Last modified: 2023-05-16 19:47:30
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Hall L, Day 1 | |||||
ST-23 [Trans-Division Symposium] Cell, Energy Conversion and Storage Technology Supporting Next Generation Society (Oral Presentation Category) | |||||
(9:20–10:20) (Chair: | |||||
L102 | Energy Assessment on Supply Chain of Renewable Hydrogen | FIT Graduation Photovoltaic Water Electrolysis Hydrogen | ST-23 | 192 | |
L103 | Technology assessment for renewable energy sources considering environmental and technoeconomic aspects: A case study of battery-assisted hydrogen production | Electrolysis System design LCA(Life cycle assessment) | ST-23 | 536 | |
L104 | Providing dispatchable power using variable renewable energy with thermal energy storage: Life cycle assessment of wind powered thermal energy system in paper mills all over Japan | Greenhouse gas emission Dispatchable power source Paper production | ST-23 | 622 | |
Break | |||||
(10:40–12:00) (Chair: | |||||
L106 | Design of a distributed hydrogen energy storage system with solar cells considering waste heat utilization of fuel cells | energy system fuel cell hydrogen | ST-23 | 818 | |
L107 | [Invited lecture] Utilization of Residential Photovoltaic and Battery | Residential photovoltaic After FIT Battery for VPP | ST-23 | 114 | |
(13:00–14:20) (Chair: | |||||
L113 | [Invited lecture] Development of PEM Water Electrolysis | Water Electrolysis Hydrogen Renewable Energy | ST-23 | 115 | |
L116 | A Study on Potential of Home energy systems for accelerating renewable energy deployment | Home Energy Simulation Energy Conservation | ST-23 | 70 | |
Hall L, Day 2 | |||||
(9:00–10:40) (Chair: | |||||
L201 | Enhanced Electrocatalytic Activity of an Iron-based Electrocatalyst for Oxygen Evolution in Alkaline Water Splitting | oxygen evolution reaction density functional theory alkaline water splitting | ST-23 | 203 | |
L202 | Reaction controle on the counter electrode in the seawater electrolysis for hydrogen generation. | Seawater electrolysis Hydorogen generation Chlorine | ST-23 | 286 | |
L203 | Structure control of connected Ir-Ru nanoparticle catalysts for polymer electrolyte water electrolysis | Polymer electrolyte water electrolysis Connected nanoparticle catalysts Carbon free catalysts | ST-23 | 398 | |
L204 | Multi-scale pore morphologies of a compressed gas diffusion layer for polymer electrolyte fuel cells | Polymer Electrolyte Fuel Cells Gas Diffusion Layer Compression | ST-23 | 33 | |
L205 | Visualization of liquid water in hydrophobic materials by synchrotron X-ray nano CT | Polymer Electrolyte Fuel Cells Gas Diffusion Layer Microporous layer | ST-23 | 65 | |
(10:40–12:00) (Chair: | |||||
L206 | Connected Platinum-Iron Catalysts with Superlattice Structures as Durable Oxygen Reduction Electrocatalysts for PEFCs | Polymer Electrolyte Fuel Cell Chemically Ordered Structure Load Cycle Durability | ST-23 | 872 | |
L207 | The Effect of One-pass Conversion and Flow Pattern on Polymer Electrolyte Fuel Cell System with Hydrogen Circulation | polymer electrolyte fuel cell flow pattern one-pass conversion | ST-23 | 383 | |
L208 | Determination method of dimensionless moduli of PEFC from dependency of cathode catalyst layer thickness | polymer electrolyte fuel cell analysis method dimensionless moduli | ST-23 | 387 | |
L209 | Temperature and relative humidity dependencies of oxygen reduction reaction rate in PEFC measured by using ionomer-free thin layer electrode | polymer electrolyte fuel cell oxygen reduction reaction platinum-sputtered electrode | ST-23 | 411 | |
(13:00–15:20) (Chair: | |||||
L213 | Effects of temperature and pressure on relative humidity distribution in PEFC | polymer electrolyte fuel cell high temperature and pressure water permeation | ST-23 | 840 | |
L214 | Research and Development of Scalable Isolated Fuel Cells | polymer electrolyte fuel cell Electrolysis | ST-23 | 794 | |
L215 | [Invited lecture] Challenges to Governmental Support for R&D on FCV beyond 2030 | Polymer electrolyte fuel cell Fuel cell vehicle | ST-23 | 396 | |
L216 | [Invited lecture] Toward the Future Fuel Cell - Challenge for 2030/2040 - | Polymer electrolyte fuel cell Fuel cell vehicle | ST-23 | 406 | |
L217 | [Invited lecture] FCV R&D Strategy for 2030 /2040 Target | Polymer electrolyte fuel cell Fuel cell vehicle | ST-23 | 408 | |
L219 | [Invited lecture] Questions to Answers | Polymer electrolyte fuel cell Fuel cell vehicle | ST-23 | 410 | |
Hall L, Day 3 | |||||
(9:00–10:20) (Chair: | |||||
L301 | Effect of bilayer electrolyte on performance of protonic ceramic fuel cells with BaZr0.8Y0.2O3-δ and BaZr0.1Ce0.7Y0.1Yb0.1O3-δ electrolytes | Solid oxide fuel cell Bilayer electrolyte Proton conduction | ST-23 | 450 | |
L302 | Direct carbon dioxide methanation in a calcium looping process using Ni-CaO-Y doped BaZrO3 | CCU Ca looping Methanation | ST-23 | 756 | |
L303 | Proposal of the model of comprehensive anode reaction in solid oxide fuel cell / electrolysis cell and constructing the method of multivariable fitting | Solid Oxide Fuel Cell Kinetics modeling Langmuir-Hinshelwood | ST-23 | 103 | |
L304 | Effect of Ion Conductive Oxide for Direct Carbon Nanotube Growth in the Solid Oxide Fuel Cell | Solid oxide fuel cell Carbon nanotube oxide ion conductor | ST-23 | 573 | |
Break | |||||
(10:40–12:00) (Chair: | |||||
L306 | Potential behavior just after fuel supply of liquid fuel direct supply solid oxide fuel cell and evaluation of its electrode activity with modeling | SOFC solid oxide fuel cell | ST-23 | 757 | |
L307 | Effect of the properties of the diffusion layer on the power generation characteristics of the direct formic acid fuel cell | DFAFC Mass transport Porous Electrode | ST-23 | 683 | |
L308 | Synthesis of C/Fe3O4 composite microspheres prepared by spray pyrolysis and their application to energy storage devices | C/Fe3O4 composite microspheres Spray pyrolysis Energy storage devices | ST-23 | 423 | |
L309 | Synthesis of bio-based latent heat storage material with melting temperature suitable for environmental temperature | fatty acid ester latent heat storage bio-based | ST-23 | 766 | |
(13:00–15:00) (Chair: | |||||
L313 | Microwave synthesis of NMC811 cathode materials for Li-ion batteries | Microwave cathode material Lithium-ion battery | ST-23 | 68 | |
L314 | Analysis of Formation Behavior of NMC Cathode Material for Li-ion Batteries under Different Oxygen Cocentrations | Formation Behavior NMC Cathode Material Oxygen Concentrations | ST-23 | 188 | |
L315 | Electrochemical performance of sulfur-based lithium batteries with free-standing SiO2/C composite nanofiber mat as interlayer | Multi-functional interlayer Sulfur-based cathode lithium batteries | ST-23 | 407 | |
L316 | Charge-discharge characteristics of carbon-air secondary battery system using Ni/GDC and Ni/YSZ fuel electrode | Solid oxide fuel cell Secondary battery Electrolysis | ST-23 | 60 | |
L317 | Carbon electrode with a uniform diameter of consecutive macropores for redox flow batteries | Redox flow battery Carbon porous electrode Macropore | ST-23 | 118 | |
L318 | Effect of Particle Dispersion Condition in Electrode Layer on Cell Performance of All-Solid-State Batteries | All-solid state battery Numerical simulation particle dispersion | ST-23 | 890 |
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SCEJ 51st Autumn Meeting (2020)