期刊论文 1. Ranlei Shao, Lu Zhang, Luyuan Wang*,et al. Construction of Ce-Al Composite Support for Ruthenium Catalysts for Ammonia Decomposition to Hydrogen: A Mechanistic Study Using DFT. Fuel.2025,384,134043 (通讯) 2. Ranlei Shao, Lu Zhang, Luyuan Wang*,et al. Cerium oxide-based catalyst for low-temperature and efficient ammonia decomposition for hydrogen production research. International Journal of Hydrogen Energy. 2024,68,311-320(通讯) 3. ChengBo Xuan, ShiWang Han,Luyuan Wang*,et al. Mechanism of NO reduction by NH3 over CuMnOx catalysts and the influence mechanism of CO. Catal. Sci. Technol. 2023, 13,3106–3124. (通讯) 4. ChengBo Xuan, ShiWang Han,Luyuan Wang*,et al. Ce-Doped Mn/Co Catalyst: Analysis of Performance and Mechanism underlying NH3+NO+CO Model Reaction,Journal of the Energy Institute,2023.(通讯) 5. ShiWang Han,Ranlei Shao,Luyuan Wang*, et al. Surface Effects of Trace CuMnCe Loading on Coal-Based Carbon Materials and Mechanisms of NOx Adsorption and Removal[J]. Energy Fuels,2023,37,14103?14115.(通讯) 6. ShiWang Han,Luyuan Wang*, et al. Synergistic Reduction Mechanism of NOx by NH3 and CO Catalyzed by Mn?Co Oxides and the Oxidation Process of CO: In Situ DRIFTS and DFT Study. Energy Fuels,2023.(通讯) 7. Jin Chun jiang, Luyuan Wang*,et al. Adsorption and Regeneration of Volatile Organic Compounds (VOCs) on Coal-Based Activated Carbon by Ferric Nitrate Modification.ChinaPetroleumProcessing&PetrochemicalTechnology,2021,23(03):137-150.(通讯) 8. Luyuan Wang, et al. Reaction of NO + CO over Ce-Modified Cu?FeOx Catalysts at Low Temperature.Energy Fuels 2019, 33, 11688?11704. 9. Jin Chun jiang,Luyuan Wang*,et al. Study of the Porous Structure and High Adsorption Capacity of Biomass-Based Activated Carbon Prepared from Aspen Wood by Ferric Nitrate III Activation(通讯) 10. Luyuan Wang; Xingxing Cheng; Zhiqiang Wang; Chunyuan Ma; Yukun Qin, Investigation on Fe-Co binary metal oxides supported on activated semi-coke for NO reduction by CO, Applied Catalysis B-Environmental, 2017, 201: 636-651. 11. Luyuan Wang; Xingxing Cheng; Zhiqiang Wang; Hao Huang; Chunyuan Ma; Yukun Qin, Effect of the NO?+?CO reaction on the consumption of carbon supports: An in situ TG-FTIR analysis, Chemical Engineering Journal, 2018, 352: 90-102. 12. Wang, Luyuan; Cheng, Xingxing; Wang, Zhiqiang; Ma, Chunyuan; Qin, Yukun, Improvement in the Water Tolerance of SiO2-Modified Semicoke Catalysts for the Low-Temperature NO plus CO Reaction, Energy & Fuels, 2017, 31(7): 7413-7425. 13. Wang, Luyuan; Wang, Zhiqiang; Cheng, Xingxing; Zhang, Mengze; Qin, Yukun; Ma, Chunyuan, In situ DRIFTS study of the NO plus CO reaction on Fe-Co binary metal oxides over activated semi-coke supports, Rsc Advances, 2017, 7(13): 7695-7710. 14. Wang, Luyuan; Cheng, Xingxing; Wang, Zhiqiang; Zhang, Xingyu; Ma, Chunyuan, No reduction by co over iron-based catalysts supported by activated semi-coke, Canadian Journal of Chemical Engineering, 2017, 95(3): 449-458. |