Last modified: 2016-09-07 09:49:00
Secondary batteries, solar cells, fuel cells, and the next-generation-energy-converting-technology come to be important for highly efficient energy utilization. And these batteries are also very important technology on the next-generation smart society using ICT, IOT and wearable devices. We invite seminars generally on concerning technology for this symposium, and also argue how chemical engineering can contribute for them and the possibility. Furthermore, we have a general meeting about tasks and needs provided by industry such as production field and mount system.
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Hall D, Day 1 | |||||
(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)