姓名:陈东
职称:高级工程师(副高级)
学历:博士研究生
学科:环境科学与工程
部门:环境工程系
研究方向:人为源排放对气溶胶及臭氧污染特征影响、气溶胶含碳组分吸收效应影响因素研究、气溶胶光学特性及来源、挥发性有机物(VOCs)污染来源及治理、环境与气候政策量化评估等。
授课信息:环境化学(本科生课程)、专业英语与文献检索(本科生课程)。
个人简介:陈东,工学博士,高级工程师。2019年3月毕业于南京大学获环境科学与工程专业工学博士学位,2019年3月至2023年8月在南京大学/江苏省环境科学研究院从事博士后研究工作。近年来,主要从事大气光化学与人为源排放量化评估研究,先后主持国家自然科学基金青年基金项目、江苏省自然科学基金青年基金项目、江苏省重大气专项、地方政府和企业咨询服务项目等各类科技项目20余项;在Atmospheric Chemistry and Physics、Science of the Total Environment、Atmospheric Environment等国内外重要期刊发表论文20余篇。其中,JCR一区论文4篇。参与出版专著1部;获江苏省第十五批科技镇长团优秀团员(中共江苏省委组织部);获江苏省生态环境厅直属部门(江苏省环境科学研究院)奖项2项,相关科研成果获生态环境部等管理部门批示。
承担项目:
(1) 国家自然科学基金青年基金项目(42307146):化工园区棕色碳与臭氧污染耦合机制研究,主持,2024.1—2026.12.
(2) 江苏省自然科学基金项目(BK20230762):基于含碳组分吸收特性的气溶胶消光模型优化及来源研究,主持,2023.7—2026.6.
(3) 江苏省博士后日常资助(2020Z362):南京市大气颗粒物光散射对能见度影响及控制策略研究,主持,2020-2022.
(4) 南京市博士后资助:我国华东地区气溶胶光学性质与臭氧生成过程的耦合关系,主持,2019-2021.
(5) 国家自然科学基金面上项目(41575142):基于不确定性分析与观测约束的含碳气溶胶排放表征优化,主研,2016-2019.
(6) 国家自然科学基金重大研究计划(91644220):长三角排放清单的优化集成与综合校验,主研,2017-2020.
(7) 国家重点研发计划(2018YFC0213803):长三角氮氧化物和挥发性有机物总量控制研究,主研,2018-2021.
(8) 国家大气污染防治攻关联合中心(DQGG202115):宿迁市细颗粒物和臭氧污染协同防控“一市一策”跟踪研究,主研,2021-2023.
(9) 江苏省PM2.5与臭氧污染协同控制重大专项(2019023):重点行业VOCs与NOx减排体系与监管技术研究,主研,2018-2022.
(10) 江苏省PM2.5与臭氧污染协同控制重大专项(2019023):PM2.5与臭氧管控方案研究与平台建设,主研,2018-2022.
(11) 南通市生态环境局:南通市大气细颗粒物来源解析研究技术报告,主研,2019-2020.
(12) 徐州市生态环境局:大气污染源清单更新及大气污染防治专家支撑服务项目》,主研,2019-2020.
论文:
(1) Chen D, Zhao Y*, Zhang J, Yu H, Yu X. Characterization and source apportionment of aerosol light scattering in a typical polluted city in the Yangtze River Delta, China. Atmospheric Chemistry and Physics, 20, 10193-10210, 2020. (IF:7.197;中科院地球科学大类1区)
(2) Chen D, Zhao W, Zhang L*, Zhao Q*, Zhang J, Chen F, Li H, Guan M, Zhao Y. Characterization and source apportionment for light absorption amplification of black carbon at an urban site in eastern China. Science of the Total Environment, 865, 161180, 2023. (IF:10.753;中科院环境科学与生态学大类1区)
(3) Chen D, Cui H, Zhao Y*, Yin L, Lu Y, Wang Q. A two-year study of carbonaceous aerosols in ambient PM2.5 at a regional background site for western Yangtze River Delta, China. Atmospheric Research, 183, 351-361, 2017. (IF:5.965;中科院地球科学大类2区)
(4) Chen D, Zhao Y*, Lyu R, Wu R, Dai L, Zhao Y, Chen F, Zhang J, Yu H, and Guan M. Seasonal and spatial variations of optical properties of light absorbing carbon and its influencing factors in a typical polluted city in Yangtze River Delta, China. Atmospheric Environment, 199, 45-54, 2019. (IF:5.755;中科院环境科学与生态学大类2区)
(5) Chen D, An Z, Zhao Q, Xia S, Li L, Guan M*. Study of variations in mass absorption efficiency of elemental carbon influenced by different measurement techniques and vehicle emission. Frontiers in Environmental Science, 9, 812039, 2022. Doi: 10.3389/fenvs.2021.812039. (IF:5.411;中科院环境科学与生态学大类3区)
(6) Chen D*, Zhao Q, Li L, Xia S, Chen F, Wei M, Li H, Zhang L, Guan M. Shipborne observations of chemical characterization and light extinction of aerosol along the Yangtze River, China. Frontiers in Environmental Science, 10, 857510, 2022. Doi: 10.3389/fenvs.2022.857510. (IF:5.411;中科院环境科学与生态学大类3区)
(7) Chen D*, Zhao Q, Xia S, Li L, Guan M*. Size distribution of light absorption of carbonaceous aerosols over rural, urban and industrial sites in a typical polluted city in Yangtze River Delta, China. Air Quality, Atmosphere & Health, 15, 1953-1961, 2022. https://doi.org/10.1007/s11869-022-01229-5. (IF:5.804;中科院环境科学与生态学大类4区)
(8) Zhao X, Zhao Y*, Chen D, Li C, Zhang J. Top-down estimate of black carbon emissions for city cluster using ground observations: A case study in southern Jiangsu, China. Atmospheric Chemistry and Physics, 19, 2095-2123, 2019.
(9) Dai L, Zhang L, Chen D, Zhao Y*. Assessment of carbonaceous aerosols in suburban Nanjing under air pollution control measures: Insights from long-term measurement. Environmental Research, 212, 113302, 2022.
(10) Dai L, Zhao Y*, Zhang L, Chen D, Wu R. Particle number size distributions and formation and growth rates of different new particle formation types of a megacity in China. Journal of Environmental Sciences, 131, 11-25, 2022.
(11) Qu L, Li M, Chen D. Multivariate analysis between driving condition and vehicle emission for light duty gasoline vehicles during rush hours. Atmospheric Environment, 110, 103-110, 2015.
(12) Guan M*, Ji W, Xu Y, Yan L, Chen D, Li S, Zhang X*. Molecular fingerprints of polar narcotic chemicals based on heterozygous essential gene knockout library in Saccharomyces cerevisiae. Chemosphere, 308, 136343, 2022.
(13) Guan M*, Yan L, Li R, Xu Y, Chen D, Li S, Ma F*, Zhang X. Integration of leave-one-out method and real-time live cell reporter array system to assess the toxicity of mixtures. Environmental Research, 214, 1141102022, 2022.
(14) Guan M*, Zhu Z, Jiang Y, Tian M, Yan L, Xu X, Li S, Chen D, Zhang X*. Assessment of genotoxic chemicals using chemogenomic profiling based on gene-knockout library in Saccharomyces cerevisiae. Toxicology in Vitro, 79, 105278, 2022.
(15) Guan M*, Xia P, Tian M, Chen D, Zhang X*. Molecular fingerprints of conazoles via functional genomic profiling of Saccharomyces cerevisiae. Toxicology in Vitro, 69, 104998, 2020.