Guoqiang Wei Ph.D
  • Master Supervisor
  • |
  • Subject:
    Chemical Engineering
    Research:
    ·Water Electrolysis
    · Solid Waste Treatment and Utilization
       E-mail:weiguoqiang@tyut.edu.cn
       Address:Chemistry Pavilion, Room 303
    • Personal profile
    • Education
    • Scientific Research
    Wei Guoqiang, male, member of the China Democratic League, born in June 1973, from Yuncheng city, Shanxi. Doctor of Engineering, associate professor, master supervisor. Mainly engaged in the research of fuel cell and water electrolysis hydrogen production membrane, electrocatalyst and other key materials and membrane electrodes. In recent years, he has been engaged in research in the fields of coal chemical industry, environmental pollution control, solid waste treatment and comprehensive utilization of resources.
    Mobile phone number: 15834126883
    Email: weiguoqiang@tyut.edu.cn
    Education Background
    1992.09—1996.07 Taiyuan University of Technology Inorganic Chemical Engineering (Undergraduate)
    2001.09—2004.03 Beijing Institute of Technology Chemical Engineering (Master)
    2005.03—2010.03 Tianjin University Chemical Engineering (PhD)
    2017.02—2018.02 Visiting Scholar, Curtin University, Australia
    Work Experience
    1996.07—2001.06  Thermal Power Workshop of Shanxi Fertilizer Plant, Deputy Team Leader and Furnace
    2010.07—2012.08  School of Chemical Engineering, Taiyuan University of Technology
    2011.01—2015.12  Director of Teaching and Research Office of Unit Operation, School of Chemical Engineering, Taiyuan University of Technology
    2012.09—So far,  Deputy Director, Institute of Clean Chemical Engineering, School of Chemical Engineering, Taiyuan University of Technology;
    2014.09—present  Associate Professor, Master Supervisor
    2019.10—present  Chinese Director of the Confucius Institute at Kabul University, Afghanistan

    1.Course

    Unit Operation; Fundamentals of Chemical Engineering; Fundamentals of Chemical Experiment Technology


    2.Paper

    Wang Yunfang; Wei Guoqiang; Duan Donghong; Hao Xiaogang; Liu Shibin; Li Ruifeng. Construction of the Training Program for Excellent Chemical Engineers——Take Taiyuan University of Technology as an example. Technological Innovation and Productivity, 2014, 8:26-28


    3.Project

    Taiyuan University of Technology's Excellent Engineer Class Teaching Reform Project (2011-2013), project name: Teaching reform and practice for strengthening humanistic education of excellent engineers based on traditional Chinese culture, funding amount: 5,000 yuan, project leader.


    1.Research Interests

    Mainly engaged in the research of fuel cell and water electrolysis hydrogen production membrane, electrocatalyst and other key materials and membrane electrodes. In recent years, he has been engaged in research in the fields of coal chemical industry, environmental pollution control, solid waste treatment and comprehensive utilization of resources.


    2.Paper

    [1] Guoqiang Wei, Yuxin Wang, Chengde Huang, Qijun Gao, Zhitao Wang, LiXu. The Stability of MEA in SPE Water Electrolysis for Hydrogen Production. International Journal of Hydrogen Energy, 2010, 35(9):3951-3957.

    [2] Guoqiang Wei, Li Xu, Chengde Huang, Yuxin Wang. SPE Water Electrolysis with SPEEK/PES Blend Membrane, International Journal of Hydrogen Energy, 2010, 35(15):7778-7783.

    [3] Wei Guoqiang, He Kunlin, Zhang Zhonglin, et al. Analysis of the advantages of plant carbon sequestration over other methods of comprehensive utilization of CO2. Green Science and Technology, 2013, 2:187-189.

    [4] Wei Guoqiang, Zhang Zhongbing, Ding Guangyue, etc. Comparison of SPE water electrolysis cell and H2/O2 PEM fuel cell, Green Technology, 2013, 4:310-312.

    [5] Wei Guoqiang, Wang Yuxin, Zhao Xiaoyan, et al. Study on electrochemical impedance spectroscopy of solid polymer electrolyte water electrolyte membrane electrode. Renewable Energy, 2013, 31(5): 109-114.

    [6] Li Nannan, Zhang Zhongbing, Wei Guoqiang*, et al. Preparation method of solid polymer electrolyte water electrolysis membrane electrode. Green Technology, 2013, 5:282-284.

    [7] Wei Guoqiang, Yuan Qinbo, Duan Donghong, et al. Performance study of functionally regionalized BaO-CuO-V2O5 desulfurization and denitration catalyst. Journal of Taiyuan University of Technology, 2014, 45(4): 473-478.

    [8] Wei Guoqiang; Chen Jinnan. Numerical study on drag reduction of cyclone separator drag reduction rod. Computers and Applied Chemistry, 2004, 21(6): 881-886.

    [9] Wei Guoqiang; Fang Xin; Yang Zhi; Liu Shibin; Duan Donghong; Wei Huikai; Wang Yuxin. Scale-up experimental study of hydrogen production from solid polymer electrolyte water electrolysis. Renewable Energy, 2016, 34(1): 136-140 .

    [10] Wei Guoqiang; Fang Xin; Yang Zhi; Zhao Yu; Wang Yuxin. Preparation and electrochemical study of catalytic layer of water electrolysis membrane electrode. Journal of Taiyuan University of Technology, 2016 (Special Edition): 1-6.


    3.Patent

    1) Wei Guoqiang, Qiao Junpeng. A coal distribution and adhesion breaking device for crushed coal pressurized gasifier. ZL 201220145826.3

    2) Zhao Shixiong, Wei Guoqiang, Zhang Lijuan, Wang Yuxin. Two-solvent preparation method for ion-conducting polymer membranes, ZL 201110254270.1


    4. Projects

    1) Talent Introduction Fund of Taiyuan University of Technology (2011-2013), project name: Research on fuel cell non-precious metal cathode oxygen reduction catalyst, funding amount: 180,000 yuan, project leader.

    2) Taiyuan University of Technology Postdoctoral Fund (2012-2014), project name: Research on non-precious metal anode oxygen evolution catalysts for hydrogen production from solid polymer water, funding amount: 20,000 yuan, project leader.

    3) The basic research project of Shanxi Provincial Science and Technology Department (2013-2015), project name: Research on the mechanism and kinetics of hydrogen production from coal electrochemical gasification, funding amount: 30,000 yuan, project leader.


    5. Honors

    In September 2013, he served as the Chairman of Water Electrolysis Session of the 5th World Hydrogen Technology Conference (25-28 Sept. 2013, Shanghai, China) and chaired the report of the session.


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