成果/Result
- Reaction Kinetics of the Synthesis of Methyl Chloroacetate from Chloroacetic Acid and Methanol被引量:0收藏
- 作者:He, Muqian Xu, Zhengdong Wang, Xiaoping Liu, Dianhua
- 机构:East China Univ Sci & Technol
- 来源:INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH 2024
- 关键词:Activation energy - Catalysts - Corrosion - Esterification - Esters - Ion exchange resins - Kinetic parameters - Kinetic theory - Molar ratio - Positive ions - Reaction kinetics
- Syngas to Aromatics on Cu-Zn-Zr and HZSM-5: Modulating the Capability of Oxygenated Intermediate Formation to Improve Durene Selectivity被引量:0收藏
- 作者:Li, Shunshun Wang, Zihao He, Muqian Xu, Yuanxiang Wang, Xuguang Liu, Dianhua
- 机构:East China Univ Sci & Technol
- 来源:INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH 2025
- Enhanced CO2 Hydrogenation to Methanol over Cu-ZnO Catalyst Modified with Gallium被引量:0收藏
- 作者:Liu, Huiling Wang, Xuguang Liu, Yaxin Xiao, Shuang He, Muqian Liu, Dianhua
- 机构:East China Univ Sci & Technol
- 来源:INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH 2026
- 关键词:Carbon dioxide - Catalyst activity - Catalyst selectivity - Chemical activation - Copper - Copper compounds - Cost effectiveness - efficiency - Hydrogen - Hydrogenation - Methanol - Zinc oxide
- Na-Doped Cobalt-Based γ-Al2O3 Catalysts with Enhanced Electronic Modulation for High NO Selectivity in N2O Decomposition被引量:0收藏
- 作者:Han, Yujian He, Muqian Wang, Xuguang Chen, Qian Liu, Dianhua
- 机构:East China Univ Sci & Technol
- 来源:INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH 2025
- 关键词:Aluminum oxide - Catalyst activity - Catalyst selectivity - Cobalt - Cobalt compounds - Decomposition - Doping (additives) - Electron transitions - Electron transport properties - Greenhouse gases - Nitric acid - Nitric oxide - Nitrogen oxides - Sodium compounds - Surface reactions
- K-LoadedFeZn+HZSM-5 Composite Catalyst:Rational Design for Selective Hydrogenation of CO to Aromatics被引量:0收藏
- 作者:Xiao, Shuang He, Muqian Wang, Xuguang Liu, Huiling Liu, Yaxin Liu, Dianhua
- 机构:East China Univ Sci & Technol
- 来源:INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH 2026
