Last modified: 2018-02-27 10:00:00
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
5. Chemical reaction engineering | |||||
(13:00–14:40) (Chair: | |||||
K113 | Oxidation behavior of Cu(0) species on Cu-Zn-Al2O3 catalysts and catalytic activity for water-gas shift reaction | Oxidation behavior of Cu(0) species Water-gas shift reaction Cu-ZnO-Al2O3 | 5-a | 247 | |
K114 | The effect of oxidation methods on methane reforming | methane reforming catalyst oxidation method | 5-a | 500 | |
K115 | Positive effect of Ni-based structured catalyst on auto-thermal dry reforming of methane | Auto-thermal reforming Structured catalyst Electroless plating | 5-a | 274 | |
K116 | Mg1-xNixAl2O4 Spinel-Type Mixed Oxide Catalysts for CO2 Reforming of Methane | Magnesium aluminate spinel Nickel catalyst CO2 reforming | 5-a | 388 | |
K117 | The effects of addition of hydroxyapatite on ammonia decomposition activity on solid catalysts | ammonia decomposition hydrogen solid catalyst | 5-a | 702 | |
(15:00–16:40) (Chair: | |||||
K119 | Effect of boron and phosphor promoters on NiMo-based catalyst for hydrodeoxygenation of palm oil | Vegetable oil Hydrodeoxygenation NiMo catalyst, Boron | 5-a | 276 | |
K120 | Investigation on Reductants and Overlapping Layout for CO2 Reduction Performance Improvement of Cu/TiO2 Photocatalyst | Photocatalyst CO2 Reduction Performance Reductants | 5-c | 36 | |
K121 | CuO-ZrO2 catalysts prepared by flame spray pyrolysis for CO2-to-methanol hydrogenation | Methanol synthesis Copper Frame spray pyrolysis | 5-a | 38 | |
K122 | Investigation of the surface morphology on copper electrodes for the electrochemical reduction of carbon dioxide | CO2 reduction Copper electrode Surface morphology | 14-e | 588 | |
K123 | Hydrogenation process development of squalene using a fixed bed reactor | continuous manufacturing fixed bed reactor hydrogenation | 5-a | 9 |
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SCEJ 83rd Annual Meeting (Osaka, 2018)