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Yunfeng Li



Yunfeng Li, Female, born in September 1990, Harbin, Heilongjiang Province. She holds a Ph.D. in Engineering, and she is a Lecturer and Master's Supervisor. She graduated from Shandong University with a Bachelor's degree in Applied Chemistry in 2013, received a Master's degree in Environmental Science and Engineering in 2016, and a Ph.D. in Environmental Science in 2021. She works in the Department of Environmental Engineering, School of Mechanical Engineering.

 

I. Major Research Areas

  1. Formation mechanism of atmospheric complex pollution;
  2. Atmospheric transformation and degradation mechanisms of environmental organic pollutants.

 

II. Rewards and Honors

  1. Chunhui Award, Third Prize, 2024.
  2. Excellent URT Program Project Supervisor, 2024.
  3. Third Prize in the Teaching Basic Skills Competition for Young Teachers at Beijing Institute of Petrochemical Technology, Science and Engineering Group, 2024.5. Li Yunfeng.
  4. Third Prize in the Teaching Basic Skills Competition for Young Teachers at Beijing Institute of Petrochemical Technology, Science and Engineering Group, 2022.

 

III. Research Projects

  1. National Major Scientific and Technological Special Project: Research and Development of Low-Carbon Self-Purification Technology for Atmospheric NOx and VOCs in Typical Cities of Beijing-Tianjin-Hebei Region, Sub-Project Leader, 2025-2028.
  2. Corporate horizontal project: Characteristics and pollution source tracing analysis of VOCs components in ambient air during summer in Jia County, project leader, 2025-2026.
  3. Corporate Horizontal Project: Analysis of VOCs Component Characteristics and Sources in Wuxing District, Project Leader, 2024.
  4. Corporate horizontal project: Operation and maintenance quality control service for infrared Fourier telemetry equipment, project leader, 2024-2025.
  5. Corporate Horizontal Project: Analysis of 112 Volatile Organic Compounds in Daya Bay District, Huizhou City, Project Leader, 2023-2024.
  6. Corporate Horizontal Project: Study on the Temporal Distribution and Ozone Sensitivity of 117 Substances in VOCs Samples, Project Leader, 2022-2023.
  7. Cross-school Research Exploration Project: Study on the Reaction Mechanism of NO2 Forming HONO on Mineral Oxides and Its Impact on Ozone Formation, Project Leader, 2022-2023.

 

IV. Representative Publications

  1. Yunfeng Li, Jilin Tang, Minghao Dong, et al. Comparative Analysis of Ambient Air VOCs Pollution Characteristics and Sources in Different Functional Zones of Beijing City [J]. Environmental Science Research, 2025, 38(05): 1000-1010
  2. Yunfeng Li, Jilin Tang, Yuanyuan Ji, et al. Comparative Analysis of Ambient Air Ozone and Its Background Concentration in Beijing in Recent Years [J]. Environmental Science, 2025, 46(03): 1275-1284
  3. Jiaxin Li, Yanhui Sun*, Yunfeng Li*. Mechanism, kinetics and product nucleation of gas-phase ozonolysis of 3-methyl-3-buten-1-ol in the atmosphere[J]. Chemical Physics. 2025, 595, 112705.
  4. Yunfeng Li, Jilin Tang, Sheng Kang, et al. Characteristics and Source Analysis of Volatile Organic Compounds (VOCs) Pollution in Daxing District, Beijing after the Spring Heating Period in 2023 [J]. Journal of Beijing Institute of Petrochemical Technology, 2024, 32(03): 58-64+70
  5. Yunfeng Li, Zhenhai Wu, Yuanyuan Ji, et al. Comparison of the ozone formation mechanisms and VOCs apportionment in different ozone pollution episodes in urban Beijing in 2019 and 2020: Insights for ozone pollution control strategies[J]. Science of The Total Environment. 2024, 168332.
  6. Biao Dong, Hong Ding, Huidi Zhang, Hu Zhao, Haojie Xu, Zhenyu Xu, Juanbao Wang, Yunfeng Li*, Xiangli Shi*. Theoretical study of the reaction of organic peroxyl radicals with alkenes and their accretion products involved in the atmospheric nucleation[J]. Atmospheric Environment. 2024, 334, 120718.
  7. Yunfeng Li, Hong Li, Xin Zhang, et al. Characteristics, sources and health risk assessment of atmospheric carbonyls during multiple ozone pollution episodes in urban Beijing: Insights into control strategies[J]. Science of The Total Environment. 2023, 863: 160769.
  8. Yunfeng Li, Xurong Bai, Yanqin Ren, et al. PAHs and nitro-PAHs in urban Beijing from 2017 to 2018: Characteristics, sources, transformation mechanism and risk assessment[J]. Journal of Hazardous Materials. 2022, 436: 129143.
  9. Yunfeng Li, Xuezhong Wang, Zhenhai Wu, et al. Atmospheric nitrous acid (HONO) in an alternate process of haze pollution and ozone pollution in urban Beijing in summertime: Variations, sources and contribution to atmospheric photochemistry[J]. Atmospheric Research. 2021, 260: 105689.
  10. Yunfeng Li, Rui Gao, Likun Xue, et al. Ambient volatile organic compounds at Wudang Mountain in Central China: Characteristics, sources and implications to ozone formation[J]. Atmospheric Research. 2021, 250: 105359.
  11. Yunfeng Li, Haijie Zhang, Qingzhu Zhang, et al. Interactions of sulfuric acid with common atmospheric bases and organic acids: Thermodynamics and implications to new particle formation[J]. Journal of Environmental Sciences. 2020, 95: 130-140.
  12. Yunfeng Li, Yanhui Sun, Qingzhu Zhang*. Theoretical and kinetic properties of OH radical-initiated oxidation of galaxolide in the atmosphere[J]. The Journal of Physical Chemistry A. 2018, 122: 9151-9159.
  13. Yunfeng Li, Xiangli Shi, Maoxia He*. Computational investigation on NO3-initiated degradation of p,p’-DDE in atmosphere: Mechanism and kinetics[J], Computational and Theoretical Chemistry. 2015, 1068: 21-29.

 

V. Patents and Software Copyrights

  1. Yunfeng Li, Minghao Dong, Yafei Wang. Ozone Multi-scale Prediction, High-value Warning and Source Tracing System V1.0, 2025SR0533777, 2025.3.27.
  2. Rui Gao, Xin Zhang, Yunfeng Li, Fang Bi, Zhenhai Wu. Ozone Key Precursor Analysis and Identification Software V1.0, 2022SR0419362, March 31, 2022.

 

VI. Admissions Information

I recruit students for master's degree programs in Environmental Science and Engineering (0830) and Master's degree programs in Resources and Environment (0857). Our team boasts excellent research conditions in terms of both hardware and software. We sincerely welcome students with a strong foundation in environmental science, environmental engineering, chemistry, software engineering, computer science, and other related fields who are practical, conscientious, innovative, and possess strong experimental skills, computer data analysis abilities, and a high level of English proficiency to join our team.