Huang Shan
发布时间:2026-01-31

Personal information
Huang Shan
Master’s Supervisor
Email: coral119@ncu.edu.cn
School of Resources and Environmental Engineering, Nanchang University
Educational Background
Sep. 2010 – Aug. 2015 Ph.D., Kyung Hee University (South Korea)Sep. 2007 – Mar. 2010 Master’s Degree, University of Shanghai for Science and TechnologySep. 2002 – Jul. 2006 Bachelor’s Degree, Jiangxi University of Science and Technology
Work Experience
Dec. 2015 – Present School of Resources and Environmental Engineering, Nanchang University
Academic and Social Affiliations
None
Research Fields
· Air Pollution Control
· Ecological Risk and Environmental Health
Research Overview
As the principal investigator or main participant, she has presided over and participated in the completion of projects including the National Natural Science Foundation of China, Jiangxi Postdoctoral Science Foundation, Jiangxi Youth Science Foundation, and Science and Technology Research Project of Jiangxi Provincial Department of Education.To date, she has published more than ten papers in authoritative international academic journals.
Courses Taught
Undergraduate Courses
· Principles of Waste Resourceization Engineering
· Cleaner Production
Postgraduate Courses
· Solid Waste Resourceization
Awards and Honors
None
Representative Achievements
[1] Shan Huang*, Peixian Chen, Kuanyun Hu, Yecheng Qiu, Weiwei Feng, Zhipeng Ren, Xianglian Wang, Ting Huang, Daishe Wu. Characteristics and source identification of fine particles in the Nanchang subway, China. Building and Environment, 2021, 199: 107925.
[2] Ting Huang, Yuxia Deng, Xiaolong Zhang, Daishe Wu, Xianglian Wang* & Shan Huang*. Distribution, source identification, and health risk assessment of heavy metals in the soil-rice system of a farmland protection area in Hubei Province, Central China. Environmental Science and Pollution Research, 2021, 28: 68897–68908.
[3] Chen Zeng, Shan Huang*, Daishe Wu, Jichan Huang, Yizhong Mao, Zhiwei Pan. Characteristics and source apportionment of metal elements in fine particulate matter from Nanchang Subway. Journal of Nanchang University (Natural Science Edition), 2021, 45(2): 168-175. (in Chinese)
[4] Shan Huang, Zhiwei Pan, Jichan Huang, Xiaowei Lu, Yizhong Mao, Ting Huang, Daishe Wu. Spatial-temporal distribution and metal characteristics of PM₂.₅ in Nanchang City. Environmental Pollution & Control, 2020, 42(7): 917-921, 936. (in Chinese)
[5] Dinglian Shi, Jianlong Li*, Yongnan Du, Quanquan Wu*, Shan Huang, Hong Huang, Daishe Wu. Influence of Relative Humidity on the Characteristics of Filter Cake Using Particle Flow Code Simulation. Atmosphere, 2022, 13(5): 770.
[6] Xingming Zhang*, Lin Zeng, Hongpeng Zhang, Shan Huang. Magnetization Model and Detection Mechanism of a Microparticle in a Harmonic Magnetic Field. IEEE/ASME Transactions on Mechatronics, 2019, 24(4): 1882-1892.
[7] Junxiang Shi, Yizhong Mao, Qin Hu, Ting Huang, Daishe Wu, Youngmin Jo, Xing Luo, Shan Huang*. Characteristics of subway particulate matter and its control by magnetic filtration. Chinese Journal of Environmental Engineering, 2018, 9(12): 2585-2593. (in Chinese)
[8] Shan Huang, Haewoo Park, Youngmin Jo*. Dynamic Behavior of Nano-Size Dust Particles in a Magnetic Field Channel. Journal of Nanoscience and Nanotechnology, 2016, 16: 4328-4334.
[9] Shan Huang, Xingming Zhang, Masamoto Tafu, Takeshi Toshima, Youngmin Jo*. Study on subway particle capture by ferromagnetic mesh filter in nonuniform magnetic field. Separation and Purification Technology, 2015, 156: 642-654.
[10] Shan Huang, Haewoo Park, Young Koo Park, Youngmin Jo*. Dynamic Trajectory and Capture of Fine Dust by Magnetic Mesh Filters Based on a Particle Velocity Model. Aerosol Science and Technology, 2015, 49(8): 633-642.
[11] Shan Huang, Haewoo Park, Youngmin Jo*. Theoretical Study on Magnetic Field Application for Fine Particle Capture. The Journal of Korean Association for Particle and Aerosol Research, 2014, 10(2): 45-51.
[12] Shan Huang, Hae-Woo Park, Young-Min Jo*, Young-Koo Park, Youn-Che Kim. Application of magnetic field to iron contained dust capture. Journal of Korean Oil Chemists’ Society, 2014, 31(1): 59-65.

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