Time | Prog. No. | Title/Author(s) | Keywords | Topics code | ACKN No. |
---|---|---|---|---|---|
Chemical reaction engineering | |||||
(9:00-10:20) (Chairperson Y. Ichihashi) | |||||
P301 | (JPN) Direct decomposition of cellulose by solid acid catalysts | cellulose solid acid catalyst sugar alcohol | 5-a | 643 | |
P302 | (JPN) Hydrothermal Saccharification of Woody Biomass Using Solid Acid Catalysts | Solid Acid Catalysts Woody Biomass Saccharification | 5-a | 571 | |
P303 | (JPN) Production of light oil by cracking of heavy oil with TiO2-ZrO2-based catalyst in a steam atomosphere | Heavy oil Titania-Zirconia oxide Catalytic cracking | 5-a | 238 | |
P304 | (JPN) Oil production from waste plastic by the combination of thermal decomposition and catalytic reaction | thermal decomposition catalytic reaction waste plastic | 5-a | 136 | |
(10:20-11:40) (Chairperson R. Watanabe) | |||||
P305 | (JPN) Effects of A Lamellar Mesostructure Formation on Their Photocatalytic Decomposition for Titanate Nanosheets photocatalysts | titanate nanosheets lamellar mesostructure photocatalyst | 5-a | 516 | |
P306 | (JPN) Photodecomposition of ammonia over Fe doped TiO2 | Photocatalyst hydrogen ammonia | 5-a | 520 | |
P307 | (JPN) Photo-Steam Reforming of Methane over Metal Loaded TiO2 Photocatalyst Prepared by Electroless Plating Method | Photocatalyst Hydrogen methane | 5-a | 254 | |
P308 | A mechanism of photocatalytic decomposition of 2,4-dinitrophenol in an aqueous solution containing TiO2 fine particle suspension | Photocatalytic reaction Mathematical model Reactant and product inhibitions | 5-c | 120 | |
(11:40-12:00) (Chairperson M. Kishida) | |||||
P309 | [The SCEJ Young Investigator Researcher Award](JPN) Improvement in the Catalytic Property of Metal Nanoparticles by Surface Covering | The SCEJ Young Investigator Researcher Award | 5-a | 802 | |
(13:00-14:20) (Chairperson H. Yamada) | |||||
P313 | (JPN) Effect of AC Electric Field for Three-Phase Separation on Reaction Behavior of Catalyst Phase in Phase Transfer Catalytic System | Phase transfer catalysis Alternate current field Third liquid phase | 5-a | 603 | |
P314 | (JPN) Application of ultrasonic atomization for fractionating submicron particles in suspensions | Ultrasound SiO2 particle separation | 5-b | 582 | |
P315 | (JPN) Effect of orifice geometry on reaction rate induced by hydrodynamic cavitation | cavitation orifice microbubble | 5-b | 86 | |
P316 | (JPN) Analysis of Ultrasonic Particle Dispersion by Chemical Reaction Engineering Model | Ultrasound Particle Dispersion Kinetic analysis | 5-b | 673 | |
(14:20-15:20) (Chairperson M. Miyamoto) | |||||
P317 | (JPN) Durability improvement of membrane on catalyst (MOC) module and basic study for utilization of the module | Hydrogen Palladium Membrane | 5-d | 5 | |
P318 | (JPN) Computational fluid analysis on membrane on catalyst module for producing hydrogen | hydrogen catalyst numerical analysis | 5-d | 231 | |
P319 | (JPN) Effect of hydrogen separation for kinetic acceleration of anmonia decomposition | ammonia hydrogen kinetics | 5-d | 451 | |
(15:20-16:20) (Chairperson T. Horie) | |||||
P320 | (JPN) Ethanol steam reforming using RuCo/CeO2 catalysts | ethanol steam reforming RuCo/CeO2 | 5-d | 699 | |
P321 | (JPN) Effect of ferrocene addition on the plasma decomposition of carbon dioxide in an oxygen permeating membrane reactor | plasma decomposition oxygen membrane carbon dioxide | 5-c | 759 | |
P322 | (JPN) Methane Oxidation in C12A7 Mayenite Membrane Reactor | membrane reactor C12A7mayenite fuel cell type reactor | 5-e | 132 |