Last modified: 2023-12-10 19:09:26
Award Ceremony: Day 3, 16:40-17:00 Hall I
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
SY-75 [Symposium of Division of Energy Engineering] "Conversion, Storage and Utilization" of Material and Energy with Electrochemical Technology (Poster) | |||||
(13:00–16:00) | |||||
PB201 | Electrochemical and flow dynamics evaluation in slurry flow capacitors with different the particle shape | flow capacitor carbon slurry electrodes electrochemical and rheological evaluation | SY-75 | 199 | |
PB202 | Mass Transport Analysis of Seamless Carbon Electrodes for Redox Flow Battery | Redox flow battery Limiting current Transport of active materials | SY-75 | 145 | |
PB203 | Mass transport analysis of organic active materials and vanadium active materials for redox flow batteries | Organic active material Mass transport analysis Redox flow battery | SY-75 | 616 | |
PB204 | Fibrillation of PTFE and agglomeration of cathode composite particles for solvent-free solid-state battery | All solid-state batteries Dry granulation Powder technology | SY-75 | 554 | |
PB205 | Internal crack formation mechanism and its effect on all solid-state batteries considering expansion and contraction | all-solid-state battery DEM crack formation | SY-75 | 463 | |
PB206 | Optimization for Cathode Structure of Lithium-Sulfur Batteries | Lithium-sulfur batteries Numerical simulation Carbon black | SY-75 | 454 | |
PB207 | System Design and Techno-Economical Analysis for Highly Efficient Protonic Ceramic Fuel Cells | Protonic ceramic fuel cells Cost engineering System design | SY-75 | 629 | |
PB208 | Microstructural control of anode functional layers in protonic ceramic fuel cells | Protonic Ceramic Fuel Cell anode functional layer Triple phase boudary | SY-75 | 358 | |
PB209 | Improving the Performance of Protonic CeramImproving the Performance of Protonic Ceramic Fuel Cells by Controlling Leakage Current Using Bilayer Electrolytesic Fuel Cells by Controlling Leakage Current Using Bilayer Electrolytes | Protonic ceramic fuel cells Bilayer electrolytes Leakage current | SY-75 | 619 | |
PB210 | Structural control and performance analysis of carbon-free catalyst layers using connected Pt-Co nanoparticle catalysts for PEFCs | Polymer electrolyte fuel cell Carbon free catalyst layers Structural control | SY-75 | 821 | |
PB211 | Effect of Pore-Forming Agents on Concentration Overpotential of Carbon-free Pt Electrodes for PEFC | Ionomer-free Fuel cell nano-sheet | SY-75 | 883 | |
PB212 | The effect of ionomer on the humidity dependence of overvoltage characteristics of Pt black electrodes for PEFC | fuel cell proton conductivity carbon free | SY-75 | 959 | |
PB213 | Consideration of degradation mechanisms of polymer electrolyte fuel cell using DEM simulation | degradation fuel cell catalyst layer | SY-75 | 466 | |
PB214 | Investigation of reactin and mass transport performance of fuel cell catalyst layers using machine learning | Fuel cell Catalyst layer Machine learning | SY-75 | 469 | |
PB215 | Simulation of PEFC output characteristics considering the effect of carbon carrier structure | Polymer electrolyte fuel cell modeling carbon support | SY-75 | 462 | |
PB216 | Analysis of Agglomeration Phenomena in Polymer Electrolyte Fuel Cell Slurry by Simulation | fuel cell simulation agglomeration | SY-75 | 453 | |
PB217 | Effect of the Ink preparation process on the pore properties of electrode and power generation characteristics of direct formic acid fuel cell | Catalyst Layer Formic Acid Fuel Cell | SY-75 | 822 | |
PB218 | Power generation and mass transport characteristics of direct formic acid fuel cells using pore-designed diffusion layer | DFAFC Pore characteristics Mass transport, porous electrode | SY-75 | 612 | |
PB219 | Fundamental study on the cell producing the formic acid by electrochemical reduction of CO2 using gas CO2 | CO2 reduction formic acid fuel cell | SY-75 | 617 | |
PB220 | Electrochemical ammonia synthesis at intermediate temperatures using solid-state phosphate-based electrolyte | Ammonia Electrolysis Cell Intermediate Temperature | SY-75 | 487 | |
PB221 | Phosphate-based thin film electrolyte for steam electrolysis at intermediate temperature | Steam electrolysis Thin film Phosphate | SY-75 | 488 | |
PB222 | Effect of Electrolyte Flow on Resistance Components Constituting Cell Voltage in Alkaline Water Electrolysis | alkaline water electrolysis cell overvoltage impedance measurement | SY-75 | 283 | |
PB223 | Development of high-performance anion exchange membrane water electrolysis cells with porous non-precious metal anode catalysts | Hydrogen production Anion exchange membrane water electrolysis Porous non-precious metal | SY-75 | 825 | |
PB224 | Design and development of non-precious metal sulfide catalysts for alkaline water electrolysis | alkaline water electrolysis non-precious metal oxygen evolution reaction | SY-75 | 1001 | |
PB225 | Development of LiOH・H2O manufacturing process from Li2CO3 by Dissolving CH3COOH (1) | LiOH process separation | SY-75 | 786 | |
PB226 | The effect of SOFC flow rate conditions on the composition of lean oxygen gas used in tri-generation | fuel cell oxygen utilization simulation | SY-75 | 892 | |
PB227 | Electrode deterioration mechanism and Faraday efficiency during H2O/CO2 co-electrolysis in SOEC | electrode deterioration SOEC Faraday efficiency | SY-75 | 896 | |
PB228 | The effect of solvent addition containing OH groups on the dimeric ion liquid with DEME cations | Ionic liquid DEME Electrolytes | SY-75 | 947 | |
PB229 | Application of AC Voltage for High-Efficiency Ignition in Energetic Ionic Liquids | Energetic Ionic Liquid Electrolysis AC Voltage | SY-75 | 987 | |
PB230 | Case study of environmental education using fuel cell | Fuel cell Environmental education Case study | SY-75 | 1033 |
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SCEJ 54th Autumn Meeting (Fukuoka, 2023)