Chem. Rev.10.6重磅综述:碱性电池、固体质子传导电池和固体氧化物电池的高温电解作用?High Temperature Electrolysis in Alkaline Cells, Solid Proton Conducting Cells, and Solid Oxide Cells Sune Dalgaard Ebbesen,* S?ren H?jgaard Jensen, Anne Hauch, and Mogens Bjerg Mogensen 38页,682篇参考文献!!! 20141007113708.png CONTENTS 1. Introduction A 1.1. CO2 Capture: Closing the Cycle B 2. Electrolysis Cells E 3. Electrolysis of H2O and CO2 E 3.1. Thermodynamics of Electrolysis F 3.2. Electrolysis Efficiency G 4. High Temperature Electrolysis in Solid Proton Conducting Electrolysis Cells G 5. High Temperature Electrolysis using Alkaline Cells I 5.1. Materials J 5.2. Performance J 6. High Temperature Electrolysis in Solid Oxide Cells K 6.1. Electrode Materials and Structures for Solid Oxide Electrolysis Cells L 6.1.1. Fuel Electrode (Cathode) L 6.1.2. Oxygen Electrode (Anode) M 6.1.3. Electrolyte N 6.2. Performance of H2O Electrolysis N 6.3. Performance of CO2 Electrolysis O 6.4. Performance for Coelectrolysis of H2O and CO2 O 6.5. Cell Degradation During H2O, CO2 and Coelectrolysis of H2O and CO2 at Mild Operating Conditions P 6.6. Cell Degradation During H2O, CO2 and Coelectrolysis at High Current Densities Q 6.7. High Temperature Electrolysis in Solid Oxide Cells at Increased Pressure S 6.8. High Temperature Electrolysis in Solid Oxide Cell Stacks S 7. Reversible Operation of High Temperature Electrochemical Cells T 8. Modeling the Performance of High Temperature Electrolysis Cells V 9. Estimates of Production Cost of Renewable Synthetic Fuels via Electrolysis X 10. Summary X Author Information Y Corresponding Author Y Notes Y Biographies Y Acknowledgments Z Nomenclature Z Materials Z References AA查看更多0个回答 . 5人已关注