Last modified: 2020-03-02 11:00:00
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Hall L, Day 1 | |||||
11,12 Electronics,Materials engineering & interfacial phenomena | |||||
(13:00–15:00) (Chair: | |||||
L113 | [The SCEJ Award for Outstanding Research Achievement] Study on Bio-Inspired Chemical Engineering Utilizing Self-Organized Membrane as a Platform of Molecular Recognition and Conversion | The SCEJ Award for Outstanding Research Achievement | 0-b | 816 | |
L114 | Design and Application of Lipid Membrane: Supermolecular Chirality of Polydiacetylene Membrane | Polydiacethylene (PDA) Ordered Membrane Systematic Characterization | 12-j | 549 | |
L115 | Control of membrane fluctuation of vesicles based on polymerized lipids or polymer for highly sensitivity to protein | liposome membrane fluctuation biosensor | 12-a | 727 | |
L116 | Effects of channel geometries and solution properties on double emulsion production | Double emulsion Flow focusing | 12-b | 391 | |
L117 | Dynamic behavior of hydroxypropyl cellulose enclosed in water-in-oil droplets | thermo-induced dynamics direct observation | 12-b | 495 | |
L118 | Free energy analysis on chemical transport of reactive fluid on solid surface | Spreading coefficient Free energy analysis Active matter | 12-a | 393 | |
(15:00–17:00) (Chair: | |||||
L119 | Membrane-based biosensor with efficient molecular recognition in small pore space | porous membrane biosensor immunoassay | 12-m | 708 | |
L120 | Construction of molecular-recognizing interface using natural and synthetic polyphenol compounds. | Polyphenolic glycosides Glycointerface Molecular recognition | 12-a | 578 | |
L121 | Preparation of TiO2-SiO2 Composite Oxide Nanoparticles for Photocatalysts | Chemical Si-O-Ti Bonds Coflow Diffusion Burner Laval Nozzle | 12-d | 26 | |
L122 | Photocatalytic microreactor with separated oxidation/reduction channels using Fe2O3 photocatalyst | Fe2O3 photocatalyst microreactor | 12-d | 660 | |
L123 | Development of connected Ir-Ru nanoparticle catalysts for polymer electrolyte water electrolysis | Polymer electrolyte water electrolysis Connected nanoparticle catalysts Carbon free catalysts | 12-d | 587 | |
L124 | Transdermal delivery of hydrophilic drugs with the development of Gel-in-Oil emulsion | gel in oil emulsion transdermal delivery hydrophilic drugs | 12-b | 161 | |
Hall L, Day 2 | |||||
9. Energy engineering | |||||
(9:20–10:40) (Chair: | |||||
L202 | Characterization of chemical kinetic mechanism for pulverized coal combustion by reactor network approach | chemical kinetics NOx drop tube furnace | 9-c | 61 | |
L203 | Evaluation method of the fuel characteristics in torrefied biomass by color change | biomass torrefaction color | 9-c | 778 | |
L204 | Modeling of tar reforming reaction with coal char at elevated pressure | Coal Gasitication Tar reforming | 9-c | 781 | |
L205 | Method of measuring tar in produced gas of woody biomass | tar woody biomass method of measuring | 9-f | 524 | |
(11:00–12:00) (Chair: | |||||
L207 | Progress of Osaki CoolGen Oxygen-blown IGCC with CO2 Capture Demonstration | Coal Gasification IGCC CO2 Capture | 9-c | 287 | |
L208 | Thermal Management of CO2 Methanation Process Based on Axial Staging of Active Metal Concentration | methanation CO2 utilization thermal management | 9-c | 441 | |
L209 | numerical simulation of a shell and tube methanation reactor | simulation methanation | 9-c | 460 | |
8. Supercritical fluid | |||||
(13:00–13:20) (Chair: | |||||
L213 | [The SCEJ Award for Outstanding Young Researcher] Development of Fast Extraction and Separation Process Using Supercritical CO2 | The SCEJ Award for Outstanding Young Researcher | 0-c | 820 | |
(13:20–14:40) (Chair: | |||||
L214 | Combined Applications of Supercritical CO2 Extraction and Molecular Distillation | Supercritical Fluid Molecular Distillation Natural Products | 8-c | 275 | |
L215 | Lipid extraction from wet microalgae by liquefied dimethyl ether extraction prototype plant | Dimethyl ether Biofuel Microalgae | 8-f | 516 | |
L216 | Predictive Framework for Estimating Kamlet-Taft Polarity ('pi'*) of Supercritical CO2 with Co-Solvents | Preferential solvation Local composition solvent selection | 8-b | 171 | |
L217 | Fabrication of multilayer filter using CAPC method | carbon dioxide polymer filter | 8-e | 53 | |
(15:00–16:40) (Chair: | |||||
L219 | Hydrothermal synthesis of CeO2 nanoparticles using dual-stage flow method for control of size and distribution | Hydrothermal synthesis cerium oxide dual-stage flow reactor | 8-e | 188 | |
L220 | Preparation of Functional Nanocapsules using the Supercritical Fluid Extraction of Emulsions (SFEE) Process | Composite Material Supercritical Carbon Dioxide Nanoparticles | 8-e | 416 | |
L221 | Formation of Cu-Ru Nanoparticles Using Supercritical Fluid-Assisted Immobilization | Bimetallic Nanoparticles Supercritical Fluid CO oxidation | 8-e | 490 | |
L222 | Synthesis of barium titanate nanoparticles using supercritical mixed solvents | Supercritical BaTiO3 Non-classical-nucleation | 8-e | 478 | |
L223 | Low-temperature chemical conversion with highly active nanomaterials synthesised using the supercritical hydrothermal method | nanoparticles low-temperature supercritical | 8-e | 641 | |
Hall L, Day 3 | |||||
9. Energy engineering | |||||
(9:00–10:20) (Chair: | |||||
L301 | Noble Metal- Transition Metal Phosphide Catalysts for Alkaline Water Electrolysis: Oxygen Evolution Reaction | Oxygen Evolution Reaction Electrocatalysts Metal Phosphides | 9-a | 335 | |
L302 | Boosted Oxygen Evolution Performance of an Iron-based Electrocatalyst in Alkaline Water Splitting | oxygen evolution reaction iron-based electrocatalyst alkaline water splitting | 9-e | 632 | |
L303 | Selectivities in electrochemical hydrogen and acetaldehyde co-production process | electroorganic synthesis selectivity acetaldehyde | 9-e | 615 | |
L304 | Technology assessment for renewable energy sources considering environmental and technoeconomic aspects: A case study of battery-assisted hydrogen production | Electrolysis System design LCA(Life cycle assessment) | 9-e | 711 | |
(10:40–12:00) (Chair: | |||||
L306 | Electrochemical Conversion of Carbonate to Formate: Regenerating fuels for Direct formate fuel cell | Bipolar membrane Fuel Regeneration Formate | 9-a | 616 | |
L307 | Determination of governing dimensionless moduli of PEFC from dependency of polarization curve on oxygen partial pressure | polymer electrolyte fuel cell analysis method dimensionless moduli | 9-e | 638 | |
L308 | Catalyst Slurries Prepared Using a Hydrodynamic Cavitation Dispersion Method and Their PEFC Performances | Cavitation Microbubbles Continuous Flow Process Polymer Electrolyte Fuel Cell | 9-e | 701 | |
L309 | Chemical durability of MEA using thin pore-filling electrolyte membrane with high-density structure of sulfonic acid groups | polymer electrolyte fuel cells pore-filling membrane chemical durability | 9-e | 643 | |
(13:00–14:20) (Chair: | |||||
L313 | Investigation of high-efficiency solid oxide fuel cells with bilayer electrolyte | Solid oxide fuel cell Bilayer electrolyte Transport property | 9-e | 659 | |
L314 | Proposal of the model of comprehensive anode reaction in solid oxide fuel cell / electrolysis cell and constructing the method of multivariable fitting | Solid Oxide Fuel Cell Kinetics modeling Langmuir-Hinshelwood | 9-e | 698 | |
L315 | Effect of Ion Conductive Oxide for Direct Carbon Nanotube Growth in the Solid Oxide Fuel Cell | Solid oxide fuel cell Carbon nanotube oxide ion conductor | 9-e | 542 | |
L316 | Development of Intermediate-Temperature Electrolysis Cells Using Solid Phosphate Electrolytes | electrolysis intermediate temperature solid phosphate | 9-e | 437 | |
(14:40–16:00) (Chair: | |||||
L318 | Study on electric power generation device based on thermopower wave | thermopower wave carbon nanotube power generation | 9-e | 798 | |
L319 | Charge-discharge characteristics of carbon-air secondary battery system using Ni/GDC and Ni/YSZ fuel electrode | solid oxide fuel cell secondary battery electrolysis | 9-e | 494 | |
L320 | Generating dispatchable power using variable renewable energy with thermal energy storage: Life cycle assessment of paper mill and wind powered thermal energy system | Simulation of paper production Life cycle assessment Greenhouse gas | 9-e | 483 | |
L321 | Effect of zinc in sewage sludge fuel on V2O5-WO3/TiO2 SCR catalyst | Zinc Sewage sludge SCR | 9-f | 77 |
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SCEJ 85th Annual Meeting (2020)