Last modified: 2023-12-10 19:09:26
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Hall I, Day 1 | |||||
ST-23 [Trans-Division Symposium] Contribution of Chemical Engineering to Innovative "Conversion, Storage and Utilization" Technology of Material and Energy | |||||
(9:00–9:20) | |||||
Opening remark and Introduction of symposium | |||||
(9:20–11:00) (Chair: | |||||
I102 | Performance and carbon deposition resistance of Ni-based anode-supported SOFC operating at mid-temperature | SOFC Carbon deposition resistance Anode | ST-23 | 433 | |
I103 | An electrode catalyst prepared by porous carbon nanofibers for methanol oxidation reaction with the excellent performance: characterization and application | Methanol Oxidation Reaction (MOR) Electrode Catalyst Porous Carbon Nanofibers | ST-23 | 538 | |
I104 | Effect of chemical doping on oxygen storage and release reactions of Ca2AlMnO5+δ | oxygen storage materials chemical doping | ST-23 | 652 | |
Break | |||||
I106 | Effect of Pd/Cu Membrane Thickness Condition on Biogas Dry Reforming with Ni/Cr Catalyst | Hydrogen production Biogas dry reforming Membrane reactor | ST-23 | 83 | |
(11:00–12:00) (Chair: | |||||
I107 | [Invited lecture] Sustainability Assessment of Innovative Technologies: ESG Management in Technology Development | ESG Supply Chain Management Sustainability Assessement | ST-23 | 496 | |
(13:00–14:20) (Chair: | |||||
I113 | Universal electro-thermal model of all-solid-state lithium ion battery with composite solid-state electrolyte | Electro-thermal model Safety Energy storage | ST-23 | 248 | |
I114 | Si Anode Expansion and its Performance Implications in All-Solid-State Batteries: A Modeling Approach | all-solid-state batteries anode expansion modeling | ST-23 | 879 | |
I115 | Li-ion Batteries simulation considering the influence of porosity and tortuosity of separator | Lithium ion battery Simulation Separator | ST-23 | 881 | |
I116 | Synthesis of advanced sulfur cathode with porous-graphitic C/Fe3C electrocatalyst and three-dimensional current collector for Li-S batteries | Li-S batteries iron carbide steam oxidation | ST-23 | 626 | |
(14:20–15:40) (Chair: | |||||
I117 | Stable, high-energy density SiO-NCM full cell realized by three-dimensional current collector of carbon nanotubes and partial prelithiation method | Lithium ion batteries Carbon nanotubes Prelithiation | ST-23 | 53 | |
Break | |||||
I119 | Improvement of lithium ion battery via specific modification of surface functional group on anodic graphite | surface functional group specific modification lithium ion battery | ST-23 | 639 | |
I120 | Synthesis of Lithium Cobalt Pyrophosphate/Carbon Composites and Their Lithium Battery Performance | Spray pyrolysis Li-batteries Cathode | ST-23 | 636 | |
(15:40–16:40) (Chair: | |||||
I121 | Evaluation of transport coefficients in electrolyte and cell characteristics for redox flow batteries | Redox flow battery Mass transport Pressure drop | ST-23 | 327 | |
I122 | Development of cathode material; Applicaiton of Pt-loading and plasma irradiation to carbon nantobue | Zn-air battery carbon nanotube plasma | ST-23 | 1041 | |
I123 | Improvement of activity on carbon nanotube surface by plasma irradiation: Application to Zn-air battery electrode | carbon nanotube Zn-air battery plasma | ST-23 | 1042 | |
(16:40–17:00) (Chair: | |||||
I124 | General discussion ~Issue of material and system in electlysis and material conversion~ | electrysis material conversion system | ST-23 | 706 | |
Hall I, Day 2 | |||||
(9:00–10:00) (Chair: | |||||
I201 | Fabrication of Ni/N/rGO for hydrogen evolution reaction | electrocatalyst HER reduced graphene oxide | ST-23 | 673 | |
I202 | Improvement of Oxygen Evolution Activity of Porous Nickel Catalysts by Surface Modification and Application to Anion-Exchange Membrane Water Electrolysis Cells | Self-Supported Metal Phosphide Anode Catalyst Ether-Free Aromatic Polyelectrolyte Hydrogen Production | ST-23 | 994 | |
I203 | Data Science-assisted Unveiling Comprehensive Descriptors for Electrocatalytic Anodic Reaction in Water Electrolysis on Multimetal Oxides | alkaline water electrolysis electrocatalyst machine learning | ST-23 | 565 | |
(10:00–11:00) (Chair: | |||||
I204 | In-situ analysis of nitrogen reduction using diffuse reflectance infrared Fourier transform spectroscopy for ammonia electrosynthesis | Ammonia electrosynthesis Infrared spectroscopy In-situ analysis | ST-23 | 436 | |
Break | |||||
I206 | Ammonia synthesis from water and nitrogen using Ru catalysts and hydrogen-permeable membrane electrochemical cells | Ammonia synthesis Ru catalysts Electrochemical synthesis | ST-23 | 551 | |
(11:00–12:00) (Chair: | |||||
I207 | [Invited lecture] Development of next-generation highly efficient fuel cells and application to electrosynthesis | fuel cell proton conductor cell design | ST-23 | 269 | |
Hall I, Day 3 | |||||
(9:00–10:00) (Chair: | |||||
I301 | Operando analysis of water transport in polymer electrolyte fuel cells(2) Simultaneous quantification of cross-flow rate and the amount of liquid water in a gas diffusion layer | polymer electrolyte fuel cell operando radiography synchrotron X-ray | ST-23 | 31 | |
I302 | Operando Analysis of Liquid Water of Polymer Electrolyte Fuel Cell (3) Visualization of freezing behavior in automotive fuel cell by using neutron | Neutron Polymer Electrolyte Fuel Cell | ST-23 | 486 | |
I303 | Operando analysis of water transport in polymer electrolyte fuel cells(4) Water visualization using neutron and synchrotron sources | Polymer electrolyte fuel cells synchrotron X-ray Neutron | ST-23 | 1 | |
(10:00–11:00) (Chair: | |||||
I304 | Dynamic Analysis of Fuel Cell Material Degradation by Integrated Fuel Cell System Simulator | fuel cell system simulation | ST-23 | 831 | |
I305 | (withdrawn) | 100 | 857 | ||
I306 | Numerical Analysis on Effects of Operating Temperature and Separator Thickness on Power Generation Characteristics and Heat and Mass Transfer Phenomena in a Single PEFC Cell Operating at High Temperature | PEFC Separator High Temperature | ST-23 | 152 | |
(11:00–12:00) (Chair: | |||||
I307 | [Invited lecture] Development of electrocatalysts toward the wide-spread application of polymer electrolyte fuel cells | Polymer electrolyte fuel cells Electrocatalysts Heavy-duty vehicles | ST-23 | 1030 | |
(13:00–14:00) (Chair: | |||||
I313 | Different functional groups cross-linked graphene oxide membranes for proton exchange membrane fuel cell | graphene oxide crosslink conductivity | ST-23 | 675 | |
I314 | Enhancing the catalytic performance of Fe-N-C oxygen reduction electrocatalysts through selective and rapid heating | Fuel cell Platinum group metal-free catalyst ZIF-8 | ST-23 | 342 | |
I315 | The catalytic activity for the oxygen reduction reaction of the metal-free carbon-based catalyst doped with Nitrogen and Phosphorus | metal-free ORR N, P co-doped carbon | ST-23 | 137 | |
(14:00–15:00) (Chair: | |||||
I316 | [Invited lecture] Systematic device design for highly selective ethylene production by CO2 electrolysis | CO2 electrolysis electrochemical CO2 reduction ethylene | ST-23 | 3 | |
Break | |||||
(15:20–16:40) (Chair: | |||||
I320 | Observation of water transport in zero-gap CO2 electrolysis cells by operando X-ray imaging | CO2 electrolysis X-ray imaging operando radiography | ST-23 | 465 | |
I321 | Low temperature synthesis of CuS thin films using copper-formate complex for electrochemical reduction of CO2 | copper sulfide CO2 electochemical reduction | ST-23 | 511 | |
I322 | SOEC performance at co-electrolysis for synthetic liquid fuel production | Synthetic Liquid Fuel Production Solid oxide electrolysis cell SOEC | ST-23 | 198 | |
I323 | Carbon deposition mechanisms in the cathode during CO2 electrolysis in SOEC with DFT calculation | First-principles calculation CO2 electrolysis carbon deposition | ST-23 | 684 |
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SCEJ 54th Autumn Meeting (Fukuoka, 2023)