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个人简介

工作经历 2017.09- 暨南大学环境与气候研究院 教授 2017.04-2017.08 瑞士保罗谢尔研究所(PSI) 研究科学家 2013.10-2017.04 美国国家海洋与大气管理局(NOAA)地球系统研究实验室(ESRL) 博士后 2012.10-2013.09 美国国家海洋与大气管理局(NOAA)地球系统研究实验室(ESRL) 美国国家委员会(NRC)资助博士后 学习经历 2007.09-2012.07 北京大学 理学博士学位 2003.09-2007.07 北京大学 理学和经济学学士学位

研究领域

1. 大气中挥发性有机物(VOCs)的排放、组成和化学转化研究; 2. 质谱方法测量大气痕量有机气体 (如GC-MS、PTR-MS、CIMS 和ToF 技术的应用); 3. 大气污染物的三维立体测量(如机载和车载); 4. 大气中化学组分的天然源和人为源排放通量测量(如涡度相关等微气象法); 5. 能源开发及利用对大气环境的影响

近期论文

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1.Yuan, B., Coggon, M. M., Koss, A. R., Warneke, C., Eilerman, S., Peischl, J., Aikin, K. C., Ryerson, T. B., and de Gouw, J. A.: Emissions of volatile organic compounds (VOCs) from concentrated animal feeding operations (CAFOs): chemical compositions and separation of sources, Atmos. Chem. Phys., 17, 4945-4956, 2017. 2.Yuan, B., Coggon, M. M., Koss, A. R., Warneke, C., Eilerman, S., Peischl, J., Aikin, K. C., Ryerson, T. B., and de Gouw, J. A.: Emissions of volatile organic compounds (VOCs) from concentrated animal feeding operations (CAFOs): chemical compositions and separation of sources, Atmos. Chem. Phys., 17, 4945-4956, 2017. 3.Yuan, B., Liggio, J., Wentzell, J., Li, S. M., Stark, H., Roberts, J. M., Gilman, J., Lerner, B., Warneke, C., Li, R., Leithead, A., Osthoff, H. D., Wild, R., Brown, S. S., and de Gouw, J. A.,Secondary formation of nitrated phenols: insights from observations during the Uintah Basin Winter Ozone Study (UBWOS) 2014,Atmos. Chem. Phys., 16, 2139-2153, 2016. 4.Yuan, B., Liggio, J., Wentzell, J., Li, S. M., Stark, H., Roberts, J. M., Gilman, J., Lerner, B., Warneke, C., Li, R., Leithead, A., Osthoff, H. D., Wild, R., Brown, S. S., and de Gouw, J. A.,Secondary formation of nitrated phenols: insights from observations during the Uintah Basin Winter Ozone Study (UBWOS) 2014,Atmos. Chem. Phys., 16, 2139-2153, 2016. 5.Yuan, B., Veres, P. R., Warneke, C., Roberts, J. M., Gilman, J. B., Koss, A., Edwards, P. M., Graus, M., Kuster, W. C., Li, S. M., Wild, R. J., Brown, S. S., Dubé, W. P., Lerner, B. M., Williams, E. J., Johnson, J. E., Quinn, P. K., Bates, T. S., Lefer, B., Hayes, P. L., Jimenez, J. L., Weber, R. J., Zamora, R., Ervens, B., Millet, D. B., Rappenglück, B., and de Gouw, J. A., Investigation of secondary formation of formic acid: urban environment vs. oil and gas producing region, Atmos. Chem. Phys., 15, 1975-1993, 2015. 6.Yuan, B., Veres, P. R., Warneke, C., Roberts, J. M., Gilman, J. B., Koss, A., Edwards, P. M., Graus, M., Kuster, W. C., Li, S. M., Wild, R. J., Brown, S. S., Dubé, W. P., Lerner, B. M., Williams, E. J., Johnson, J. E., Quinn, P. K., Bates, T. S., Lefer, B., Hayes, P. L., Jimenez, J. L., Weber, R. J., Zamora, R., Ervens, B., Millet, D. B., Rappenglück, B., and de Gouw, J. A., Investigation of secondary formation of formic acid: urban environment vs. oil and gas producing region, Atmos. Chem. Phys., 15, 1975-1993, 2015. 7.Yuan, B., Hu, W. W., Shao, M., Wang, M., Chen, W. T., Lu, S. H., Zeng, L. M., and Hu, M., VOC emissions, evolutions and contributions to SOA formation at a receptor site in eastern China, Atmos. Chem. Phys., 13, 8815-8832, 2013. 8.Yuan, B., Hu, W. W., Shao, M., Wang, M., Chen, W. T., Lu, S. H., Zeng, L. M., and Hu, M., VOC emissions, evolutions and contributions to SOA formation at a receptor site in eastern China, Atmos. Chem. Phys., 13, 8815-8832, 2013. 9.Yuan, B., Chen, W. T., Shao, M., Wang, M., Lu, S. H., Wang, B., Liu, Y., Chang, C. C., and Wang, B. G., Measurements of ambient hydrocarbons and carbonyls in the Pearl River Delta (PRD), China, Atmos. Res., 116, 93-104, 2012. 10.Yuan, B., Chen, W. T., Shao, M., Wang, M., Lu, S. H., Wang, B., Liu, Y., Chang, C. C., and Wang, B. G., Measurements of ambient hydrocarbons and carbonyls in the Pearl River Delta (PRD), China, Atmos. Res., 116, 93-104, 2012. 11.Yuan, B., Liu, Y., Shao, M., Lu, S., and Streets, D. G., Biomass Burning Contributions to Ambient VOCs Species at a Receptor Site in the Pearl River Delta (PRD), China, Environ. Sci. Technol., 44, 4577-4582, 2010. 12.Yuan, B., Liu, Y., Shao, M., Lu, S., and Streets, D. G., Biomass Burning Contributions to Ambient VOCs Species at a Receptor Site in the Pearl River Delta (PRD), China, Environ. Sci. Technol., 44, 4577-4582, 2010. 13.Sekimoto, K., Li, S.M., Yuan, B., Koss, A., Coggon, M., Warneke, C., de Gouw, J., Calculation of the sensitivity of proton-transfer-reaction mass spectrometry (PTR-MS) for organic trace gases, International Journal of Mass Spectrometry, 10.1016/j.ijms.2017.04.006. 2017. 14.Sekimoto, K., Li, S.M., Yuan, B., Koss, A., Coggon, M., Warneke, C., de Gouw, J., Calculation of the sensitivity of proton-transfer-reaction mass spectrometry (PTR-MS) for organic trace gases, International Journal of Mass Spectrometry, 10.1016/j.ijms.2017.04.006. 2017. 15.Kaser, L., Karl, T., Yuan, B., Mauldin, R. L., Cantrell, C. A., Guenther, A. B., Patton, E. G., Weinheimer, A. J., Knote, C., Orlando, J., Emmons, L., Apel, E., Hornbrook, R., Shertz, S., Ullmann, K., Hall, S., Graus, M., de Gouw, J., Zhou, X., and Ye, C.: Chemistry – turbulence interactions and mesoscale variability influence the cleansing efficiency of the atmosphere, Geophys. Res. Lett., 2015GL066641, 10.1002/2015GL066641, 2015. 16.Kaser, L., Karl, T., Yuan, B., Mauldin, R. L., Cantrell, C. A., Guenther, A. B., Patton, E. G., Weinheimer, A. J., Knote, C., Orlando, J., Emmons, L., Apel, E., Hornbrook, R., Shertz, S., Ullmann, K., Hall, S., Graus, M., de Gouw, J., Zhou, X., and Ye, C.: Chemistry – turbulence interactions and mesoscale variability influence the cleansing efficiency of the atmosphere, Geophys. Res. Lett., 2015GL066641, 10.1002/2015GL066641, 2015. 17.Lerner, B. M.; Gilman, J. B.; Aikin, K. C.; Atlas, E. L.; Goldan, P. D.; Graus, M.; Hendershot, R.; Isaacman-VanWertz, G. A.; Koss, A.; Kuster, W. C.; Lueb, R. A.; McLaughlin, R. J.; Peischl, J.; Sueper, D.; Ryerson, T. B.; Tokarek, T. W.; Warneke, C.; Yuan, B.; de Gouw, J. A., An Improved, Automated Whole-Air Sampler and Gas Chromatography Mass Spectrometry Analysis System for Volatile Organic Compounds in the Atmosphere. Atmos. Meas. Tech., 10, 291-313, 2017. 18.Lerner, B. M.; Gilman, J. B.; Aikin, K. C.; Atlas, E. L.; Goldan, P. D.; Graus, M.; Hendershot, R.; Isaacman-VanWertz, G. A.; Koss, A.; Kuster, W. C.; Lueb, R. A.; McLaughlin, R. J.; Peischl, J.; Sueper, D.; Ryerson, T. B.; Tokarek, T. W.; Warneke, C.; Yuan, B.; de Gouw, J. A., An Improved, Automated Whole-Air Sampler and Gas Chromatography Mass Spectrometry Analysis System for Volatile Organic Compounds in the Atmosphere. Atmos. Meas. Tech., 10, 291-313, 2017. 19.Ye, C., Zhou, X.L., Pu, D., Stutz, J., Festa, J., Spolaor, M., Tsai, C., Cantrell, C., Mauldin III, R. L., Campos, T., Weinheimer, A., Hornbrook, R. S., Apel, E. C., Guenther, A., Kaser, L., Yuan, B., Karl, T., Haggerty, J., Hall, S., Ullmann, K., Smith, J., Ortega, J., Knote, C.: Rapid recycling of reactive nitrogen in the marine boundary layer,Nature, 532, 489-491, 2016. 20.Ye, C., Zhou, X.L., Pu, D., Stutz, J., Festa, J., Spolaor, M., Tsai, C., Cantrell, C., Mauldin III, R. L., Campos, T., Weinheimer, A., Hornbrook, R. S., Apel, E. C., Guenther, A., Kaser, L., Yuan, B., Karl, T., Haggerty, J., Hall, S., Ullmann, K., Smith, J., Ortega, J., Knote, C.: Rapid recycling of reactive nitrogen in the marine boundary layer,Nature, 532, 489-491, 2016.

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