Hall A | |||||
---|---|---|---|---|---|
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Symposium <TBD> | |||||
(13:00–13:30) (Chair: Fujimoto Toshiyuki) | |||||
A117 | [Invited lecture] Current Status and Issues of Synthesis, Dispersion and Structuralization of Nanoparticle Material | Nanoparticle Material Synthesis, Dispersion and Structuralization | S-1 | 6 | |
Break | |||||
(13:45–14:30) (Chair: Kimata Mitsumasa) | |||||
A120 | DEM Analysis of the Effect of Particle Size Distribution on Shear Thickening of Concentrated Slurries | Shear thickening Concetrated slurries Discrete Element Method | S-1 | 47 | |
A121 | Reconsideration of diffusional collection efficiency of fibrous air filter by solving convection-diffusion equation | Air Filter Convection-Diffusion Equation Collection Efficiency | S-1 | 21 | |
A122 | Numerical simulation of particle collection and collection efficiency of fibrous air filter by Langevin dynamics method | Air Filter Lagevin dynamics method Collection Efficiency | S-1 | 22 | |
Break | |||||
(14:45–15:30) (Chair: Iwasaki Tomohiro) | |||||
A124 | Grinding of discarded shells from Sanriku and their effective utilization | Grinding Hydroxyapatite Scallop seashells | S-1 | 76 | |
A125 | Preparation of Si nanoparticles from halloysite by mechanochemical method | mechanochemical halloysite Si nanoparticles | S-1 | 20 | |
A126 | Preparation of composite oxide particles for catalysts by mechanochemical method | Mechanochemical method Composite oxide particles Catalyst preparation | S-1 | 50 | |
(15:30–16:15) (Chair: Kano Junya) | |||||
A127 | Analysis of formation process of hematite/magnetite composite nanoparticles in a solvent-free homogeneous precipitation method | mechanochemical treatment composite nanoparticles urea hydrolysis | S-1 | 2 | |
A128 | Preparation of composite oxide particles for catalyst by sol-gel method using microreactor | sol-gel method microreactor composite oxide particles for catalyst | S-1 | 19 | |
A129 | Hydrothermal synthesis of kenyaite using quartz glass waste as raw material | Quartz glass waste Kenyaite Hydrothermal synthesis | S-1 | 55 | |
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(16:30–17:15) (Chair: Fujiwara Kakeru, Kimura Isao) | |||||
A131 | Comparison of organic vapor permeability of protective gloves for use against chemicals | protective glove organic vapor permeability | 10-i | 36 | |
A132 | Promotion of dispersion and viscosity reduction for nano-particle solution by pressurizing CO2 | Nano Particle Viscosity Reduction Pressurized CO2 | 8-b | 39 | |
A133 | Development of Catalysts for Selective Oxidation of Propylene by Flame Spray Pyrolysis | Flame spray pyrolysis Selective Oxidation of Propylene Mo | 5-a | 51 | |
Hall B | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Symposium <TBD> | |||||
(13:30–14:45) (Chair: Kobayashi Masaki, Honma Tetsuo) | |||||
B119 | [Invited lecture]CO2 recycling and fixing technologies developing by an innovative transformation of C1-based molecules | Methanation Carbon capture CCU | S-2 | 3 | |
B121 | [Invited lecture] Development of a direct methane conversion process assisted by microwave heating that enables the production of both high purity hydrogen and carbon as a substitute for platinum catalysts | methane conversion microwave heating Ni-CNO | S-2 | 8 | |
B123 | Effect of Microwave Irradiation on Methanation of CO2 using Ru/CeO2 Catalyst | Methanation Microwave CCU | S-2 | 48 | |
Break | |||||
(15:00–16:15) (Chair: Kobayashi Masaki, Honma Tetsuo) | |||||
B125 | [Invited lecture] Decomposition of persistent compounds in gas and liquid phases using atmospheric non-thermal plasma | Plasma Radical Persistent compounds | S-2 | 40 | |
B127 | A food-loss reduction methodology by high speed cutting under hydrothermal condition | hydrothermal high shear rate food loss reduction | S-2 | 38 | |
B128 | The recovery of virgin plastics from laminated plastics in subcritical water | laminated plastics semi-batch process subcritical water | S-2 | 65 | |
B129 | Key point of the development of water electrolysis hydrogen production equipment using hydrogen permeable membrane electrodes | electroysis of water hydrogen palladium membrane | S-2 | 74 |