刘俊文
近期热点
资料介绍
个人简历
刘俊文,男,广东兴宁人,暨南大学环境与气候研究院副教授。2009年7月毕业于华南农业大学,获学士学位;2015年1月毕业于中国科学院大学,获博士学位;2014年12月到2016年12月在中国科学院广州地化所从事博士后研究;2013年获广州市菁英计划资助,在伯尔尼大学从事含碳气溶胶放射性碳分析工作;2016年获瑞典玛丽居里国际引进人才资助,在斯德哥尔摩大学从事黑碳双碳同位素及其光学性质研究。主要从事黑碳、有机碳和棕碳来源解析、光学性质、清单和观测对比等方向的研究工作。在ES&T,JGR-A, ACP,AE等期刊上发表SCI期刊20余篇研究领域
1. 同位素示踪含碳气溶胶来源及大气行为2. 吸光含碳气溶胶(黑碳和棕碳)的光学性质近期论文
[1] J. Liu, P. Ding, Z. Zong, J. Li, C. Tian, W. Chen, M. Chang, G. Salazar, C. Shen, Z. Cheng, Y. Chen, X. Wang, S. Szidat and G. Zhang: Evidence of rural and suburban sources of urban haze formation in China: A case study from the Pearl River Delta region, Journal of Geophysical Research: Atmospheres, 2018, 123, 4712-4726.[2] Y. Mo, J. Li, B. Jiang, T. Su, X. Geng, J. Liu, H. Jiang, C. Shen, P. Ding, G. Zhong, Z. Cheng, Y. Liao, G. Tian, Y. Chen and G. Zhang: Sources, compositions, and optical properties of humic-like substances in Beijing during the 2014 APEC summit: Results from dual carbon isotope and Fourier-transform ion cyclotron resonance mass spectrometry analyses, Environmental Pollution, 2018, 239, 322-331.[3] J. Liu, Y. Mo, P. Ding, J. Li, C. Shen and G. Zhang: Dual carbon isotopes (14C and 13C) and optical properties of WSOC and HULIS-C during winter in Guangzhou, China, Science of The Total Environment, 2018, 633, 1571–1578.[4] J. Liu, J. Li, P. Ding, Y. Zhang, D. Liu, C. Shen and G. Zhang: Optimizing isolation protocol of organic carbon and elemental carbon for 14C analysis using fine particulate samples, Atmospheric Environment, 2017, 154, 9-19.[5] F. Cao, Y. Zhang, L. Ren, J. Liu, G. Zhang, D. Liu, Y. Sun, Z. Wang, Z. Shi and P. Fu: New insights into the sources and formation of carbonaceous aerosols in China: Potential applications of dual carbon isotopes, National Science Review, 2017, nwx097.[6] J. Liu, J. Li, M. Vonwiller, D. Liu, H. Cheng, K. Shen, G. Salazar, K. Agrios, Y. Zhang, Q. He, X. Ding, G. Zhong, X. Wang, S. Szidat, and G. Zhang: The importance of non-fossil sources in carbonaceous aerosols in a megacity of central China during the 2013 winter haze episode: A source apportionment constrained by radiocarbon and organic tracers, Atmospheric Environment, 2016, 144, 60 – 68.[7] J. Liu, Y. Mo, J. Li, D. Liu, C. Shen, P. Ding, H. Jiang, Z. Cheng, X. Zhang, C. Tian, Y. Chen and G. Zhang: Radiocarbon-derived source apportionment of fine carbonaceous aerosols before, during, and after the 2014 Asia-Pacific Economic Cooperation (APEC) summit in Beijing, China, Journal of Geophysical Research: Atmospheres, 2016, 121, 4177-4187.[8] J. Liu, J. Li, D. Liu, P. Ding, C. Shen, Y. Mo, X. Wang, C. Luo, Z. Cheng, S. Szidat, Y. Zhang, Y. Chen and G. Zhang: Source apportionment and dynamic changes of carbonaceous aerosols during the haze bloom-decay process in China based on radiocarbon and organic molecular tracers, Atmospheric Chemistry and Physics, 2016, 16, 2985-2996.[9] J. Liu, J. Li, Y. Zhang, D. Liu, P. Ding, C. Shen, K. Shen, Q. He, X. Ding, X. Wang, D. Chen, S. Szidat and G. Zhang: Source apportionment using radiocarbon and organic tracers for PM2.5 carbonaceous aerosols in Guangzhou, South China: Contrasting local- and regional-scale haze events, Environmental Science & Technology, 2014, 48, 12002-12011.[10] J. Liu, Y. Xu, J. Li, D. Liu, C. Tian, C. Cheamfa and G. Zhang: The distribution and origin of PAHs over the Asian marginal seas, the Indian, and the Pacific Oceans: Implications for outflows from Asia and Africa, Journal of Geophysical Research: Atmospheres, 2014, 4, 1949-1961.[11] Y. Huang, J. Li, Y. Xu, W. Xu, Z. Cheng, J. Liu, Y., Wang C., Tian C., Luo and G. Zhang: Polychlorinated biphenyls (PCBs) and hexachlorobenzene (HCB) in the equatorial Indian Ocean: Temporal trend, continental outflow and air–water exchange, Marine Pollution Bulletin, 2014, 80, 194-199.[12] U. Ali, J. H. Syed, J. Liu, L. Sánchez-García, R. N. Malik, M. J. I. Chaudhry, M. Arshad, J. Li, G. Zhang and K. C. Jones: Assessing the relationship and influence of black carbon on distribution status of organochlorines in the coastal sediments from Pakistan, Environmental Pollution, 2014, 190, 82-90.[13] A. Alamdar, J. H. Syed, R. N. Malik, A. Katsoyiannis, J. Liu, J. Li, G. Zhang and K. C. Jones: Organochlorine pesticides in surface soils from obsolete pesticide dumping ground in Hyderabad City, Pakistan: Contamination levels and their potential for air–soil exchange, Science of The Total Environment, 2014, 470-471, 733-741.[14] Y. Zhang, J. Liu, G. A. Salazar, J. Li, P. Zotter, G. Zhang, R. Shen, K. Schäfer, J. Schnelle-Kreis, A. S.H. Prévôt and S. Szidat: Micro-scale (μg) radiocarbon analysis of water-soluble organic carbon in aerosol samples, Atmospheric Environment, 2014, 97, 1-5.2013[15] J. Liu, J. Li, T. Lin, D. Liu, Y. Xu, C. Chaemfa, S. Qi, F. Liu and G. Zhang: Diurnal and nocturnal variations of PAHs in the Lhasa atmosphere, Tibetan Plateau: Implication for local sources and the impacts of atmospheric degradation processing, Atmospheric Research, 2013, 124, 34-43.[16] Y. Huang, Y. Xu, J. Li, W. Xu, G. Zhang, Z. Cheng, J. Liu, Y. Wang and C. Tian: Organochlorine Pesticides in the Atmosphere and Surface Water from the Equatorial Indian Ocean: Enantiomeric Signatures, Sources, and Fate, Environmental Science & Technology, 2013, 47, 13395-12403.[17] F. Liu, Y. Xu, J. Liu, D. Liu, J. Li, G. Zhang, X. Li, S. Zou and S. Lai: Atmospheric deposition of polycyclic aromatic hydrocarbons (PAHs) to a coastal site of Hong Kong, South China, Atmospheric Environment, 2013, 69, 265-272. 相关热点
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