Day 1 | |||||
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Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
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(10:00–12:00) (Chair: No data , Nobuko Hanada) | |||||
B101 | Investigation of anode catalyst for hydrogen production by liquid ammonia electrolysis | liquid ammonia electrolysis hydrogen production | 9-e | 87 | |
B102 | Preparation and electrochemical evaluation of solid oxide fuel cells with hetero-junction of mixed ionic-electronic conductors | SOFC hetero-junction mixed ionic-electronic conductor | 9-e | 70 | |
B103 | Investigation of methanol aqueous-phase reforming behavior using double cylinder type flow reactor | superheated liquid-film conditions Pt catalyst methanol reforming | 5-a | 78 | |
B104 | Ammonia synthesis by pressure swing of N2-H2-H2O plasma | Ammonia Plasma pressure swing | 3-b | 72 | |
B105 | Catalytic activities of Ni-supported hydroxyapatite for decomposition of biomass tar at low temperature | hydroxyapatite biomass tar Ni-supported catalyst | 9-c | 55 | |
B106 | Development of a methylcyclohexane dehydrogenation reactor using a double tube reactor | Methylcyclohexane dehydrogenation Ptcatalyst | 9-e | 61 | |
B107 | Simulation study on heat supply and hydrogen absorption/desorption by hydrogen flow to metal hydride | Magnesium hydride Hydrogen storage Heat transfer | 9-e | 92 | |
B108 | Alkali metal compound addition effect on calcium hydroxide as a chemical heat storage material | Calcium Hydroxide Alkali compound Chemical heat storage | 9-b | 38 | |
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(13:15–15:00) (Chair: Atsushi Shono, Yuichi Ohira) | |||||
B114 | Preparation and functional evaluation of three-dimensional tissue using rat hepatocytes and collagen microparticles | hepatocytes collagen tissue engineering | 7-a | 52 | |
B115 | Bone tissue engineering using bone beads and 3D printer (Faculty of Eng., Yokohama Nat. U.) *Akieda Hikaru, | Bone tissue engineering 3D printing mesenchymal stem cell | 7-e | 89 | |
B116 | Effect and high activation of ultrasonic irradiation in lipid modification reaction by lipase | Lipase Ultrasound Lipid modification | 7-i | 60 | |
B117 | Co-culture of Intestinal Epithelial Cells and Encapsulated Bacteria for In Vitro Intestinal Model (Graduate School of Eng. Sci., Yokohama Nat. U.) *Qin D., (raduate School of Eng. Sci., Yokohama Nat. U.) Usui T., | Calcium alginate Drug screening Intestinal bacteria | 7-e | 86 | |
B118 | Fragmentation of lignin polyphenols | Lignin sulfonic acid Thermophillic bacteria Polyphenol | 7-a | 71 | |
B119 | Maturation of iPS cell-derived cardiomyocytes on oxygen-permeable spheroids plate | iPS-CMs cardiomyocytes spheroids | 7-e | 94 | |
B120 | Effect of coexistent microorganisms on heterotrophic culture of blue-green algae Spirulina platensis | Spirulina Heterotrophic culture Alkaliphile | 7-h | 32 | |
Day 2 | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
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(10:15–11:00) (Chair: Kazuho Nakamura, Ryuta Misumi) | |||||
B202 | Fabrication of titania particle assemblies and their photocatalytic activities for continuous water purification process | Photocatalyst Particle assembly Water purification | 12-d | 34 | |
B203 | Comparison of Ammonium removal ability of marine Anammox bacteria under the different salinity environment | Anammox Nitrogen removal salinity | 13-b | 4 | |
B204 | Trial of the collection and concentration of the loach mucus | Loach mucus | 13-e | 5 | |
Symposium <Chemical Engineering for Next Era in Hardly Decomposable Plastics> | |||||
(11:15–12:30) (Chair: Minoru Takeda, Tadashi Nittami) | |||||
B206 | The role of plastics in sustainable society | plastic recycle sustainability | S-2 | 10 | |
B208 | Development of KANEKA Biodegradable Polymer PHBH | biodegradable polyhydroxyalkanoate marine | S-2 | 80 | |
12:15-12:30 | B209 | Adsorptions is one of the important factors for algal-growth inhibitions by microplastics | Microplastics Pseudokirchneriella subcapitata adsorption | S-2 | 81 |
12:15-12:30 | B210 | An Approach for Developing a Detection Method of Microplastic fibers flowing into Wastewater Treatment Plants | Microplastic Fibers Wastewater treatment plant Detection Method | S-2 | 83 |