成果/Result
- In Situ-DRIFTS Study of Rh Promoted CuCo/Al2O3 for Ethanol Synthesis via CO Hydrogenation被引量:9收藏
- 作者:Li, Fang Ma, Hongfang Zhang, Haitao Ying, Weiyong Fang, Dingye
- 机构:E China Univ Sci & Technol;Anhui Polytech Univ
- 来源:BULLETIN OF THE KOREAN CHEMICAL SOCIETY 2014
- 关键词:Copper-cobalt Rhodium DRIFTS CO hydrogenation Ethanol
- Application of Response Surface Methodology and Central Composite Rotatable Design for Modeling and Optimization of Catalyst Compositions in Ethanol Synthesis via CO Hydrogenation被引量:2收藏
- 作者:Li, Fang Ma, Hongfang Ying, Weiyong
- 机构:E China Univ Sci & Technol
- 来源:INTERNATIONAL JOURNAL OF CHEMICAL REACTOR ENGINEERING 2014
- 关键词:central composite rotatable design response surface methodology CO hydrogenation ethanol
- Effect of Treatment with Tartaric Acid on Carbon as a Catalyst in the Absorption of NO into the Hexamminecobalt(II) Solution被引量:2收藏
- 作者:Long, Xiang-li Li, Fang Jia, Ming-lei Huang, Jin-feng
- 机构:East China Univ Sci & Technol
- 来源:ENVIRONMENTAL PROGRESS & SUSTAINABLE ENERGY 2018
- 关键词:activated carbon catalysis hexamminecobalt nitric oxide tartaric acid
- Charge-enhanced porous graphene oxide nanosheets-embedded membrane with improved ion conduction and capacity retention for aqueous organic flow battery被引量:0收藏
- 作者:Xu, Kenan Lin, Shuhao Liu, Xin Zhang, Dezhu Yu, Ying Wei, Jie Li, Feng Wang, Yixing Huang, Kang Xu, Zhi
- 机构:Nanjing Tech Univ;East China Univ Sci & Technol;Suzhou Lab
- 来源:ADVANCED MEMBRANES 2026
- 关键词:Charge-enhanced porous graphene oxide Fast ion-selective transport Ion conductive membrane Aqueous organic flow battery Enhanced capacity retention
- Computation-guided surface functionalization of carbonaceous membranes for enhanced alcohol dehydration被引量:0收藏
- 作者:Li, Feng Zhou, Yueqian Lian, Cheng Guo, Yaohao Lei, Linfeng Xu, Zhi
- 机构:East China Univ Sci & Technol;Suzhou Lab
- 来源:JOURNAL OF MEMBRANE SCIENCE 2026
- 关键词:Carbon molecular sieve membranes Alcohol dehydration Surface functionalization Density functional theory Pervaporation
- Preoxidation Enables Enhanced Separation Performance in Cellulose-Derived Carbon Molecular Sieve Membranes for CO2 Removal from Natural Gas被引量:0收藏
- 作者:Meng, Xinru Zhu, Xiaoxiao Li, Kun Guo, Yaohao Li, Feng Lei, Linfeng Xu, Zhi
- 机构:East China Univ Sci & Technol;Suzhou Lab
- 来源:INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH 2026
- 关键词:Carbon - Carbon dioxide - Carbonization - Cellulose - Gas permeable membranes - Hydrogen bonds - Nafion membranes - Natural gas - Structural design
