Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Day 2 13:20– 14:40 | Chair: Yoko Akira, Matsuyama Kiyoshi |
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 |
Day 2 13:20– 15:20 | PC251 | Oxygen storage capacity of facet-controlled iron oxide nanoparticles synthesized by supercritical hydrothermal organic modification
| Supercritical hydrothermal synthesis nanoparticle oxygen storage capacity
| 12-d | 502 |
Day 2 16:00– 16:20 | L222 | Synthesis of barium titanate nanoparticles using supercritical mixed solvents
| Supercritical BaTiO3 Non-classical-nucleation
| 8-e | 478 |
Day 2 16:20– 16:40 | L223 | Low-temperature chemical conversion with highly active nanomaterials synthesised using the supercritical hydrothermal method
| nanoparticles low-temperature supercritical
| 8-e | 641 |
Day 3 9:00– 9:20 | K301 | Facet-controlled metal oxide nanoparticles formed by hydrothermal organic modification and its low-temperature oxygen storage capacity
| Facet control Hydrothermal Oxygen storage capacity
| 12-d | 676 |
Day 3 9:20– 11:20 | PD335 | Reaction analysis of chemical looping methane reforming process using CeO2 nanoparticles
| methane reforming CeO2 nanoparticles Reaction analysis
| 5-a | 491 |
Day 3 13:20– 15:20 | PE385 | Formation Mechanism of Highly Cr-substituted Ceria Nanoparticles Synthesized by Supercritical Hydrothermal Flow Reaction System
| supercritical water mechanism nanoparticles
| 8-e | 469 |