个人简介
刘颖君,北京大学环境科学与工程学院研究员,博士生导师。主要研究方向为室内空气污染与健康,特别关注室内空气中挥发性有机物与半挥发性有机污染物的环境行为及健康效应。先后在上海交通大学、北京大学及美国哈佛大学获得学士、硕士和博士学位,并在哈佛大学和加州大学伯克利分校从事博士后研究。2018年6月加入北京大学环境科学与工程学院。研究成果发表在PNAS、Science Advances、Environmental Science & Technology与Indoor Air等学术期刊上。所获得的的学术奖励包括NASA博士奖学金,斯隆基金会博士后奖学金,MIT评选的CEE Rising Star,并入选第十四批国家“千人计划”青年项目。
代表性著作
1. Lunderberg, D. M. ; Kristensen, K. ; Tian, Y. ; Arata, C. ; Misztal, P. K. ; Liu, Y. J. ; Kreisberg, N. ; Katz, E. F. ; DeCarlo, P. F. ; Patel, S. ; et al. Surface Emissions Modulate Indoor Svoc Concentrations Through Volatility-Dependent Partitioning. Environmental Science & Technology 2020, 54, 6751–6760.
2. Lunderberg, D. M. ; Kristensen, K. ; Liu, Y. J. ; Misztal, P. K. ; Tian, Y. ; Arata, C. ; Wernis, R. ; Kreisberg, N. ; Nazaroff, W. W. ; Goldstein, A. H. Characterizing Airborne Phthalate Concentrations and Dynamics in a Normally Occupied Residence. Environmental Science & Technology 2019, 53, 7337–7346.
3. Liu, Y. J. ; Misztal, P. K. ; Xiong, J. ; Tian, Y. ; Arata, C. ; Weber, R. J. ; Nazaroff, W. W. ; Goldstein, A. H. Characterizing Sources and Emissions of Volatile Organic Compounds in a Northern California Residence Using Space- and Time-Resolved Measurements. Indoor Air 2019, 29, 630-644.
4. Kristensen, K. ; Lunderberg, D. M. ; Liu, Y. J. ; Misztal, P. K. ; Tian, Y. ; Arata, C. ; Nazaroff, W. W. ; Goldstein, A. H. Sources and Dynamics of Semivolatile Organic Compounds in a Single-Family Residence in Northern California. Indoor Air 2019, 29, 645-655.
5. De Sá, S. S. ; Rizzo, L. V. ; Palm, B. B. ; Campuzano-Jost, P. ; Day, D. A. ; Yee, L. D. ; Wernis, R. ; Isaacman-Vanwertz, G. ; Brito, J. ; Carbone, S. ; et al. Contributions of Biomass-Burning, Urban, and Biogenic Emissions to the Concentrations and Light-Absorbing Properties of Particulate Matter in Central Amazonia During the Dry Season. Atmospheric Chemistry and Physics 2019, 19, 7973–8001.
6. Liu Y. J., Misztal P. K., Xiong J., Tian Y., Arata C., Nazaroff W. W., and Goldstein A. H.: Detailed investigation of ventilation rates and airflow patterns in a northern California residence. Indoor Air. 2018, 28(4), 572-584.
7. Liu, Y. J.; Seco, R.; Kim S., Guenther, A. B.; Goldstein, A. H.; Keutsch, F. N.; Springston, S. R.; Watson, T. B.; Artaxo, P.; Souza, R. A. F.; McKinney, K. A. and Martin, S. T.: Isoprene photo-oxidation products quantify the effect of pollution on hydroxyl radicals over Amazonia. Sci. Adv. 2018, 4, eaar2547.
8. Liu, Y. J.; Brito, J.; Dorris, M. R.; Rivera-Rios, J. C.; Seco, R.; Bates, K. H.; Artaxo, P.; Duvoisin, S.; Keutsch, F. N.; Kim, S.; Goldstein, A. H.; Guenther, A. B.; Manzi, A. O.; Souza, R. A. F.; Springston, S. R.; Watson, T. B.; McKinney, K. A.; Martin, S. T., Isoprene photochemistry over the Amazon rainforest. P. Natl. Acad. Sci. USA 2016, 113 (22), 6125-6130.
9. Liu, Y. J.; Herdlinger-Blatt, I.; McKinney, K. A.; Martin, S. T., Production of methyl vinyl ketone and methacrolein via the hydroperoxyl pathway of isoprene oxidation. Atmos. Chem. Phys. 2013, 13 (11), 5715-5730.