Last modified: 2023-12-13 19:10:32
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
5. Chemical reaction engineering | |||||
(9:00–10:40) (Chair: | |||||
F201 | Effects of flow channel shapes on performance of polymer electrolyte fuel cell | polymer electrolyte fuel cell flow channel mass transfer | 5-e | 658 | |
F202 | Dynamic analysis method of fuel cell reaction distribution by fuel cell system simulator | Fuel cell system simulation distribution | 5-e | 649 | |
F203 | [Featured presentation] Heat Transfer and Energy-saving Performance Verification Results of High Performance Batch Reactor System | heat transfer energy saving | 5-e | 484 | |
F204 | Examination on Performance Improvement in High-Temperature Abatement for Nitrous Oxide | Nitrous Oxide Reductant DeNOx | 5-e | 372 | |
F205 | Effective production of cello-oligosaccharides using a vibratory disc mill and clay reagents | cellulose biorefinery mechanochemical reaction clays | 5-g | 44 | |
(10:40–11:40) (Chair: | |||||
F206 | Elucidation of novel protection mechanism for lipid oxidation using insoluble antioxidant material | insoluble antioxidant oxidation protection lipid oxidation | 5-i | 424 | |
F207 | Hybrid modelling of active pharmaceutical ingredient flow synthesis in ring-opening reaction of an epoxide with a Grignard reagent | Flow chemistry Machine learning Random forest regression | 5-i | 167 | |
F208 | Selective oxidation of glycerol under ambient temperature using cold atmospheric pressure plasma irradiation | Cold atmospheric pressure plasma Reactive oxygen species Selective oxidation | 5-c | 282 | |
(13:00–13:20) (Chair: | |||||
F213 | [The SCEJ Award for Outstanding Young Researcher] Metal-Support Interactions Established by Flame Synthesis for Novel Materials | The SCEJ Award for Outstanding Young Researcher | 0-c | 773 | |
(13:20–15:00) (Chair: | |||||
F214 | Effect of slug length on mass transfer rate in slug flow extraction. | slug flow slug length maximization of the mass transfer rate | 5-f | 184 | |
F215 | Investigation of reaction and separation field using water/organic biphasic slug flow for furfural synthesis | slug flow furfural reaction and separation | 5-f | 708 | |
F216 | Reaction Rate Analyses for Syntheses of Flavan Oligomers with Microreactors | Reaction Rate Analyses Flavan Oligomers Microreactors | 5-f | 37 | |
F217 | Kinetic analysis of amidation using automated flow reactor and inline near-infrared spectroscopy | near-infrared spectroscopy automated flow reactor inline monitoring | 5-f | 131 | |
F218 | Kinetic analysis of oxidation of As(III) in water using a fixed-bed distribution reactor | platinum catalyst arsenic removal kinetic analysis | 5-a | 87 | |
(15:00–16:00) (Chair: | |||||
F219 | Density Functional Theory-Based Microkinetics for the CO2 Methanation Reaction over Flat and Stepped Ni and Ru Surfaces | DFT calculation Microkinetics Methanation catalyst | 5-a | 275 | |
F220 | Self-starting and -processing CO2 methanation by powerful Ru/CeO2 structured catalyst | CO2 methanation Structured catalyst Catalytic Reaction Engineering | 5-a | 283 | |
F221 | Carbon capturing process from CO2 in cement clinker burning using structured catalyst reaction | cement clinker burning multi-catalytic reaction solid carbon | 5-a | 10 | |
(16:00–17:00) (Chair: | |||||
F222 | Development of carbon synthesis technology from H2 and CO2 | CO2 utilization carbon synthesis hydrogen | 5-a | 15 | |
F223 | CO2 resource recovery process for small-scale distributed system | CO2 reduction methanol hydrogen | 5-a | 592 | |
F224 | Effect of a dopant to 60 wt% Ni-CeO2 for CO2 methanation activity | Flame spray pyrolysis Ni catalyst CO2 methanation | 5-a | 222 |
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SCEJ 88th Annual Meeting (Tokyo, 2023)