Last modified: 2020-03-02 11:00:00
Authors field exact matches “Otomo Junichiro”; 10 programs are found.
The search results are sorted by the start time.
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Day 1 | PA142 | Hydrogen production by methane cracking in chemical looping with iron-doped barium zirconate | Methane decomposition CO2 activation Chemical looping | 9-c | 605 |
Day 1 | PA149 | Evaluation of electrochemical properties of hetero interface between mixed oxide ionic - electronic conductors | Hetero interface Scanning probe microscopy Solid Oxide Fuel Cell | 9-e | 488 |
Day 1 | PA155 | Design and evaluation of hydrogen energy storage system using metal oxides | Hydrogen storage Metal oxides Steam electrolysis | 9-e | 692 |
Day 1 | PA159 | Investigation of electrode materials in ammonia electrosynthesis with electrochemical promotion of catalysis effect | Ammonia electrosynthesis catalyst proton conductor | 9-e | 724 |
Day 1 | PA162 | Development of K based carrier particles for Carbon dioxide utilization in Carbonate looping | Methanation CCU Carbonate looping | 13-g | 681 |
Day 2 | R219 | [Invited lecture] Progress and outlook of proton-conducting ceramic fuel cells for highly efficient energy conversion, electrolysis, and energy carrier | Proton conductor Mixed ionic electronic conductor Electrode reaction | K-3 | 773 |
Day 2 | D224 | Carbon dioxide methanation in calcium looping process using proton conducting oxides | CCU Ca looping Methanation | 13-g | 675 |
Day 3 | PD332 | Theoretical analysis of ammonia electrosynthesis on barium cerate supported ruthenium catalysts | Ammonia synthesis Electrochemical promotion of catalysis First principle calculation | 5-a | 725 |
Day 3 | PD347 | Observation of N2 adsorption in ammonia electrosynthesis using in situ FTIR spectroscopy | Ammonia electrolysis Protonic ceramic fuel cell Adsorbed N2 | 5-a | 696 |
Day 3 | L313 | Investigation of high-efficiency solid oxide fuel cells with bilayer electrolyte | Solid oxide fuel cell Bilayer electrolyte Transport property | 9-e | 659 |
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SCEJ 85th Annual Meeting (2020)