
Authors field exact matches “Shimoyama Yusuke”; 9 programs are found. (“Poster with Flash” presentations are double-counted.)
The search results are sorted by the start time.
| Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
|---|---|---|---|---|---|
| Day 1 | Y104 | Prediction of melting point depression in high pressure CO2 using molecular interaction energy in equation of state from molecular information | melting point depression high pressure CO2 molecular information | SY-51 | 607 |
| Day 1 | Chair: | ||||
| Y106 | Solubilities and diffusion coefficients of carbon dioxide and nitrogen in poly(vinyl acetate) | solubility diffusion coefficient poly(vinyl acetate) | SY-51 | 723 | |
| Y107 | Estimation of PC-SAFT EoS parameters for Silica compouds | Group contribution method Neural Network Multiple regression analysis | SY-51 | 294 | |
| Y108 | Predicting the solubility of metal precursors in supercritical CO2 using PC-SAFT equation of state | supercritical carbon dioxide solubility PC-SAFT | SY-51 | 608 | |
| Y109 | Solubility and Diffusivity of 1-butene in Propylene-co-polymers | Crystallinity,Solubility Diffusivity Rubbery state | SY-51 | 676 | |
| Day 1 | F113 | [Invited lecture] Material processing in supercritical carbon dioxide phase and interface | material processing supercritical CO2 phase and interface | SY-78 | 78 |
| Day 1 | X117 | Effect of supercritical CO2 drying condition on properties of porous carbon nanofiber electrode and Li-O2 battery performance. | Supercritical CO2 drying Carbon nanofiber electrode Li-O2 battery | SY-74 | 273 |
| Day 1 | Y120 | Prediction of liquid-liquid equilibria using activity coefficient model with molecular information and machine learning | liquid-liquid equilibrium molecular information machine learning | SY-51 | 604 |
| Day 1 | X124 | CO2-driven phase transition of antibacterial molecular crystal in supercritical CO2 | supercritical CO2 antibacterial molecular crystal CO2-driven phase transition | SY-74 | 611 |
| Day 2 | Y208 | Molecular Design and Development of Phase-Separation Solvent for CO2 Capture Using COSMO-SAC Model | CO2 capture phase-separation solvent COSMO-SAC | SY-51 | 605 |
| Day 3 | Chair: | ||||
| (A307) | Panel discussion | ||||
| Day 3 | Chair: | ||||
| D315 | Design of thermo-responsive amine-containing microgel particles for efficient reversible CO2 capture at several CO2 partial pressures | CO2 separation Chemical absorption pKa | HQ-11 | 848 | |
| D316 | Evaluation of CO2 absorption and regeneration rate using phase-separated absorption solvent and design of CO2 separation and recovery device | CO2 absorption rate evaluation Device design | HQ-11 | 861 | |
| D317 | Thermodynamic model for predicting regeneration energy in the CO2 absorption method with amine absorbents | CO2 capture Thermodynamic model | HQ-11 | 266 | |
| D318 | Thermodynamic Study on Non Aqueous CO2 Absorbents using 13C-NMR | CO2 capture 13C-NMR thermodynamics | HQ-11 | 477 | |
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SCEJ 51st Autumn Meeting (2020)
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