Ph.D. candidate at Southeast University, China
Wang Fangjun is a dedicated researcher currently pursuing a PhD in Power Engineering and Engineering Thermophysics at Southeast University. His academic journey includes a Master’s in Thermal Engineering from Shanghai University of Electric Power and a Bachelor’s in Automation from Southeast University Cheng Xian College. His professional experience focuses on advanced research in hydrogen-rich fuel gas production, CO2 capture, and chemical looping processes. Wang has been involved in designing modified calcium carriers for H2 production, constructing compact-fast dual fluidized bed units, and developing CO2 utilization technologies.
Education📚
Wang Fangjun is currently pursuing a PhD in Power Engineering and Engineering Thermophysics at Southeast University (2022–present). He holds a Master’s degree in Thermal Engineering from Shanghai University of Electric Power (2019–2022) and a Bachelor’s degree in Automation from Southeast University Cheng Xian College (2015–2019). His educational background provides a solid foundation in energy and engineering sciences.
Professional Experience🏛️
Wang Fangjun is a researcher in the field of energy and environmental technologies. His current research involves designing modified calcium carriers for hydrogen production and CO2 capture and constructing compact-fast dual fluidized bed units for effective CO2 capture. Previously, he focused on CO2 utilization and environmental protection technologies, including the development of active sulfur-modified carbon nitride and magnetic recovery systems for discarded catalysts.
Research Interest🏆
His research interests include hydrogen-rich fuel gas production, CO2 capture, chemical looping processes, and photocatalysis. Wang is particularly interested in developing innovative materials and processes for improving environmental sustainability and energy efficiency.
Award and Honor
- National Scholarship of the People’s Republic of China (Top 0.2%) 🎓
- Outstanding Graduate Students in Shanghai (Top 5%) 🏆
- Southeast University Doctoral Freshman Scholarship (Top 0.3%) 🎓
- Excellent Paper Award at the 2nd China Chemical Looping Conference (Top 3%) 📜
Technical Skills 🛠️
Wang is proficient in SEM-EDS, TEM, Raman, UV-Vis spectroscopy, and BET analysis. He is also experienced with software such as Microsoft Office, Origin, Photoshop, and Aspen Plus, demonstrating his technical versatility.
Publications top noted📜
- “CO2 capture and H2 production performance of calcium-based sorbent doped with iron and cerium during calcium looping cycle”
Wang, F., Chen, S., Chen, S., … Duan, L., Xiang, W.
Process Safety and Environmental Protection, 2024, 188, pp. 1175–1190
📄 0 citations
- “Experimental investigation of operation characteristics of a lab-scale dual fluidized bed by calcium looping process”
Liu, Y., Wang, F., Chen, S., Xiang, W.
Chemical Engineering Science, 2024, 287, 119771
📄 0 citations
- “Carbon Dioxide Capture and Hydrogen Production with a Chemical Looping Concept: A Review on Oxygen Carrier and Reactor”
Wang, F., Chen, S., Duan, L., Xiang, W.
Energy and Fuels, 2023, 37(21), pp. 16245–16266
📄 9 citations
- “Construction of 2D/3D g-C3N4/ZnIn2S4 Heterojunction for Efficient Photocatalytic Reduction of CO2 under Visible Light”
Wang, F., Chen, S., Wu, J., Xiang, W., Duan, L.
Industrial and Engineering Chemistry Research, 2023, 62(39), pp. 15907–15918
📄 7 citations
- “Investigations on biomass gasification of compact-fast dual fluidized bed calcium looping”
Wang, F., Zhou, W., Chen, S., Duan, L., Xiang, W.
Journal of Cleaner Production, 2023, 405, 137065
📄 8 citations
- “Double adjustment of Ni and Co in CeO2/La2Ni2-xCoxO6 double perovskite type oxygen carriers for chemical looping steam methane reforming”
Wang, F., Chen, S., Chen, S., … Duan, L., Xiang, W.
Chemical Engineering Journal, 2023, 465, 143041
📄 15 citations
- “Ball-flower like CoS/g-C3N4 heterojunction photocatalyst for efficient and selective reduction of CO2 to CH4”
Wang, F., Wu, J., Chen, S., Duan, L.
Journal of CO2 Utilization, 2023, 69, 102402
📄 6 citations
- “Magnetically recyclable CoS-modified graphitic carbon nitride-based materials for efficient immobilization of gaseous elemental mercury”
Wang, F., Tang, T., Zhang, R., … Chen, S., Li, W.
Fuel, 2022, 326, 125117
📄 47 citations
- “Cu2+-doped BiOIO3 prepared by hydrothermal fabrication nanosheets for photocatalytic oxidation of gaseous mercury under visible light”
Tang, T., Zou, J., Luo, F., … Li, J., Tian, F.
Fuel, 2022, 311, 122513
📄 17 citations
- “LaFeO3 perovskite nanoparticles for efficient capture of elemental mercury from coal-fired flue gas”
Pei, H., Li, X., Song, Y., … Zhao, X., Jia, T.
Fuel, 2022, 309, 122134
📄 19 citations