Last modified: 2016-09-07 09:49:00
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Hall D, Day 1 | |||||
ST-12 Batteries, Fuel Cells, Solar Cells and Energy Conversion and that Future -How Can Chemical Engineering Contribute for Them by Material, Processing and System?- (Oral Presentation Category) | |||||
(9:20–9:40) (Chair: | |||||
Introduction of the Symposium | |||||
(9:40–11:00) (Chair: | |||||
D103 | Development of the hydrogen production system by electrolysis of water using a hydrogen permeable palladium membrane electrode | elecrtolysis of water hydrogen permeable membrane hydrogen production | ST-12 | 435 | |
D104 | Hydrogen Production Using Multi Solid Oxide Elctrolysis Cell stacks | hydrogen production SOEC | ST-12 | 571 | |
D105 | Effect of the catalyst support on the formic acid production by the CO2 electrochemical reduction and the formic acid electrochemical oxidation reaction activity | Formic acid Electrochemical reduction of CO2 Direct formic acid fuel cell | ST-12 | 673 | |
D106 | Investigation of the reaction mechanism in the selective oxidation using a PAFC-type reactor | selective oxidation fuel cell type reactor | ST-12 | 746 | |
(11:00–12:00) (Chair: | |||||
D107 | [Invited lecture] Ammonia as a Hydrogen Energy Carrier | Ammonia Hydrogen Energy Carrier Hydrogen | ST-12 | 75 | |
(13:00–14:00) (Chair: | |||||
D113 | Novel electrolytic synthesis of organic hydrides by using microemulsion reaction field | hydrogenation organic hydride microemulsion | ST-12 | 40 | |
D114 | Electrochemical synthesis of ammonia using mixed protonic-electronic and mixed oxide ionic-electronic conducting cathode | ammonia proton conductor electrolysis | ST-12 | 95 | |
D115 | Highly selective methylcyclohexane production by photoelectrochemical hydrogenation of toluene using SrTiO3 photoanode | organic hydrides methylcyclohexane photoelectrochemistry | ST-12 | 130 | |
(14:00–14:20) (Chair: | |||||
General Discussion (Electrochemical Energy Conversion) | |||||
Hall D, Day 2 | |||||
(9:00–10:00) (Chair: | |||||
D201 | Characteristic analysis of redox flow battery by using electrodes with carbon nanofiber | Vanadium redox flow battery Carbon nanofiber Electrode materials | ST-12 | 224 | |
D202 | Smoothing the nano surface of porous Si for epitaxial growth to fabricate monocrystalline thin film Si solar cell | Solar cell Porous Si Zone Scan Annealing | ST-12 | 850 | |
D203 | Efficient Preparation of TiO2/C Nanocomposite Electrode Materials Using the Liquid Pulse Injection Technique | Lithium-ion Battery Production Process Nano Material | ST-12 | 380 | |
(10:00–11:00) (Chair: | |||||
D204 | Membrane Structure Evaluation and Lithium-ion Storage of SiOC Anode by A Sol-Gel Method | Lithium-ion Battery Silicon oxycarbide Sol-Gel | ST-12 | 792 | |
D205 | Electrochemical deposition of iron sulfide | iron sulfide elecrochemical deposition photovoltaic | ST-12 | 535 | |
D206 | Synthesis of lithium titanate nanoparticle-carbon composite | lithium titanate nanoparticle composite | ST-12 | 453 | |
(11:00–12:00) (Chair: | |||||
D207 | [Invited lecture] Development of lithium-ion battery for expansion into new markets | new markets automotive storage | ST-12 | 73 | |
(13:00–13:40) (Chair: | |||||
D213 | Transport phenomena around the anode and power generation mechanisms in direct carbon fuel cell using chars | DCFC fuel cell carbon | ST-12 | 948 | |
D214 | Improvement of Electrode Performance for High-temperature-type Electrochemical Heat Pump using Solid Electrolyte | Electrochemical heat pump High temperature heat pump AMTEC | ST-12 | 941 | |
(13:40–14:40) (Chair: | |||||
D215 | SOFC Kinetic Simulations at Triple Phase Boundary Using Methane Fuel | TPB kinetic simulation Elementary reactions Methane fuel | ST-12 | 462 | |
D216 | Development of proton conductive SOFC electrolyte aiming to improve conductivity and power generation characteristics by changing composition ratio of SrPrAlO4 | SOFC proton-conductor layered perovskite structure | ST-12 | 944 | |
D217 | The relation between constitution of fuels and power generation characteristics on SOFC with proton conductor La0.99Ca0.01NbO4 | solid oxide fuel cells Langmuir reaction model power generation characteristic | ST-12 | 897 | |
(14:40–15:40) (Chair: | |||||
D218 | Impact of trace S, Cl, Si contaminants in fuel gas on the performance of SOFC anode | IGFC Trace impurities SOFC | ST-12 | 60 | |
D219 | Investigation on the effect of trace contaminants in fuel gas on the pressurized SOFC performance | pressurized SOFC H2S Chemical degradation | ST-12 | 61 | |
D220 | Metal Phosphide-Based Novel Anodes for Intermediate Temperature Fuel Cells | metal phosphide anode intermediate-temperature fuel cell | ST-12 | 782 | |
(15:40–16:00) (Chair: | |||||
General Discussion (Batteries and High-temp Fuel Cells) | |||||
Hall D, Day 3 | |||||
(9:00–10:00) (Chair: | |||||
D301 | Dimensionless Modulus Approach to Parametric Studies on PEFC Cathode Catalyst Layers | PEFC cathode dimensionless modulus | ST-12 | 564 | |
D302 | Effect of Solvent to Microstructure of Metal-free Carbon Cathode Using Silk-derived Activated Carbon for PEFC | Polymer electrolyte fuel cell Non-precious metal catalysts Ionomer | ST-12 | 953 | |
D303 | Formation kinetics of a packed layer of particles due to drying of a colloidal suspension | drying colloids suspension | ST-12 | 607 | |
(10:00–11:00) (Chair: | |||||
D304 | Relationship between electrode structure and cell characteristic and application for development of material and fabrication process | porous electrode reaction and mass transport simulation | ST-12 | 797 | |
D305 | Effect of preparation process on the internal structure of cathode slurry of Li-ion battery | Li-ion battery slurry Rheology | ST-12 | 916 | |
D306 | Effects of the status of particle packing in slurry on the crack formation of the slurry coatings | crack particle packing stress change | ST-12 | 758 | |
(11:00–12:00) (Chair: | |||||
D307 | [Invited lecture] Wet coating as a process to fabricate new interfaces | coating drying defects | ST-12 | 23 | |
(13:00–13:40) (Chair: | |||||
D313 | Fabrication of catalyst for direct methanol fuel cell using reduction algae: Effect of heat treatment | nanoparticle catalyst direct methanol fuel cell | ST-12 | 989 | |
D314 | Use of carbon nanotubes synthesized on stainless steel surface for glucose fuel cell electrodes | carbon nanotube catalyst glucose fuel cell | ST-12 | 992 | |
D315 | (withdrawn) | 100 | 353 | ||
(13:40–14:20) (Chair: | |||||
D316 | Oxygen Reduction Activity and Fine Structural Analysis of Connected Pt-Fe Nanoparticle Catalyst for Polymer Electrolyte Fuel Cells | Connected Nanoparticle Catalyst Oxygen Reduction Activity Polymer Electrolyte Fuel Cell | ST-12 | 987 | |
D317 | Development of Novel Proton Exchange Membranes with High Swelling Resistance Based on a Heterocyclic Ring System for PEFC | Proton Exchange Membrane Aromatic Polymer Heterocyclic Ring System | ST-12 | 382 | |
(14:20–14:40) (Chair: | |||||
General Discussion (Electrode Process and Low-temp Fuel Cells) | |||||
(14:40–15:00) (Chair: | |||||
Poster Awards Ceremony |
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SCEJ 48th Autumn Meeting (Tokushima, 2016)