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个人信息Personal Information
副教授
博士生导师
硕士生导师
性别:男
毕业院校:中国科学技术大学
学位:博士
所在单位:能源与动力学院
学科:热能工程
电子邮箱:
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- [1]穆林.尚妍,东明,浦航,王储,Wang, Liang.孙萌,吴迪.Adsorption and decomposition mechanism of formaldehyde on Mn-doped Fe3O4 catalysts in the presence of water: Density functional theory and microdynamic approach[J],CHEMICAL ENGINEERING SCIENCE,2025,306
- [2]王爽.穆林,王储,Li, Xue,Xie, Jun,尚妍,浦航,东明.Modeling and Simulation of Micron Particle Agglomeration in a Turbulent Flow: Impact of Cylindrical Disturbance and Particle Properties[J],ACS OMEGA,2025,9(50):49302-49315
- [3]Wu, Yuzhu.Zhang, Xudong,Liang, Fushun,Jiao, Dongcheng,Li, Dan,Han, Lishuo,Wang, Wenhu,Xie, Qin,Zhang, Ronghua,Cai, Ali,Xia, Yuqi,Sun, Zhifeng,Zhai, Haonan,Yu, Zhong-Zhen,Qi, Yue,王储,Gao, Peng,Sun, Xiucai,Cao, Bingyang,Song, Yuqing,Liu, Zhongfan,Liu, Ningning,Wang, Zhong,Hu, Yueming,Bai, Tianqi,Wang, Tao,Chen, Jingyang,Qiu, Xiaopan.Controlled Growth of Graphene-Skinned Al2O3 Powders by Fluidized Bed-Chemical Vapor Deposition for Heat Dissipation[J],ADVANCED SCIENCE,2025
- [4]Huang, Yitao.Zhu, Xifeng,王储,Wang, Liang.Optimizing the gasification characteristics of bio-oil distillation sludge by obtaining co-pyrolysis char with walnut shells[A],Energy Proceedings,2025,51
- [5]Li, Xiaoran.Cen, Kehui,Li, Jinjin,王储,Jia, Dongxia,Chen, Dengyu.Effects of co-pyrolysis interaction performance of cellulose and lignin on the gas products and hydrogen generation path[J],INDUSTRIAL CROPS AND PRODUCTS,2024,222
- [6]Li, Xiaoran.Cen, Kehui,Li, Jinjin,王储,Jia, Dongxia,Chen, Dengyu.Effects of co-pyrolysis interaction performance of cellulose and lignin on the gas products and hydrogen generation path[J],INDUSTRIAL CROPS AND PRODUCTS,2024,222
- [7]穆林.尚妍,Wang, Liang,东明,王储,Wang, Chu.王震,孙萌.Adsorption and Reaction Mechanism of Inert Carriers (Al2O3 and TiO2) Loaded with Fe2O3 in Chemical Looping Gasification Based on Density Functional Theory[J],ENERGY & FUELS,2024,38(21):20817-20830
- [8]王储.Mu, Lin,Chen, Dengyu,Dong, Ming,Wang, Liang.曲航辰,穆林,东明.Visual liquefaction process of biomass pyrolysis vapors during indirect heat exchange: Experimental description, prediction, and verification[J],RENEWABLE ENERGY,2024,237
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