Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Chemical reaction engineering | |||||
(9:30–10:30) (Chair: No data , No data ) | |||||
D01 | Acid site introduction to Birdcage type zeolite capsulizing Rh ultrafine particles and methanol conversion reaction activity | MFI zeolite Rh Methanol conversion | 5-a | 88 | |
D02 | Kinetic analysis of TiAlN synthesis for cutting tools using thermal CVD | CVD TiAlN cutting tool | 5-h | 70 | |
D03 | Hydrodeoxygenation of erythritol over Pt/C catalyst with high metal loading prepared from ion exchange resin | erythritol Pt/C hydrodeoxygenation | 5-a | 73 | |
D04 | Analysis of initial stage of AlN buffer growth for high quality GaN layer on Si substrates | GaN on Si AlN buffer MOVPE | 5-h | 94 | |
D05 | Preparation of Co-Fe-Mo complex oxide support with high Fe dispersion aimed at high activation of allylic oxidation reaction | allylic oxidation reaction catalyst preparation Co-Fe-Mo complex oxide | 5-a | 72 | |
Break | |||||
Chemical reaction engineering | |||||
(10:40–11:40) (Chair: No data , No data ) | |||||
D07 | Photocatalytic degradation of phenol using TiO2 powder | Photocatalyst TiO$2$ Phenol | 5-c | 64 | |
D08 | Effects of operating conditions on methane fermentation of chicken droppings | methane fermentation chicken droppings biomass | 5-g | 52 | |
D09 | Investigation on degradation of gaseous contaminant using visible-light driven photocatalyst | photocatalytic degradation gaseous contaminant visible-light | 5-a | 60 | |
D10 | Photocatalytic decomposition of azo dye using microreactor and its effects on H2O2 addition. (Nat. Inst. Tech. or Nippon Inst. Tech. or NITech.N) *Nakamura Minato, | Photocatalyst Microreactor Dye | 5-f | 50 | |
D11 | Measurement of the photocatalytic activity for the black TiO2 photocatalyst prepared by the laser-ablation techniques and its mechanistic study (Nat. Inst. Tech. or Nippon Inst. Tech. or NITechN) *Murayama Rin, | titanium dioxide laser visible light responsive photocatalyst | 5-c | 58 | |
Lunch break | |||||
Fundamental properties | |||||
(12:40–13:52) (Chair: No data , No data ) | |||||
D17 | Effect of co-solvent addition on the glass transition temperature depression of PLGA under high pressure carbon dioxide | Glass Transition Poly(D,L-lactide-co-glycolide) Menthol | 1-b | 91 | |
D18 | The measurement and correlation of solubility of SO2 in polyethylene glycol | sulfur dioxide vapor-liquid equilibrium Wilson equation | 1-a | 74 | |
D19 | Droplet swelling and extraction mechanism from phase behavior during supercritical fluid extraction of emulsion | supercritical fluid extraction of emulsion droplet swelling extraction mechanism | 1-e | 49 | |
D20 | The Phase diagram of the Measurement of the Melting Point of the Alloy of Bismuth and Tin | alloy Low melting Piont Bismuth | 1-b | 44 | |
D21 | Measurement of bubble point pressure for dimethyl ether + 1-hexanol and dimethyl ether + cyclohexanol systems | bubble point pressure dimethyl ether correlation | 1-a | 43 | |
D22 | Clarification of the shapes of titration curves of polyprotic acid ⇆ monoprotic base and proposal of new technical terms | titration equivalence point polyprotic acid | 1-e | 20 | |
Break | |||||
Fundamental properties | |||||
(14:00–15:00) (Chair: No data , No data ) | |||||
D24 | Study on the properties of tin oxide coating | photolysis effect hydrophilicity tin oxide coating | 1-b | 28 | |
D25 | Density, viscosity, CO2 solubility of phosphonium-based ionic liquid having ether chain | density viscosity CO2 solubility | 1-a | 54 | |
D26 | Reserch of concentrated sulfuric acid | Electrolysis Concentrated sulfuric acid Dilute sulfuric acid | 1-e | 127 | |
D27 | Development of the Property Evaluation Method for Nanoparticles by the Taylor Dispersion Method | nanoparticles diffusion coefficient Taylor dispersion method | 1-e | 108 | |
D28 | Stable generation of copper mirror | copper mirror ascorbic acid | 1-e | 25 | |
Break |