Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Chemical reaction engineering | |||||
(10:40–11:52) (Chair: Tsutomu Ono, Hideo Nagata) | |||||
K06 | Preparation of cellulose nanofiber by microchannel wet-spinning process | Microchannel wet-spinning process Jet flow CNF | 5-f | 110 | |
K07 | Synthesis of aluminum nitride coating from triethylaluminum | CVD Aluminum nitride Triethylaluminum | 5-h | 40 | |
K08 | Reaction kinetics of hexafluoroethane hydrolysis reaction over ¦Ã-Alumina catalyst | Hexafluoroethane Hydrolysis reaction ¦Ã-Alumina | 5-a | 46 | |
K09 | Difference in corrosion rate of aluminum by strong acid and strong base | Aluminum strong acid strong base | 1-e | 42 | |
K10 | Synthesis of 2-chloropropane by catalytic hydrogenation of 2-chloropropene | 2-chloropropene 2-chloropropane hydrogenation | 5-a | 8 | |
K11 | Performance and sulfur poisoning resistance of Birdcage-type silicalite catalyst encapsulated platinum nanoparticles for dry reforming of methane | Dry reforming of methane Sulfur poisoning Birdcage type Pt catalyst | 5-a | 92 | |
Chemical reaction engineering, Wide area | |||||
(13:00–14:24) (Chair: Yuichi Ichihashi, Uddin Md Azhar) | |||||
K12 | Development of Fe-Ce based catalyst for the decomposition of tar produced by gasification of woody biomass | biomass gasification Fe-Ce catalyst | 5-g | 130 | |
K13 | Effect of Ce introduction into Bi-Mo composite oxide catalysts for acrolein synthesis | acrolein Bi-Mo catalytic oxidation | 5-a | 10 | |
K14 | Development of metal-modified alumina catalysts with catalyst degradation resistance against catalytic dehydrogenation of isobutane | dehydrogenation isobutane Ni/Al2O3 | 5-a | 29 | |
K15 | Study of operating conditions of PEFC at high-temperature and high-pressure | PEFC relative humidity hugh-temperature high-pressure operation | 5-a | 49 | |
K16 | Investigation of aldehyde selectivity in electrolytic oxidation of various alcohols | Electoroorganic synthesis Potential difference Selectivity | 5-i | 90 | |
K17 | The most suitable conditions for silver mirror reaction | silver mirror reaction a copper ion most suitable | 14-c | 126 | |
K18 | Reaction of caramelization and hydrogen peroxide | Caramelization hydrogen peroxide | 14-e | 88 | |
Chemical reaction engineering | |||||
(14:35–15:59) (Chair: Keita Taniya, Takaichi Watanabe) | |||||
K19 | Development of electrochemical reactor to synthesize hydrogen peroxide | hydrogen peroxide electrochemistry electrolysis | 5-e | 120 | |
K20 | Study in Catalytic Performance and Degradation Behavior of FER-type Zeolite for Methanol to Dimethyl Ether Reaction | FER-type Zeolite Alkaline treatment Methanol to dimethyl ether reaction | 5-a | 91 | |
K21 | Visualization of color reaction between salicylic acid and iron chloride(III) aqueous solution using spectrophotometer | salicylic acid iron chloride · color reaction | 5-i | 64 | |
K22 | Photocatalytic oxidation of Water to Hydrogen peroxide over Organic Semiconductor | Photocatalyst Organic smiconductor Hydrogen peroxide synthesis | 5-a | 66 | |
K23 | The propasal of simple measuring method of N3- by using brown ring reaction | brown ring reaction | 5-i | 70 | |
K24 | Modification of ZIF-8 Film on Outer Surface of Spherical SiO2 by Semi-batch Operation | ZIF-8 Latent heat transportation Silica microcapsule | 5-i | 67 | |
K25 | Chemiluminescence ~the difference of alcohol ~ | Chemiluminescence alcohol cosolvent | 5-i | 145 |