
Last modified: 2018-09-04 10:00:00
| Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
|---|---|---|---|---|---|
| Hall FB, Day 1 | |||||
| SY-53 [Symposium of Division of Fluid & Particle Processing] Bubbles, Drops, and Particles Dispersion Engineering 2018 | |||||
| (9:20–10:20) (Chair: | |||||
| FB102 | Bubble induced oxygen absorption at free surface | Bubble Column Bubble burst Oxygen absorption | SY-53 | 930 | |
| FB103 | Effects of bubble interaction and diameter on gas holdups in bubble columns | Bubble swarm velocity Bubble clustering Effective bubble diameter | SY-53 | 158 | |
| FB104 | Experimental analysis of ultrasonic cleaning with oxygen-supersaturated water | Ultrasonic cleaning Acoustic cavitation Dissolved gas supersaturation | SY-53 | 1016 | |
| Break | |||||
| (10:40–12:00) (Chair: | |||||
| FB106 | Enhancement of release of hydrophilic molecules from phospholipid vesicles using bubbles | Liposomes Bubbles Permeability | SY-53 | 124 | |
| FB107 | Numerical simulation of the temperature dependence of viscosity of highly viscous fluid and the influence of weir shape on liquid level in weir | lattice Boltzmann method IGCC slag | SY-53 | 95 | |
| FB108 | Calculation Method for Dynamic Contact Angle based on Interface-Tracking Model | Dynamic Contact Angle Interface-Tracking Model Computational Fluid Dynamics | SY-53 | 317 | |
| FB109 | Verification of surface flow model for solution with surfactant | Marangoni convection Surfactant Surface tension | SY-53 | 239 | |
| (13:00–13:40) (Chair: | |||||
| FB113 | [Review lecture] Gas-non-Newtonian liquid two-phase flow in a horizontal pipe | Two-phase flow Non-Newtonian flow Pipe flow | SY-53 | 115 | |
| (13:40–14:40) (Chair: | |||||
| FB115 | Numerical Analysis of the dynamics of a falling drop with a shear-thinning property impact on a quiescent fluid layer | Drop Impact Shear-thinning Property Numerical Analysis | SY-53 | 458 | |
| FB116 | The motion of a rising droplet in a stagnant liquid | Front-Tracking Drag coefficient Drag force | SY-53 | 577 | |
| FB117 | Separation and collection of airborne ultrafine particles using coarse droplets generated by ultrasonic atomization | ultrasonic atomization ultrafine particle particle collection | SY-53 | 224 | |
| Break | |||||
| (15:00–16:20) (Chair: | |||||
| FB119 | Control of droplet generation by change of channel structure in cross-shaped microchannel | microchannel 3D-printer droplet | SY-53 | 980 | |
| FB120 | A numerical study of concentration effects on inertial focusing of particles flowing through microchannels | inertial focusing microchannels direct numerical simulation | SY-53 | 9 | |
| FB121 | Simulation of structure formation of solid-liquid-liquid dispersion | Solid-liquid-liquid dispersion Direct numerical simulation Structure formation | SY-53 | 375 | |
| FB122 | Experimental study on particle flow through an orifice with an obstacle on solid-liquid two-phase flow | solid-liquid two phase flow obstacle clogging | SY-53 | 274 | |
| Hall FB, Day 2 | |||||
| ST-22 [Trans-Division Symposium] Novel Development of Plasma Processing | |||||
| (9:00–10:20) (Chair: | |||||
| FB201 | Development of plate plasma membrane reactor with a flow channel | Ammonia Plasma Hydrogen production | ST-22 | 393 | |
| FB202 | Development of self-sufficient material circulation system by plasma generated in aqueous phase | hydrogen production sterilization nitrogen fixation | ST-22 | 569 | |
| FB203 | Dechlorination of organic chlorinated compounds using atmospheric pressure plasma method | Atmospheric pressure plasma Organochlorine compound Dechlorination | ST-22 | 637 | |
| FB204 | Improvement in particle retention function of nanofiber membrane using atmospheric pressure plasma | nanofiber membrane plasma modification particle filtration | ST-22 | 1084 | |
| (10:20–11:20) (Chair: | |||||
| FB205 | Ultrasonic Assisted Fabrication of Metal Nanoparticles by Laser Ablation in Liquid | Laser ablation Metal nanoparticles Ultrasonic | ST-22 | 163 | |
| FB206 | Synthesis of YRu2 intermetallic nanoparticles by laser ablation under argon for ammonia synthesis application | Laser ablation Intermetallic nanoparticles Ammonia synthesis | ST-22 | 672 | |
| FB207 | Recovery of aromatic compounds from woody biomass by pulse arc discharge treatment | pulse discharge lignin aromatic compounds | ST-22 | 1051 | |
| (11:20–12:00) (Chair: | |||||
| FB208 | [Review lecture] Plasma Coating Technology for Functional Film Formations | Plasma Coating Functional Film | ST-22 | 145 | |
| (13:00–13:40) (Chair: | |||||
| FB213 | [Review lecture] Biological effects of pulsed electric fields and their application to medical and food processes | pulsed electric field | ST-22 | 62 | |
| (13:40–15:00) (Chair: | |||||
| FB215 | Characterization of interpolation particles for hybrid plasma | zeolite ammonia adsorption | ST-22 | 526 | |
| FB216 | Direct Ammonia Synthesis from Nitrogen and Hydrogen by Activated Cokes-Induced Microwave Plasma | Plasma Ammonia | ST-22 | 1070 | |
| FB217 | Effect of Plasma Irradiation on Particle Dynamics in 2-D Spouted Bed | Plasma Spouted bed Particle Dynamics | ST-22 | 245 | |
| FB218 | Investigation of cathode erosion mechanism accelerated by nitrogen addition in DC arc | Thermal plasmas Nitrogen arc Electrode erosion | ST-22 | 921 | |
| (15:00–16:00) (Chair: | |||||
| FB219 | Analysis of Temperature Fluctuation Characteristics in Multiphase AC arc by High-Speed Camera | Thermal plasma Multiphase AC arc Temperature measurement | ST-22 | 936 | |
| FB220 | Rapid Conductive Coating Process for Particles Using a Combination of Gliding Arc Discharge and Spouted Bed with Solid Precursor | Surface Modification Gliding Arc Discharge Spouted Bed | ST-22 | 721 | |
| FB221 | Low-temperature oxidation coupling of methane assisted by discharge between TiO2 and zeolite particles | oxidative coupling of methane discharge in nanospace electron conductivity | ST-22 | 479 | |
| Hall FB, Day 3 | |||||
| ST-29 [Trans-Division Symposium] Approach from Chemical Engineering to Fine Bubble Technology | |||||
| (8:55–9:00) | |||||
| Opening remark | |||||
| (9:00–10:20) (Chair: | |||||
| FB301 | Development of a fine bubble generator by active control of the chamber pressure | Fine Bubble Micro Bubble Chamber Pressure | ST-29 | 560 | |
| FB302 | Numerical study of optimum rotation speed for fine bubble generation by high speed stirring | fine bubble lattice Boltzmann method numerical simulation | ST-29 | 89 | |
| FB303 | Mechanism for fine bubble formation under microwave irradiation by DLS measurement | Microwave Fine bubble DLS | ST-29 | 127 | |
| FB304 | Evaluation of Fine Bubbles using Cryo-TEM | Fine Bubble Cryo-TEM Ultra Fine Bubble | ST-29 | 37 | |
| Break | |||||
| (10:40–12:00) (Chair: | |||||
| FB306 | Flotation of albumin in wastewater by CO2 microbubbles | Microbubble Flotation Albumin | ST-29 | 149 | |
| FB307 | Effect of fine bubbles on germination and initial growth of spinach and Japanese mustard spinach | fine bubble plant growth | ST-29 | 378 | |
| FB308 | Development of bromate synthesis utilizing ozone fine bubble | Synthesis Bromate Ozone fine bubble | ST-29 | 545 | |
| FB309 | Effect of fine bubbles on removal of sticking salt | fine bubble cleaning sticking salt | ST-29 | 747 | |
| (13:00–14:40) (Chair: | |||||
| FB313 | [Review lecture] Contribution of chemical engineering on fine bubble technology | Fine Bubble Micro Bubble Ultra Fine Bubble | ST-29 | 56 | |
| FB315 | [Review lecture] Evaluation Methods and International Standardization for Fine bubble | Fine bubble Ultrafine bubble Quantitative laser diffraction method | ST-29 | 1086 | |
| FB317 | Stability evaluation of ultrafine bubbles under various solution conditions | Ultra Fine Bubble Stability Number concentration | ST-29 | 134 | |
| Break | |||||
| (15:00–16:00) (Chair: | |||||
| FB319 | Relationship between finebubbles and sonochemical efficiency | Ultrasound Finebubbles Sonoprocess | ST-29 | 785 | |
| FB320 | Dissolution characteristics of H2/N2 fine bubble system | Hydrogen Fine bubble Dissolution rate | ST-29 | 544 | |
| FB321 | Separation of mixture gas of methane and nitrogen using hydrate and finebubbles | hydrate methane finebubbles | ST-29 | 792 | |
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SCEJ 50th Autumn Meeting (Kagoshima, 2018)
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