
马楠,研究员,博士生导师,暨南大学环境与气候学院副院长,环境与气候研究院院长,国家海外高层次人才引进青年项目获得者、广东省卓越青年团队首席科学家、广东省珠江人才计划创新创业团队核心成员。
主要研究方向包括光吸收性气溶胶环境气候效应、气溶胶-云相互作用、气溶胶健康效应、气溶胶观测技术研发等,在包括Science、GRL、JGR、EST、ACP等国际高水平期刊发表SCI论文100余篇,文章总引用6000余次,H因子44(Googlescholar)。主持国家自然科学基金重点项目1项、面上项目2项、科技部重点研发计划课题1项、广东省卓越青年团队项目1项。获教育部自然科学二等奖(排名3)。
担任Journal of Geophysical Research: Atmospheres期刊Associate Editor,Atmosphere期刊Editorial Board。并担任中国气象学会大气物理学专业委员会和人工影响天气专业委员会委员,广东省气象学会大气物理专业委员会副主任委员。
教育经历
1. 2008-09至2013-06,北京大学,大气物理学与大气环境,博士
2. 2004-09至2008-06,北京大学,大气科学,学士
工作经历
1. 2017-07至今,暨南大学,环境与气候学院,研究员
2. 2015-09至2017-06,德国马克思普朗克化学所,多相化学分部,博士后,课题组长
3. 2013-07至2015-08,德国莱布尼茨对流层研究所,博士后
1.光吸收性气溶胶环境气候效应
2.气溶胶-云相互作用
3.气溶胶健康效应
4.气溶胶观测技术研发
1. 国家自然科学基金重点项目,基于动态过饱和比变化的环境大气气溶胶活化理论研究,230万元,2026-2030
2. 国家自然科学基金面上项目,云雾过程中黑碳理化性质的变化及其关键影响因素观测研究,49万元,2024-2027
3. 广东省基础与应用基础研究基金,卓越青年团队项目,云过程对光吸收性碳质气溶胶环境气候效应的影响,300万元,2024-2027
4. 国家自然科学基金面上项目,基于无人机平台的黑碳颗粒物垂直分布及环境效应评估,61万元,2019-2022
5. 广东省引进创新创业团队子课题,区域大气污染防治与低碳技术研发平台,200万元,2017-2022
6. 科技部重点研发计划项目课题,云雾过程对大气颗粒物沉降的影响和数值模拟,450万元,2016-2020
完整文章列表见https://scholar.google.com/citations?user=zA7FFs4AAAAJ&hl=zh-CN
代表性文章:
1.An M, Tao J, Zhou Y, et al. Characterizing low-supersaturation CCN activity with AAC-CCNC system at a mountain site in continental region in China[J]. Atmospheric Research, 2025: 108670.
2. Zhu S, Ma N, Yu P, et al. Vertical profiling of aerosol physicochemical properties with a new airborne aerosol sampling system for unmanned aerial vehicles and tethered balloons[J]. Journal of Geophysical Research: Atmospheres, 2025, 130(15): e2024JD043148.
3.Hong J, Ma J, Ma N, et al. Adequate Consideration of Aerosol Hygroscopicity is Crucial for Evaluating Its Respiratory Deposition and Related Health Impacts[J]. Environmental Science & Technology, 2025.
4. Hong J, Ma J, Ma N, et al. Low Hygroscopicity of newly formed particles on the North China Plain and its implications for nanoparticle growth[J]. Geophysical Research Letters, 2024, 51(14): e2023GL107516.
5. Tao J, Luo B, Meng Z, et al. A new method for size‐resolved aerosol CCN activity measurement at low supersaturation in pristine atmosphere[J]. Journal of Geophysical Research: Atmospheres, 2024, 129(10): e2023JD040357.
6. Zhang C, Yu D, Ma N, et al. Effect of size and concentration corrections for surface tension on the hygroscopicity prediction of nano-aerosols[J]. Powder Technology, 2023: 119278.
7. Wang Q, Zhou Y, Ma N, et al. Review of Brown Carbon Aerosols in China: Pollution Level, Optical Properties, and Emissions[J]. Journal of Geophysical Research: Atmospheres, 2022, 127(16): e2021JD035473.
8. Zonghan Xue, Nan Ma, Weigang Wang. Nitrated Mono-aromatic Hydrocarbons in the Atmosphere[J]. Progress in Chemistry, doi: 10.7536/PC211215.
9. Liang M, Tao J, Ma N, et al. Prediction of CCN spectra parameters in the North China plain using random forest model[J]. Atmospheric Environment, 2022: 119323.
10. Yang Z, Ma N, Wang Q, et al. Characteristics and source apportionment of black carbon aerosol in the North China Plain[J]. Atmospheric Research, 2022: 106246.
11. Shi, J., Hong, J., Ma, N., et al: Measurement report: On the difference in aerosol hygroscopicity between high and low relative humidity conditions in the North China Plain, Atmos. Chem. Phys., 22, 4599–4613, https://doi.org/10.5194/acp-22-4599-2022, 2022.
12. Zhou, Y., Ma, N., Wang, Q., et al: Bimodal distribution of size-resolved particle effective density: results from a short campaign in a rural environment over the North China Plain, Atmos. Chem. Phys., 22, 2029–2047, https://doi.org/10.5194/acp-22-2029-2022, 2022.
13. Wu S, Tao J, Ma N, et al. Particle number size distribution of PM1 and PM10 in fogs and implications on fog droplet evolutions[J]. Atmospheric Environment, 2022: 119086.
14. Han, S., Hong, J., Luo, Q., et al: Hygroscopicity of organic compounds as a function of organic functionality, water solubility, molecular weight, and oxidation level, Atmos. Chem. Phys., 22, 3985–4004, https://doi.org/10.5194/acp-22-3985-2022, 2022.
15. Cheng Y, Ma N, Witt C, et al. Face masks effectively limit the probability of SARS-CoV-2 transmission[J]. Science, 2021.
16. Tao, J., Kuang, Y., Ma, N., et al. Secondary aerosol formation alters CCN activity in the North China Plain. Atmospheric Chemistry and Physics, 21(9), 7409-7427, 2021
本科生课程:《环境与气候变迁》
研究生课程:《大气气溶胶》《大气气溶胶基础》《大气颗粒物理论与应用》《高级英语写作》
团队简介:气溶胶物理化学研究团队以深入理解气溶胶气候、环境和健康效应为目标,以技术方法研发为特色,结合外场观测、实验室模拟和数值模拟等手段,探究气溶胶物理特性和物理过程在气溶胶--云相互作用、大气辐射和环境健康中的作用与影响。
团队成员:马楠(PI)、王俏巧(PI)、洪娟、陶江川、周雅清