/s40726-019-00115-6. [https://atmoschem.org.cn/papers/Fu_et_al_2019_Current_Pollution_Reports.pdf PDF ] [https://link.springer.com/article/10.1007/s40726-019-00115-6 Full Text]
#  Shen, L.*, D. J. Jacob, L. Zhu, Q. Zhang, B. Zheng, M. P. Sulprizio, K. Li, I. De Smedt,  G. González Abad, '''H. Cao''', '''T.-M. Fu''', and H. Liao (2019), The 2005–2016 trends of formaldehyde columns over China observed by satellites: Increasing anthropogenic emissions of volatile organic compounds and decreasing agricultural fire emissions, ''Geophysical Research Letters'', 46. doi:10.1029/2019GL082172 [https://atmoschem.org.cn/papers/Shen_et_al_2019_Geophysical_Research_Lett.pdf Full text].
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#  Shen, L.*, D. J. Jacob, L. Zhu, Q. Zhang, B. Zheng, M. P. Sulprizio, K. Li, I. De Smedt,  G. González Abad, '''H. Cao''', '''T.-M. Fu''', and H. Liao (2019), The 2005–2016 trends of formaldehyde columns over China observed by satellites: Increasing anthropogenic emissions of volatile organic compounds and decreasing agricultural fire emissions, ''Geophysical Research Letters'', 46. doi:10.1029/2019GL082172 [https://atmoschem.org.cn/papers/Shen_et_al_2019_Geophysical_Research_Lett.pdf PDF ] [https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2019GL082172 Full Text]
# '''Feng, X.''', '''T.-M. Fu*''', '''H. Cao''', '''H. Tian''', Q. Fan, X. Chen (2019), Neural network prediction of pollutant emissions from open burning of crop residues: application to air quality forecasts in Southern China, ''Atmospheric Environment'', 204, 22-31, doi:10.1016/j.atmosenv.2019.02.002 [https://atmoschem.org.cn/papers/Feng_et_al_2019_Atmospheric_Environment.pdf Full text]
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# '''Feng, X.''', '''T.-M. Fu*''', '''H. Cao''', '''H. Tian''', Q. Fan, X. Chen (2019), Neural network prediction of pollutant emissions from open burning of crop residues: application to air quality forecasts in Southern China, ''Atmospheric Environment'', 204, 22-31, doi:10.1016/j.atmosenv.2019.02.002 [https://atmoschem.org.cn/papers/Feng_et_al_2019_Atmospheric_Environment.pdf PDF ] [https://www.sciencedirect.com/science/article/pii/S135223101930086X Full Text]
# Zhou, M., L. Zhang*, D. Chen*, Y. Gu, '''T.-M. Fu''', M. Gao, Y. Zhao, X. Lu, and B. Zhao (2018), The impact of aerosol-radiation interactions on the effectiveness of emission control measures, ''Environmental Research Letters'', 14(2), 024002, doi:10.1088/1748-9326/aaf27d [https://atmoschem.org.cn/papers/Zhou_et_al_2018_Environmental_Research_Letters.pdf Full text]
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# Zhou, M., L. Zhang*, D. Chen*, Y. Gu, '''T.-M. Fu''', M. Gao, Y. Zhao, X. Lu, and B. Zhao (2018), The impact of aerosol-radiation interactions on the effectiveness of emission control measures, ''Environmental Research Letters'', 14(2), 024002, doi:10.1088/1748-9326/aaf27d [https://atmoschem.org.cn/papers/Zhou_et_al_2018_Environmental_Research_Letters.pdf PDF ]  [https://iopscience.iop.org/article/10.1088/1748-9326/aaf27d Full Text]
# '''Cao, H.''', '''T.-M. Fu*''', L. Zhang, D. K. Henze, C. Chan Miller, C. Lerot, G. Gonzalex Abad, I. De Smedt, Q. Zhang, M. van Roosendael, K. Chance, J. Li, J. Zheng, and Y. Zhao (2018), Adjoint inversion of Chinese non-methane volatile organic compound emissions using space-based observations of formaldehyde and glyoxal, ''Atmospheric Chemistry and Physics'', 18, 15017-15046, doi:10.5194/acp-18-15017-2018. [https://atmoschem.org.cn/papers/Cao_et_al_2018_Atmospheric_Chemistry_and_Physics.pdf Full text]
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# '''Cao, H.''', '''T.-M. Fu*''', L. Zhang, D. K. Henze, C. Chan Miller, C. Lerot, G. Gonzalex Abad, I. De Smedt, Q. Zhang, M. van Roosendael, K. Chance, J. Li, J. Zheng, and Y. Zhao (2018), Adjoint inversion of Chinese non-methane volatile organic compound emissions using space-based observations of formaldehyde and glyoxal, ''Atmospheric Chemistry and Physics'', 18, 15017-15046, doi:10.5194/acp-18-15017-2018. [https://atmoschem.org.cn/papers/Cao_et_al_2018_Atmospheric_Chemistry_and_Physics.pdf PDF ]  [https://acp.copernicus.org/articles/18/15017/2018/ Full Text]
# '''Xing, L.''', M. Shrivastava*, '''T.-M. Fu*''', P. Roldin, Y. Qian, L. Xu, N. L. Ng, J. Shilling, A. Zelenyuk, and C. Cappa (2018), Parameterized yields of semi-volatile products from isoprene oxidation under different NOx levels:impacts of chemical aging and wall-loss of reactive gases, ''Environmental Science and Technology'', doi: 10.1021/acs.est.8b00373. [https://atmoschem.org.cn/papers/Xing_et_al_2018_Environmental_Science_and_Technology.pdf Full text] [https://pubs.acs.org/doi/suppl/10.1021/acs.est.8b00373/suppl_file/es8b00373_si_001.pdf SI]
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# '''Xing, L.''', M. Shrivastava*, '''T.-M. Fu*''', P. Roldin, Y. Qian, L. Xu, N. L. Ng, J. Shilling, A. Zelenyuk, and C. Cappa (2018), Parameterized yields of semi-volatile products from isoprene oxidation under different NOx levels:impacts of chemical aging and wall-loss of reactive gases, ''Environmental Science and Technology'', doi: 10.1021/acs.est.8b00373. [https://atmoschem.org.cn/papers/Xing_et_al_2018_Environmental_Science_and_Technology.pdf PDF]  [https://pubs.acs.org/doi/10.1021/acs.est.8b00373 Full Text][https://pubs.acs.org/doi/suppl/10.1021/acs.est.8b00373/suppl_file/es8b00373_si_001.pdf SI]
# Liu, M.-Y., Lin, J.-T.*, Wang, Y.-C., Sun, Y., Zheng, B., Shao, J., Chen, L.-L., Zheng, Y., Chen, J., Fu, T.-M., Yan, Y.-Y., Zhang, Q., and Wu, Z. (2018),Spatiotemporal variability of NO2 and PM2.5 over Eastern China: observational and model analyses with a novel statistical method, ''Atmospheric Chemistry and Physics'', 18, 12933-12952, doi:10.5194/acp-18-12933-2018.[https://atmoschem.org.cn/papers/Liu_et_al_2018_Atmospheric_Chemistry_and_Physics.pdf Full text]
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# Liu, M.-Y., Lin, J.-T.*, Wang, Y.-C., Sun, Y., Zheng, B., Shao, J., Chen, L.-L., Zheng, Y., Chen, J., Fu, T.-M., Yan, Y.-Y., Zhang, Q., and Wu, Z. (2018),Spatiotemporal variability of NO2 and PM2.5 over Eastern China: observational and model analyses with a novel statistical method, ''Atmospheric Chemistry and Physics'', 18, 12933-12952, doi:10.5194/acp-18-12933-2018.[https://atmoschem.org.cn/papers/Liu_et_al_2018_Atmospheric_Chemistry_and_Physics.pdf PDF]  [https://acp.copernicus.org/articles/18/12933/2018/ Full Text]
# Chen, Q.*, '''T.-M. Fu*''', J. Hu*, Q. Ying, and L. Zhang (2017), Modelling secondary organic aerosols in China, ''National Science Review'', 4(6), 806-809, doi:10.1093/nsr/nwx143. [https://atmoschem.org.cn/papers/Chen_et_al_2017_National_Science_Review.pdf Full text]
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# Chen, Q.*, '''T.-M. Fu*''', J. Hu*, Q. Ying, and L. Zhang (2017), Modelling secondary organic aerosols in China, ''National Science Review'', 4(6), 806-809, doi:10.1093/nsr/nwx143. [https://atmoschem.org.cn/papers/Chen_et_al_2017_National_Science_Review.pdf PDF] [https://academic.oup.com/nsr/article/4/6/806/4733278?login=true Full Text]
# Li, N., J.-P. Chen*, I.-C. Tsai, Q. He, S.-Y. Chi, Y.-C. Lin, and '''T.-M. Fu''' (2016), Potential impacts of electric vehicles on air quality in Taiwan, ''Science of the Total Environment'', 566-567, 919-928, doi:10.1016/j.scitotenv.2016.05.105.[https://atmoschem.org.cn/papers/Li_et_al_2016_Science_of_the_Total_Environment.pdf Full text]
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# Li, N., J.-P. Chen*, I.-C. Tsai, Q. He, S.-Y. Chi, Y.-C. Lin, and '''T.-M. Fu''' (2016), Potential impacts of electric vehicles on air quality in Taiwan, ''Science of the Total Environment'', 566-567, 919-928, doi:10.1016/j.scitotenv.2016.05.105.[https://atmoschem.org.cn/papers/Li_et_al_2016_Science_of_the_Total_Environment.pdf PDF]  [https://www.sciencedirect.com/science/article/pii/S004896971631035X Full Text]
# '''Xu, W.''', '''T.-M. Fu*''', '''J. Chen''', and '''H. Tian''' (2016), Ground-based measurement and variation analysis of carbonaceous aerosols in Wuqing, ''Acta Scientiarum Naturalium Universitatis Pekinensis'', 52(3), 409-419, doi:10.13209/j.0479-8023.2015.144. (In Chinese)[https://atmoschem.org.cn/papers/Xu_et_al_2016_Acta_Scientiarum_Naturalium_Universitatis_Pekinensis.pdf Full text]
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# '''Xu, W.''', '''T.-M. Fu*''', '''J. Chen''', and '''H. Tian''' (2016), Ground-based measurement and variation analysis of carbonaceous aerosols in Wuqing, ''Acta Scientiarum Naturalium Universitatis Pekinensis'', 52(3), 409-419, doi:10.13209/j.0479-8023.2015.144. (In Chinese)[https://atmoschem.org.cn/papers/Xu_et_al_2016_Acta_Scientiarum_Naturalium_Universitatis_Pekinensis.pdf PDF ][http://xbna.pku.edu.cn/EN/abstract/abstract2946.shtml Full Text]
# Tsai, I.C., J.-P. Chen*, C. S.-C. Lung, '''N. Li''', W.-N. Chen, '''T.-M. Fu''', C.-C. Chang, and G.-D. Hwang (2015), Sources and formation pathways of organic aerosol in a subtropical metropolis during summer, ''Atmospheric Environment'', 117, 51-60, doi:10.1016/j.atmosenv.2015.07.005. [https://atmoschem.org.cn/papers/Tsai_et_al_2015_Atmospheric_Environment.pdf Full text]
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# Tsai, I.C., J.-P. Chen*, C. S.-C. Lung, '''N. Li''', W.-N. Chen, '''T.-M. Fu''', C.-C. Chang, and G.-D. Hwang (2015), Sources and formation pathways of organic aerosol in a subtropical metropolis during summer, ''Atmospheric Environment'', 117, 51-60, doi:10.1016/j.atmosenv.2015.07.005. [https://atmoschem.org.cn/papers/Tsai_et_al_2015_Atmospheric_Environment.pdf PDF]  [https://www.sciencedirect.com/science/article/pii/S1352231015302041 Full Text]
# '''Fu, T.-M.*''', '''Y. Zheng''', F. Paulot, J. Mao, and R. M. Yantosca (2015), Positive but variable sensitivity of August surface ozone to large-scale warming in the southeast United States, ''Nature Climate Change'', 5, 454-458, doi:10.1038/nclimate2567. [https://atmoschem.org.cn/papers/Fu_et_al_2015_Nature_Climate_Change.pdf Full text]
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# '''Fu, T.-M.*''', '''Y. Zheng''', F. Paulot, J. Mao, and R. M. Yantosca (2015), Positive but variable sensitivity of August surface ozone to large-scale warming in the southeast United States, ''Nature Climate Change'', 5, 454-458, doi:10.1038/nclimate2567. [https://atmoschem.org.cn/papers/Fu_et_al_2015_Nature_Climate_Change.pdf PDF] [https://www.nature.com/articles/nclimate2567 Full Text]
# Zhang, L.*, L. Liu, Y. Zhao, S. Gong, X. Zhang, D. K. Henze, S. L. Capps, '''T.-M. Fu''', and Q. Zhang (2015), Source Attribution of Particulate Matter Pollution over North China with the Adjoint Method, ''Environmental Research Letters'', 10, 084011, doi:10.1088/1748-9326/10/8/084011.[https://atmoschem.org.cn/papers/Zhang_et_al_2015_Environmental_Research_Letters.pdf Full text]
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# Zhang, L.*, L. Liu, Y. Zhao, S. Gong, X. Zhang, D. K. Henze, S. L. Capps, '''T.-M. Fu''', and Q. Zhang (2015), Source Attribution of Particulate Matter Pollution over North China with the Adjoint Method, ''Environmental Research Letters'', 10, 084011, doi:10.1088/1748-9326/10/8/084011.[https://atmoschem.org.cn/papers/Zhang_et_al_2015_Environmental_Research_Letters.pdf PDF]  [https://iopscience.iop.org/article/10.1088/1748-9326/10/8/084011 Full Text]
# '''Xing, L.''', and '''T.-M. Fu*''' (2015), Contributions of organic aerosols to cloud condensation nuclei numbers in China, ''Acta Scientiarum Naturalium Universitatis Pekinensis'', 51(1), 13-23, doi:10.13209/j.0479-8023.2014.143. (In Chinese) [https://atmoschem.org.cn/papers/Xing_et_al_2015_Acta_Scientiarum_Naturalium_Universitatis_Pekinensis.pdf Full text]
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# '''Xing, L.''', and '''T.-M. Fu*''' (2015), Contributions of organic aerosols to cloud condensation nuclei numbers in China, ''Acta Scientiarum Naturalium Universitatis Pekinensis'', 51(1), 13-23, doi:10.13209/j.0479-8023.2014.143. (In Chinese) [https://atmoschem.org.cn/papers/Xing_et_al_2015_Acta_Scientiarum_Naturalium_Universitatis_Pekinensis.pdf PDF ]
# '''Jian, Y.''', and '''T.-M. Fu*''' (2014), Injection heights of springtime biomass burning plumes over the Peninsular Southeast Asia and their impacts on pollutant long-range transport, ''Atmos. Chem. Phys.'', 14, 3977-3989, doi:10.5194/acp-14-3977-2014. [https://atmoschem.org.cn/papers/Jian_et_al_2014_Atmospheric_Chemistry_and_Physics.pdf Full text]
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# '''Jian, Y.''', and '''T.-M. Fu*''' (2014), Injection heights of springtime biomass burning plumes over the Peninsular Southeast Asia and their impacts on pollutant long-range transport, ''Atmos. Chem. Phys.'', 14, 3977-3989, doi:10.5194/acp-14-3977-2014. [https://atmoschem.org.cn/papers/Jian_et_al_2014_Atmospheric_Chemistry_and_Physics.pdf PDF]  [https://acp.copernicus.org/articles/14/3977/2014/ Full Text]
# Zhang, Y., L. Qiao, '''Y. Ren''', X. Wang, M. Gao, Y. Tang, J. J. Xi, '''T.-M. Fu*''', and X. Jiang* (2013), Two dimensional barcode-inspired automatic analysis for arrayed microfluidic immunoassays, ''Biomicrofluidics'', 7, 034110, doi:10.1063/1.4811278. [https://atmoschem.org.cn/papers/Zhang_et_al_2013_Biomicrofluidics.pdf PDF]
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# Zhang, Y., L. Qiao, '''Y. Ren''', X. Wang, M. Gao, Y. Tang, J. J. Xi, '''T.-M. Fu*''', and X. Jiang* (2013), Two dimensional barcode-inspired automatic analysis for arrayed microfluidic immunoassays, ''Biomicrofluidics'', 7, 034110, doi:10.1063/1.4811278. [https://atmoschem.org.cn/papers/Zhang_et_al_2013_Biomicrofluidics.pdf PDF ][https://pubmed.ncbi.nlm.nih.gov/24404030/ Full Text]
# '''Li, N'''., '''T.-M. Fu*''', J.J. Cao*, S.C. Lee, X.-F. Huang, L.-Y. He, K.-F. Ho, J. S. Fu, and Y.-F. Lam (2013), Sources of secondary organic aerosols in the Pearl River Delta region in fall: contributions from the aqueous reactive uptake of dicarbonyls, ''Atmos. Environ.'', 76, 200-207, doi:10.1016/j.atmosenv.2012.12.005. [https://atmoschem.org.cn/papers/Li_et_al_2013_Atmospheric_Environment.pdf PDF]
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# '''Li, N'''., '''T.-M. Fu*''', J.J. Cao*, S.C. Lee, X.-F. Huang, L.-Y. He, K.-F. Ho, J. S. Fu, and Y.-F. Lam (2013), Sources of secondary organic aerosols in the Pearl River Delta region in fall: contributions from the aqueous reactive uptake of dicarbonyls, ''Atmos. Environ.'', 76, 200-207, doi:10.1016/j.atmosenv.2012.12.005. [https://atmoschem.org.cn/papers/Li_et_al_2013_Atmospheric_Environment.pdf PDF ] [https://www.sciencedirect.com/science/article/pii/S1352231012011545 Full Text]
# '''Xing, L.''', '''T.-M. Fu*''', J.J. Cao, S.C. Lee, G.H. Wang, K.-F. Ho, M.-C. Cheng, C.-F. You, and T.J. Wang (2013), Seasonal and spatial variability of the OM/OC mass ratios and high regional correlation between oxalic acid and zinc in Chinese urban organic aerosols, ''Atmos. Chem. Phys.'', 13, 4307-4318, doi:10.5194/acp-13-4307-2013. [https://atmoschem.org.cn/papers/Xing_et_al_2013_Atmospheric_Chemistry_and_Physics.pdf PDF]  
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# '''Xing, L.''', '''T.-M. Fu*''', J.J. Cao, S.C. Lee, G.H. Wang, K.-F. Ho, M.-C. Cheng, C.-F. You, and T.J. Wang (2013), Seasonal and spatial variability of the OM/OC mass ratios and high regional correlation between oxalic acid and zinc in Chinese urban organic aerosols, ''Atmos. Chem. Phys.'', 13, 4307-4318, doi:10.5194/acp-13-4307-2013. [https://atmoschem.org.cn/papers/Xing_et_al_2013_Atmospheric_Chemistry_and_Physics.pdf PDF] [https://acp.copernicus.org/articles/13/4307/2013/ Full Text]
#'''He, C.L.''', and '''T.-M. Fu*''' (2012), Air-sea exchange of volatile organic compounds: a new model with microlayer effects, ''Atmospheric and Oceanic Science Letters'', 6(2), 97-102. [https://atmoschem.org.cn/papers/He_et_al_2012_Atmospheric_and_Oceanic_Science_Letters.pdf PDF]
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#'''He, C.L.''', and '''T.-M. Fu*''' (2012), Air-sea exchange of volatile organic compounds: a new model with microlayer effects, ''Atmospheric and Oceanic Science Letters'', 6(2), 97-102. [https://atmoschem.org.cn/papers/He_et_al_2012_Atmospheric_and_Oceanic_Science_Letters.pdf PDF ][https://www.tandfonline.com/doi/abs/10.1080/16742834.2013.11447063 Full Text]
# '''Fu, T.-M.*''', J.J. Cao, X.Y. Zhang, S.C. Lee, Q. Zhang, Y.M. Han, W.J. Qu, Z. Han, R. Zhang, Y.X. Wang, D. Chen, and D.K. Henze (2012), Carbonaceous aerosols in China: top-down constraints on primary sources and estimation of secondary contribution, ''Atmos. Chem. Phys.'', 12, 2725-2746, doi:10.5194/acp-12-2725-2012. [https://atmoschem.org.cn/papers/Fu_et_al_2012_Atmospheric_Chemistry_and_Physics.pdf PDF]
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# '''Fu, T.-M.*''', J.J. Cao, X.Y. Zhang, S.C. Lee, Q. Zhang, Y.M. Han, W.J. Qu, Z. Han, R. Zhang, Y.X. Wang, D. Chen, and D.K. Henze (2012), Carbonaceous aerosols in China: top-down constraints on primary sources and estimation of secondary contribution, ''Atmos. Chem. Phys.'', 12, 2725-2746, doi:10.5194/acp-12-2725-2012. [https://atmoschem.org.cn/papers/Fu_et_al_2012_Atmospheric_Chemistry_and_Physics.pdf PDF]  [https://acp.copernicus.org/articles/12/2725/2012/ Full Text]
# Heald, C.L.*, H. Coe, J.L. Jimenez, R.J. Weber, R. Bahreini, A.M. Middlebrook, L.M. Russell, M. Jolleys, '''T.-M. Fu''', J.D. Allan, K.N. Bower, G. Capes, J. Crosier, W.T. Morgan, N. H. Robinson, P.I. Williams, M.J. Cubison, P.F. DeCarlo, and E.J. Dunlea (2011), Exploring the vertical profile of atmospheric organic aerosol: comparing 17 aircraft field campaigns with a global model, ''Atmos. Chem. Phys.'', 11, 12673-12696, doi:10.5194/acpd-11-12673-2011. [https://atmoschem.org.cn/papers/Heald_et_al_2011_Atmospheric_Chemistry_and_Physics.pdf PDF]
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# Heald, C.L.*, H. Coe, J.L. Jimenez, R.J. Weber, R. Bahreini, A.M. Middlebrook, L.M. Russell, M. Jolleys, '''T.-M. Fu''', J.D. Allan, K.N. Bower, G. Capes, J. Crosier, W.T. Morgan, N. H. Robinson, P.I. Williams, M.J. Cubison, P.F. DeCarlo, and E.J. Dunlea (2011), Exploring the vertical profile of atmospheric organic aerosol: comparing 17 aircraft field campaigns with a global model, ''Atmos. Chem. Phys.'', 11, 12673-12696, doi:10.5194/acpd-11-12673-2011. [https://atmoschem.org.cn/papers/Heald_et_al_2011_Atmospheric_Chemistry_and_Physics.pdf PDF]  [https://acp.copernicus.org/articles/11/12673/2011/ Full Text]
 
# Pacifico, F.*, S.P. Harrison, C.D. Jones, A. Arneth, S. Sitch, G.P. Weedon, M.P. Barkley, P.I. Palmer, D. Seca, M. Potosnak, '''T.-M. Fu''', A. Goldstein, J. Bai, and G. Schurgers (2011), Evaluation of a photosynthesis-based biogenic isoprene emission scheme in JULES and simulation of isoprene emissions under present-day climate conditions, ''Atmos. Chem. Phys.'', 11, 4371-4389, doi:10.5194/acp-11-4371-2011.[https://atmoschem.org.cn/papers/Pacifico_et_al_2011_Atmospheric_Chemistry_and_Physics.pdf PDF]
 
# Pacifico, F.*, S.P. Harrison, C.D. Jones, A. Arneth, S. Sitch, G.P. Weedon, M.P. Barkley, P.I. Palmer, D. Seca, M. Potosnak, '''T.-M. Fu''', A. Goldstein, J. Bai, and G. Schurgers (2011), Evaluation of a photosynthesis-based biogenic isoprene emission scheme in JULES and simulation of isoprene emissions under present-day climate conditions, ''Atmos. Chem. Phys.'', 11, 4371-4389, doi:10.5194/acp-11-4371-2011.[https://atmoschem.org.cn/papers/Pacifico_et_al_2011_Atmospheric_Chemistry_and_Physics.pdf PDF]
 
# González Abad, G.*, N.D.C. Allen, P.F. Bernath, C.D. Boone, S.D. McLeod, G.L. Manney, G.C. Toon, C. Carouge, Y. Wang, S. Wu, M.P. Barkley, P.I. Palmer, Y. Xiao, and '''T.-M. Fu''' (2011), Ethane, ethyne and carbon monoxide concentrations in the upper troposphere and lower stratosphere from ACE and GEOS-Chem: a comparison study, ''Atmos. Chem. Phys.'', 11(18), 9927-9941, doi:10.5194/acp-11-9927-2011.[https://atmoschem.org.cn/papers/González_Abad_et_al_2011_Atmospheric_Chemistry_and_Physics.pdf PDF]
 
# González Abad, G.*, N.D.C. Allen, P.F. Bernath, C.D. Boone, S.D. McLeod, G.L. Manney, G.C. Toon, C. Carouge, Y. Wang, S. Wu, M.P. Barkley, P.I. Palmer, Y. Xiao, and '''T.-M. Fu''' (2011), Ethane, ethyne and carbon monoxide concentrations in the upper troposphere and lower stratosphere from ACE and GEOS-Chem: a comparison study, ''Atmos. Chem. Phys.'', 11(18), 9927-9941, doi:10.5194/acp-11-9927-2011.[https://atmoschem.org.cn/papers/González_Abad_et_al_2011_Atmospheric_Chemistry_and_Physics.pdf PDF]

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  59. Li, N., J.-P. Chen*, I.-C. Tsai, Q. He, S.-Y. Chi, Y.-C. Lin, and T.-M. Fu (2016), Potential impacts of electric vehicles on air quality in Taiwan, Science of the Total Environment, 566-567, 919-928, doi:10.1016/j.scitotenv.2016.05.105.PDF Full Text
  60. Xu, W., T.-M. Fu*, J. Chen, and H. Tian (2016), Ground-based measurement and variation analysis of carbonaceous aerosols in Wuqing, Acta Scientiarum Naturalium Universitatis Pekinensis, 52(3), 409-419, doi:10.13209/j.0479-8023.2015.144. (In Chinese)PDF Full Text
  61. Tsai, I.C., J.-P. Chen*, C. S.-C. Lung, N. Li, W.-N. Chen, T.-M. Fu, C.-C. Chang, and G.-D. Hwang (2015), Sources and formation pathways of organic aerosol in a subtropical metropolis during summer, Atmospheric Environment, 117, 51-60, doi:10.1016/j.atmosenv.2015.07.005. PDF Full Text
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  63. Zhang, L.*, L. Liu, Y. Zhao, S. Gong, X. Zhang, D. K. Henze, S. L. Capps, T.-M. Fu, and Q. Zhang (2015), Source Attribution of Particulate Matter Pollution over North China with the Adjoint Method, Environmental Research Letters, 10, 084011, doi:10.1088/1748-9326/10/8/084011.PDF Full Text
  64. Xing, L., and T.-M. Fu* (2015), Contributions of organic aerosols to cloud condensation nuclei numbers in China, Acta Scientiarum Naturalium Universitatis Pekinensis, 51(1), 13-23, doi:10.13209/j.0479-8023.2014.143. (In Chinese) PDF
  65. Jian, Y., and T.-M. Fu* (2014), Injection heights of springtime biomass burning plumes over the Peninsular Southeast Asia and their impacts on pollutant long-range transport, Atmos. Chem. Phys., 14, 3977-3989, doi:10.5194/acp-14-3977-2014. PDF Full Text
  66. Zhang, Y., L. Qiao, Y. Ren, X. Wang, M. Gao, Y. Tang, J. J. Xi, T.-M. Fu*, and X. Jiang* (2013), Two dimensional barcode-inspired automatic analysis for arrayed microfluidic immunoassays, Biomicrofluidics, 7, 034110, doi:10.1063/1.4811278. PDF Full Text
  67. Li, N., T.-M. Fu*, J.J. Cao*, S.C. Lee, X.-F. Huang, L.-Y. He, K.-F. Ho, J. S. Fu, and Y.-F. Lam (2013), Sources of secondary organic aerosols in the Pearl River Delta region in fall: contributions from the aqueous reactive uptake of dicarbonyls, Atmos. Environ., 76, 200-207, doi:10.1016/j.atmosenv.2012.12.005. PDF Full Text
  68. Xing, L., T.-M. Fu*, J.J. Cao, S.C. Lee, G.H. Wang, K.-F. Ho, M.-C. Cheng, C.-F. You, and T.J. Wang (2013), Seasonal and spatial variability of the OM/OC mass ratios and high regional correlation between oxalic acid and zinc in Chinese urban organic aerosols, Atmos. Chem. Phys., 13, 4307-4318, doi:10.5194/acp-13-4307-2013. PDF Full Text
  69. He, C.L., and T.-M. Fu* (2012), Air-sea exchange of volatile organic compounds: a new model with microlayer effects, Atmospheric and Oceanic Science Letters, 6(2), 97-102. PDF Full Text
  70. Fu, T.-M.*, J.J. Cao, X.Y. Zhang, S.C. Lee, Q. Zhang, Y.M. Han, W.J. Qu, Z. Han, R. Zhang, Y.X. Wang, D. Chen, and D.K. Henze (2012), Carbonaceous aerosols in China: top-down constraints on primary sources and estimation of secondary contribution, Atmos. Chem. Phys., 12, 2725-2746, doi:10.5194/acp-12-2725-2012. PDF Full Text
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  72. Pacifico, F.*, S.P. Harrison, C.D. Jones, A. Arneth, S. Sitch, G.P. Weedon, M.P. Barkley, P.I. Palmer, D. Seca, M. Potosnak, T.-M. Fu, A. Goldstein, J. Bai, and G. Schurgers (2011), Evaluation of a photosynthesis-based biogenic isoprene emission scheme in JULES and simulation of isoprene emissions under present-day climate conditions, Atmos. Chem. Phys., 11, 4371-4389, doi:10.5194/acp-11-4371-2011.PDF
  73. González Abad, G.*, N.D.C. Allen, P.F. Bernath, C.D. Boone, S.D. McLeod, G.L. Manney, G.C. Toon, C. Carouge, Y. Wang, S. Wu, M.P. Barkley, P.I. Palmer, Y. Xiao, and T.-M. Fu (2011), Ethane, ethyne and carbon monoxide concentrations in the upper troposphere and lower stratosphere from ACE and GEOS-Chem: a comparison study, Atmos. Chem. Phys., 11(18), 9927-9941, doi:10.5194/acp-11-9927-2011.PDF
  74. Zhang, Y.W., Z.L. Gu*, S.C. Lee, T.-M. Fu, and K.F. Ho (2011), Numerical simulation and in situ investigation of fine particle dispersion in an actual deep street canyon in Hong Kong, Indoor and Built Environ., 20, 2, 206-216, doi:10.1177/1420326X10387694.PDF
  75. Fu, T.-M.*, D. J. Jacob, and C. L. Heald (2009), Aqueous-phase reactive uptake of dicarbonyls as a source of organic aerosol over eastern North America , Atmos. Environ., 43(10), 1814-1822, doi:10.1016/j.atmosenv.2008.12.029. PDF
  76. Jacob, D.J., E.E. Drury, T.-M. Fu, E. Leibensperger, L. Mickley, A. Tai (2009), Aerosols over the United States: space observation, source characterization, and climate interactions, Geochimica et Cosmochimica Acta, 73(13), A579-A579.Link
  77. Guo, H.*, A.J. Ding, T. Wang, I.J. Simpson, D.R. Blake, B. Barletta, S. Meinardi, T.-M. Fu, Y.S. Li, and W.T. Hung (2009), Source origins, modeled profiles and apportionments of halogenated hydrocarbons in the greater Pearl River Delta region, southern China, J. Geophys. Res., doi:10.1029/2008JD011448.PDF
  78. Fu, T.-M.*, D. J. Jacob, F. Wittrock, J. P. Burrows, M. Vrekoussis, and D. K. Henze (2008), Global budgets of atmospheric glyoxal and methylglyoxal, and implications for formation of secondary organic aerosols, J. Geophys. Res., 113, D15303, doi:10.1026/2007JD009505. PDF
  79. Henze, D. K.*, J. H. Seinfeld, N. L. Ng, J. H. Kroll, T.-M. Fu, D. J. Jacob, and C. L. Heald (2008), Global modeling of secondary organic aerosol formation from aromatic hydrocarbons: high- vs. low-yield pathways, Atmos. Chem. Phys., 8, 2405-2401, doi:10.5194/acp-8-2405-2008. PDF
  80. Liu, C.-M.*, M.-T. Yeh, S. Paul, Y.-C. Lee, D.J. Jacob, T.-M. Fu, J.-H. Woo, G.R. Carmichael, and D.G. Streets (2008), Effect of anthropogenic emissions in East Asia on regional ozone levels during spring cold continental outbreaks near Taiwan: a case study, Environ. Model. Software, 23(5), 579-591, doi:10.1016/j.envsoft.2007.08.007.PDF
  81. Millet, D. B.*, D. J. Jacob, K. F. Boersma, T.-M. Fu, T. P. Kurosu, K. Chance, C. L. Heald, and A. Guenther (2007), Spatial distribution of isoprene emissions from North America derived from formaldehyde column measurements by the OMI satellite sensor, J. Geophys. Res., 113, D02307, doi:10.1029/2007JD008950. PDF
  82. Fu, T.-M.*, D. J. Jacob, P. I. Palmer, K. Chance, Y. X. Wang, B. Barletta, D. R. Blake, J. C. Stanton, M. J. Pilling (2007), Space-based formaldehyde measurements as constraints on volatile organic compound emissions in East and South Asia, J. Geophys. Res., 112, D06312, doi:10.1029/2006JD007853. PDF
  83. Wang, Y.X.*, M. B. McElroy, R. V. Martin, D. G. Streets, Q. Zhang, and T.-M. Fu (2007), Seasonal variability of NOx emissions over east China constrained by satellite observations: Implications for combustion and microbial sources, J. Geophys. Res., 112, D06301, doi:10.1029/2006JD007538. PDF
  84. Sauvage, B.*, R. V. Martin, A. van Donkelaar, X. Liu, K. Chance, L. Jaegle, P. I. Palmer, S. Wu, and T.-M. Fu (2007), Remote sensed and in situ constraints on processes affecting tropical tropospheric ozone, Atmos. Chem. Phys., 7, 815-838, doi:10.5194/acp-7-815-2007. PDF
  85. van Donkelaar, A.*, R. V. Martin, R. J. Park, C. L. Heald, T.-M. Fu, H. Liao, and A. Guenther (2007), "Model evidence for a significant source of secondary organic aerosol from isoprene", Atmos. Environ., 41, 1267-1274. PDF
  86. Palmer, P. I.*, D. S. Abbot, T.-M. Fu, D. J. Jacob, K. Chance, T. P. Kuruso, A. Guenther, C. Wiedinmyer, J. C. Stanton, M. J. Pilling, S. N. Pressley, B. Lamb, and A. L. Sumner (2006), Quantifying the seasonal and interannual variability of North American isoprene emissions using satellite observations of formaldehyde column, J. Geophys. Res., 111, D12315, doi:10.1029/2005JD006689. PDF
  87. Liu, X.*, K. Chance, C.E. Sioris, T.P. Kurosu, R,J.D. Spurr, R.V. Martin, T.-M. Fu, J.A. Logan, D.J. Jacob, P.I. Palmer, M.J. Newchurch, I.A. Megretskaia, and R. Chatfield (2006), First directly-retrieved global distribution of tropospheric column ozone from GOME: comparison with the GEOS-CHEM model, J. Geophys. Res., 111, D02308. PDF
  88. Jiang, X., Q. Xu, S. K. W. Dertinger, A. D. Stroock, T.-M. Fu, and G. M. Whitesides *(2005), A general method for patterning gradients of biomolecules on surfaces using microfluidic networks, Analytical Chemistry, 77(8), 2338 – 2347, doi:10.1021/ac048440m.PDF
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