
Day 1 | |||||
|---|---|---|---|---|---|
| Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
| Symposium <Progress in Advanced Powder and Particle Process Technology -Particle design, Functinalization, Measurement, Characterization and Unit operation-> | |||||
| (9:00–10:00) (Chair: Tokoro C.) | |||||
| A101 | Development of materials for chemical heat storage by mechanochemical synthesis | Mechanochemical Synthesis Chemical Heat Storage Mixed Hydroxide | S-21 | 17 | |
| A102 | Production of calcined shell fine particles by mechanical grinding and its antibacterial activity (Graduate School of Muroran Inst. Tech.) Shoji Hiroki, | planetary ball mill scallop shell antibacterial activity | S-21 | 718 | |
| A103 | Preparation of shell nanoparticles by mechanical grinding and its application to plywood adhesive (Graduate School of Muroran Inst. Tech.) Magara Kohei, | planetary ball mill scallop shell plywood | S-21 | 625 | |
| (10:00–11:00) (Chair: Yamanaka S.) | |||||
| A104 | Hydrothermal Synthesis of Zeolite from Flyash by Microwave Heating with Pulverization | Microwave Pulverization Zeolite | S-21 | 124 | |
| A105 | DEM simulation analysis for effects of adhesive force of admixed particles on an improvement of particle-bed packing fractions | packing fraction DEM simulation admixed particle | S-21 | 398 | |
| A106 | Mn removal from spent filter sand by surface grinding using Intensive mixer | surface grinding filter sand DEM | S-21 | 770 | |
| (11:00–12:00) (Chair: Oshitani J.) | |||||
| A107 | Effect of Particle Shape on Mixing Behaviour for A Rotating Drum | DEM simulation Particle Shape Mixing Characteristics | S-21 | 19 | |
| A108 | ADEM simulation for breakage analysis of irregularly shaped particles | Distinct Element Method breakage irregularly shaped | S-21 | 682 | |
| A109 | Estimation of shear force acting on wheel using sand trajectories measured with PEPT | PEPT trajectory shear force | S-21 | 224 | |
| (13:00–13:40) (Chair: Shimizu T.) | |||||
| A113 | Operational Status of Karita Power Station with Pressurized Fluidized Bed Combustion Combined Cycle | Coal Commercial Operation Pressurized Fluidized Bed Combustion | S-21 | 505 | |
| (13:40–15:00) (Chair: Kuwagi K.) | |||||
| A115 | Effect of powder properties and air velocity on apparent density of gas-solid fluidized beds | fluidized bed apparent density powder properties | S-21 | 863 | |
| A116 | Effect of mechanical vibration on particle behavior in a tapered fluidized bed | tapered fluidized bed vibration | S-21 | 850 | |
| A117 | Defluidization conditions for a fluidized bed evaporator in desalination process | fluidized bed self-heat recuperation desalination | S-21 | 766 | |
| A118 | Modeling for triple-bed circulating fluidized bed flow behavior analyze using equivalent circuit | Fluidized bed Equivalent circuit model Flow behavior | S-21 | 841 | |
| (15:00–16:20) (Chair: Mawatari Y.) | |||||
| A119 | Effects of Draft Tube and Particle Property on Flow Characteristics of a Spout-Fluid Bed | spout-fluid bed draft tube PIV | S-21 | 33 | |
| A120 | Effects of Stirring and Aeration on Dynamic Flow Characteristics of Fine Powders | Powder Rheometer Fine Powder Fluidization | S-21 | 34 | |
| A121 | Particle circulation rate of a L-type loop seal for multi-compartment internal circulating fluidizad beds (Gunma U. Graduate school of Sci. Tech.) Noda Reiji, (Gunma U. Graduate school of Sci. and Tech.) Sugimoto Masaya | Fluidized beds Particle circulation Loop seal | S-21 | 638 | |
| A122 | Process for heat recovery from molten slag using fluidized bed | Fuidized bed Slag Heat recovery | S-21 | 51 | |
Day 2 | |||||
| Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
| Symposium <Progress in Advanced Powder and Particle Process Technology -Particle design, Functinalization, Measurement, Characterization and Unit operation-> | |||||
| (10:00–11:00) (Chair: Nomura T.) | |||||
| A204 | Influence of ion species absorbed on particle surface in aggregation phenomena of colloid. | absorbed layer aggregation phenomena ion species | S-21 | 904 | |
| A205 | Evaluation of interaction force in high viscous polymer solution by colloid probe AFM method | Colloid probe AFM Polymer solution Interaction force | S-21 | 256 | |
| A206 | Direct Measurement of Solvophobic Attraction between Modified Silica Surfaces by Colloid Probe Atomic Force Microscopy | solvophobic attraction AFM modified Silica | S-21 | 944 | |
| (11:00–12:00) (Chair: Ishida N.) | |||||
| A207 | Measurement of living E. coli adhesion force using colloidal probe AFM technique | AFM adhesion force bacteria | S-21 | 56 | |
| A208 | Adhesion and internalization of polymer nanoparticles toward yeast | Yeast PSL colloidal behavior | S-21 | 57 | |
| A209 | Rheological characteristics of composed natural polysaccharides | Polysaccharide Rheology Gel | S-21 | 756 | |
| (13:00–14:20) (Chair: Ogi T.) | |||||
| A213 | Particle classification performance by use of electrostatic potential | Classification Electrical force Particle Separation | S-21 | 558 | |
| A214 | Investigation for mechanism of compression-speed dependence of tablet strength formed by nanoparticles | tablet strength compression-speed nanoparticles | S-21 | 346 | |
| A215 | Quantification method for the force acting on a nanoparticle agglomerate during mixing operation | quantification method nanoparticle mixing | S-21 | 340 | |
| A216 | Fragmentation of nanoparticle agglomerates by collisions | Nanoparticles Fragmentation Agglomerates | S-21 | 277 | |
| (14:20–15:40) (Chair: Taniguchi I.) | |||||
| A217 | Synthesis of metal oxide nanoparticles in a flame reactor | Nanoparticles Flame Reactor Metal Oxide | S-21 | 316 | |
| A218 | Visualization of particle behavior in plasma reactor | plasma-enhanced chemical vapor deposition dust generation contamination control | S-21 | 318 | |
| A219 | Preparation of visible light absorption enhanced TiO2 by atmospheric pressure water vapor plasma | photocatalyst SPCP reactor non-thermal plasma | S-21 | 736 | |
| A220 | Solid-phase coating of iron particles with the copper oxide particles generated by Ultrasonic Spray Pyrolysis. (Graduate School of Muroran Inst. Tech.) Ito Fuyuki, | ultrasonic spray pyrolisis coating planetary ball mill | S-21 | 264 | |
| (15:40–16:40) (Chair: Okada Y.) | |||||
| A221 | Synthesis of Manganese oxides and their structure and morphology control | Manganese oxides Spray pyrolysis Morphology control | S-21 | 491 | |
| A222 | Hydrothermal synthesis of organic-modified TiO2 nanocrystals and control in their crystal structure | TiO2 hydrothermal synthesis nanocrystals | S-21 | 701 | |
| A223 | Fabrication of Mg-LHS and its chmical heat storage property | Layered hydroxide salt chemical heat storage Mg(OH)2 | S-21 | 952 | |
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