Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Fluid & particle processing | |||||
(10:00–11:00) (Chair: Naoki Okamoto, Kuniaki Gotoh) | |||||
I01 | Investigation of the model of thrombopoiesis for megakaryocytes derived from iPS cells by using discrete element method | discrete element method computational fluid dynamics iPS cell | 2-b | 18 | |
I02 | Development of a DEM simulation model for granulation process | Granulation Numerical simulation Discrete element method | 2-f | 39 | |
I03 | Control of Aggregate Structure of Soft Porous Crystal and its adsorption properties | Metal-organic framework Spray-drying High shear granulation | 2-f | 63 | |
I04 | Band gap control of zinc oxide by mechanochemical method | Band gap Mechanochemical method Zinc oxide | 2-f | 66 | |
I05 | Evaluation of adhesion force between a microbubble and a cell using atomic force microscope | AFM Adhesion force Microbubble | 2-g | 70 | |
Fluid & particle processing | |||||
(11:00–12:00) (Chair: Toru Ishigami, Atsushi Sekimoto) | |||||
I06 | Effects of conditions of mixing section on the production of caffeine microparticles by spray drying using supercritical CO2 | Spray drying Supercritical CO2 Micronization | 2-f | 93 | |
I07 | Effect of bubble diameter on concentration of diatom cell using micro bubble | diatom micro bubble concentration | 2-e | 74 | |
I08 | Effect of particles circulation flow on objects' float-sink in a gas-solid fluidized bed | gas-solid fluidized bed particles circulation flow object's float-sink | 2-c | 98 | |
I09 | Dry gravity separation of construction waste residue using vibro-fluidized bed | gas-solid fluidized bed density segregation gravity separation | 2-c | 99 | |
I10 | 2-step separation of construction waste residue using vibro-fluidized bed | gas-solid fluidized bed density segregation gravity separation | 2-c | 100 | |
Fluid & particle processing | |||||
(13:00–14:12) (Chair: Toshiyuki Nomura, Daigo Yamamoto) | |||||
I11 | the effect of baffles on agitation and mixing | Stirred tank Baffle configuration Power number | 2-b | 111 | |
I12 | Study on Evaluation of Powder Gravitational Flowability in Powder Filling to a mold corner | powder flowability mold | 2-f | 133 | |
I13 | Effect of liquid bridge on strength of powder compacts | Powder Compression Liquid bridge | 2-f | 136 | |
I14 | Aggreration mechanism of latex particles using epoxy resin | aggregation stirring condition latex particle | 2-b | 137 | |
I15 | Study of the effect of surface roughness on a particle-solid wall adhesion based on relative adhesion index | Particle Surface roughness Adhesion | 2-f | 138 | |
I16 | DEM simulation of particle behavior in shearing process | Discrete Element Method shearing process van der Waals interaction | 2-f | 140 | |
Fluid & particle processing, Supercritical fluid | |||||
(14:12–15:24) (Chair: Yoshiyuki Komoda, Yasushi Mino) | |||||
I17 | Direct numerical simulation of drying process of particle-laden droplet | spray drying direct numerical simulation gas-solid-liquid flow | 2-e | 146 | |
I18 | Influence of heating method on crystal formation and adsorption characteristics of ZSM-5 | microwave heating zeolite adsorption characteristics | 2-f | 147 | |
I19 | Evaluation of agglomeration behavior of fine powder in vibrating fluidized bed | Agglomeration Fine powder Fluidized bed | 2-f | 149 | |
I20 | Numerical simulation of emulsions permeating through filter coordinated with X-ray CT imaging | phase-field model coalescer X-ray CT imaging | 2-e | 152 | |
I21 | Production of microparticles of sulfathiazole by supercritical anti-solvent recrystallization (SAS) in micro-space | SAS-MD Microparticles Micro device | 8-e | 92 | |
I22 | Micro foaming of poly (ethylene-co-acrylic acid) using high pressure gas | Foaming Poly(ethylene-co-acrylic acid) Supercritical fluid | 8-e | 155 |