Time | Prog. No. | Title/Author(s) | Keywords | Topics code | ACKN No. |
---|---|---|---|---|---|
Supercritical fluid | |||||
(9:00-10:00) (Chairperson Y. Takebayashi) | |||||
N101 | (JPN) Automatic measurement of viscosity decrease phenomena of gas expanded liquids using simple viscosity measurement system | viscosity gas expanded liquid carbon dioxide | 8-b | 169 | |
N102 | (JPN) Measurements of partial molar volumes and diffusion coefficients by supercritical fluid chromatography | supercritical fluid chromatography partial molar volume diffusion coefficient | 8-b | 506 | |
N103 | (JPN) Prediction of High-Pressure Kinematic Viscosity for Supercritical Carbon Dioxide + Solvent Systems Using Excess Free Energy Mixing Rule + NRTL Model | HIgh-Pressure Kinematic Viscosity Excess Free Energy Mixing Rule NRTL Model | 8-b | 260 | |
(10:00-11:00) (Chairperson T. Aizawa) | |||||
N104 | (JPN) Dynamics properties of water-methanol mixtures from ambient to supercritical conditions using molecular dynamics simulation | dynamics properties simulation water+methanol | 8-b | 361 | |
N105 | (JPN) Near-infrared spectroscopic study of solubility of carbon dioxide in molten naphthalene under high pressure | carbon dioxide solubility near infrared spectroscopy | 8-b | 292 | |
N106 | (JPN) Resonance Properties of Surface Acoustic Wave Resonator in Supercritical CO2 | supercritical CO2 density fluctuation surface acoustic wave | 8-g | 105 | |
(11:00-12:00) (Chairperson C. Y. Kong) | |||||
N107 | (JPN) Subcritical dimethyl ether assists microalgae to fuel processes in reaching a positive energy balance | Subcritical dimethyl ether Microalgae Wet extraction | 8-c | 157 | |
N108 | Supercritical CO2-Modified Hydrothermal Extraction of Bioactive Compounds from Garcinia mangostana Pericarp | Supercritical Carbon Dioxide Hydrothermal Mangosteen | 8-c | 479 | |
N109 | (JPN) Extraction of valuable compounds from japanese citrus using supercritical carbon dioxide | Supercritical carbon dioxide Japanese citrus bioactive compound | 8-c | 710 | |
(13:00-14:00) (Chairperson T. Sako) | |||||
N113 | (JPN) Influence of the temperature and the pressure on the yield of Claisen rearrangement reaction of allyl phenyl ether in the high temperature and pressure region including the super critical region. | Supercritical Fluid Allyl phenyl ether Claisen Rearrangement | 8-d | 787 | |
N114 | (JPN) Effects of catalysis and solvation by water on decomposition of formic acid in hot-compressed water | formic acid hot-compressed water solvation effect | 8-d | 77 | |
N115 | (JPN) Hydration of pinene in hot compressed water using solid acid catalysts | Hot and compressed water Pinene Solid acid catalyst | 8-d | 285 | |
(14:00-15:20) (Chairperson M. Maebayashi) | |||||
N116 | Hydrogenation of Diphenyl Ether in Supercritical Carbon Dioxide using Rh/C catalyst | Supercritical carbon dioxide Hydrogenation diphenyl ether | 8-d |