Day 1 | |||||
---|---|---|---|---|---|
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Energy (Student Award Oral) | |||||
(10:30–12:00) (Chair: Yamanaka S.) | |||||
C101 | Enhancement of mass transfer in vanadium redox flow battery by using porous materials | Porous material Vanadium redox flow battery Mass transfer | 9-e | 98 | |
C102 | Preparation of tungsten-carbon alloy catalysts for hydrogen evolution reaction | hydrogen evolution reaction carbon alloy tungsten carbide | 9-e | 78 | |
C103 | CuO nanowire@Co3O4 ultrathin nanosheet core/shell Array: An effective catalyst for water electrolysis | CuO@Co3O4 Water electrolysis Hydrogen production | 11-a | 26 | |
C104 | Catalyic activity of Pd nanoparticles supported on TiO2-CNF for formic acid oxidation | Direct formic acid fuell cell Carbon nanofiber Electrocatalyst | 9-e | 100 | |
C105 | Application of sulfonated carbon to anode and cathode catalyst layers of polymer electrolyte fuel cells | Polymer electrolyte fuel cell Sulfonated carbon Catalyst layer | 9-e | 81 | |
C106 | The effect of nitrogen concentration in TECNF for methanol oxidation reaction activity | Direct methanol Fuel cell Nitrogen doping Catalytic activity | 9-e | 99 | |
Lunch break | |||||
Reaction Engineering (Student Award Oral) | |||||
(12:50–14:05) (Chair: Seshimo Masahiro) | |||||
C111 | Influence of nitrogen and boron doping of the carbon support on a catalystic activity of nickel for benzene hydrogenation | hydrogenation nickel carbon | 5-a | 70 | |
C112 | Oxygen reduction activity of carbon alloy catalysts prepared with metal-phthalocyanines | carbon alloy oxygen reduction reaction | 11-a | 76 | |
C113 | Highly Efficient Suzuki-Miyaura Coupling Reaction with Ni-Zn Hydroxy Double Salt-Intercalated [Pd(OH)4]2- Complex Catalyst | Ni-Zn hydroxy double salt Anion exchange intercalation | 5-a | 17 | |
C114 | Hydrogen production via formic acid decomposition over molybdenum carbide catalyst | Formic acid Molybdenum carbide Hydrogen production | 5-a | 27 | |
C115 | Preparation and characterization of a film model carbon alloy catalyst: a detailed surface study | CARBON ALLOY PEFC film | 9-f | 92 | |
Break | |||||
(14:15–15:30) (Chair: Hara T.) | |||||
C117 | An explanation of the enhanced activity of carbon black for oxygen reduction reaction by doping of born and nitrogen | carbon alloy oxygen reduction reaction | 11-a | 88 | |
C118 | Membrane reactor for ammonia decomposition in the low temperature and high purity hydrogen recovery | Ammonia Palladium Membrane reactor | 5-d | 93 | |
C119 | Direct growth and structural control of graphene films on dielectric substrates by etching-precipitation method | graphene crystal growth dry-etching | 5-h | 46 | |
C120 | Removal of the Water Insoluble Odor Using Non-thermal Plasma | Corona Discharge Odor Plasma | 5-c | 1 | |
C121 | Preparation of Carbon-supported Ni-Ru catalyst for Methylcyclohexane Dehydrogenation | Dehydrogenation Catalyst Methylcyclohexane | 9-e | 85 | |
Day 2 | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
General Oral | |||||
(10:00–10:45) (Chair: Harano Azuchi) | |||||
C201 | Oscillatory motion inducing characteristic texture of powdery / particulate materials | powdery / particulate materials characteristic texture oscillatory motion | 12-a | 22 | |
C202 | Transient morphological difference of water droplet on smooth solid surface with different hydrophobicities / water-repellencies | water repellency transient morphology shrinking outline | 12-a | 29 | |
C203 | Formation of organic silica shell on nanoparticles in amine and fabrication of hollow nanoparticles by elimination of the core nanoparticles (Nat. Inst. Tech. or Nippon Inst. Tech. or NITech,Fukushima) *Yamauchi N., | organic silica shell core-shell structure hollow nanoparticle | 12-c | 31 | |
Break | |||||
(11:00–11:45) (Chair: Nakamura Kazuho) | |||||
C205 | Observation study of gellation process of calcium alginate hydrogel. | calcium alginate hydrogel gellation high-speed observation | 12-e | 16 | |
C206 | Vapor-phase esterification enhanced by selective water vapor separation with zeolite membrane | esterification zeolite membrane water selective | 5-d | 108 | |
C207 | Enhancement of ethanol oxidation by interaction between the intermetallic compound and the composite support for fuel cells | Direct ethanol fuel cell Intermetallic compound electrocatalyst | 9-e | 101 | |
Lunch break | |||||
(13:00–13:45) (Chair: Kurumada K.) | |||||
C213 | Heat Transfer and Particle Dispersion in Solid-Liquid Spouted-Bed Apparatus Equipped with Biconical Device (Yamagata U. Graduate School of Sci. and Eng.) *Tuji Tomohiro, | Heat Transfer Particle Dispersion Spouted Bed | 2-a | 15 | |
C214 | Mixed Convection Heat Transfer in Horizontal Isothermal Circular Pipe (Yamagata U.Graduate School of Sci. and Eng.) *Arakawa Hitoshi, | mixed convection heat transfer numerical simulation | 2-a | 5 | |
C215 | Heat Transfer from Horizontal In-Line Cylinder Array Placed Normal to Air Flow (Yamagata U.Graduate School of Sci. and Eng.) *Ikeda Toshihiro, | Forced Convection Heat Transfer Coefficient Horizontal Cylinder | 2-a | 6 | |
Break | |||||
(14:00–15:00) (Chair: Tokanai H.) | |||||
C217 | Recovery of Tritium from Radioactive Waste Water generted by Fukushima Daiichi Nuclear Power Plant Accident | Trickle bed Platinum catalyst Radiation Contaminated Water | 13-b | 115 | |
C218 | Characterization of non-woven fibrous filter | non-woven fibrous filter filtration structure characetrization | 4-b | 106 | |
C219 | Desirable preparation of alginate nanofiltration membrane cross-linked with various metal ions involving mass transfer characteristics | Alginate membrane Metal ion Mass transfer characteristics | 4-a | 77 | |
C220 | Copper Recovery from Industrial Waste Water using Brown Coal | Copper Recovery Brown Coal Wastewater | 13-e | 107 |