Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Separation processes | |||||
(9:30–10:30) (Chair: IkuoTaniguchi, Naohiro Shimoda) | |||||
J01 | Development of UCST-type thermo-responsive ionic liquids as draw solutes in forward osmosis process | Forward osmosis Ionic liquid UCST | 4-a | 13 | |
J02 | Preparation of fluorine-containing polyamide membrane using interfacial polymerization and evaluation of water and organic solvent permeability | Polyamide membrane Hydrophobicity Organic solvent | 4-a | 15 | |
J03 | Elucidation of separation and permeation mechanism in zeolite membrane and design of high performance membrane by Molecular dynamics simulation | Zeolite Moleular dynamics simulation Hydrocarbon | 4-a | 18 | |
J04 | Preparation of hollow-fiber membrane modules for CO2 capture and the gas separation properties | amine CO2 capture membrane module | 4-a | 5 | |
J05 | Introduction of commercial NaA zeolite powders into porous SUS tube for Pd thin membrane | Pd thin membrane Commercial NaA zeolite Hydrogen separation | 4-a | 16 | |
Separation processes | |||||
(10:40–11:52) (Chair: Koreyoshi Imamura, Eiji Kamio) | |||||
J06 | Preparation of solely amorphous sugar based solid dispersion of water-insoluble flavors | solid dispersion sugar flavor | 4-h | 123 | |
J07 | Monitoring of atmospheric freeze-drying process by heat flux measurement of sublimation | atmospheric freeze-drying sublimation monitoring | 4-h | 139 | |
J08 | Fabrication of inorganic/organic double network ion gels with high ionic liquid content | CO2 separation membrane Ionic liquids tough gels | 4-a | 20 | |
J09 | Fabrication of inorganic/organic double network ion gels using cross-linkable polymer | ionic liquid gel cross-linkable polymer | 4-a | 23 | |
J10 | Challenge for negative carbon emission with amine-containing polymeric membranes | CO2 capture membrane negative emission | 4-a | 4 | |
J11 | Fabrication of laminar graphene oxide membranes using amine-type crosslinkers for organic solvent nanofiltration | Graphene oxide membrane Crosslinking Organic solvent nanofiltration | 4-a | 14 | |
Separation processes | |||||
(13:00–14:24) (Chair: Kenji Kawasaki, Takuji Yamamoto) | |||||
J12 | behavior of nitrogen in carrier added activated sludge process | activated sludge process carrier nitrogen concentration | 4-b | 80 | |
J13 | Water absorption of nitorogen monoxide using glass filter type gas absorber in the presence of ozone and hydrogen peroxide | Glass fiber filter type gas absorber Nitorogen monoaxide Water absorption | 4-d | 142 | |
J14 | Introduction of Ion Exchange Group into Cellulose and its Application | cellulose ion exchange esterification | 4-e | 105 | |
J15 | Mechanizm of nitrogen monoxide adsorption to Y-type zeolite | Nitrogen monoxide Adsorption mechanism Zeolite | 4-e | 129 | |
J16 | Nitrogen monoxide adsorption to ion exchanged Y-type zeolite | Ion exchanged Y-type zeolite Nitrogen monoxide Adsorption | 4-e | 134 | |
J17 | Adsorption Characterization of Spherical Ion-Exchange Gel Prepared from Resorcinol and Formaldehyde | resorcinol-formaldehyde resin ion exchange | 12-e | 12 | |
J18 | The development of a simple method for extractingtheobromine | theobromin extraction sublimation | 4-f | 127 | |
Fundamental properties, Separation processes, Energy engineering | |||||
(14:35–15:47) (Chair: Kensuke Kurahashi, Gen Inoue) | |||||
J19 | Extraction of Eu using SIR impregnated with only surfactant | Solvent impregnated resin Surfactant Rare earth element | 4-f | 124 | |
J20 | Removal of mercury from coal gasification gas with Ce-Zn oxide | removal of mercury coal gasification gas Ce-Zn oxide | 13-i | 132 | |
J21 | Control of pyrolysis of waste plastics by coprocessing with iron ore | Coprocessing Waste plastics Iron ore | 9-c | 89 | |
J22 | High-efficiency power generation utilizing reduction reactions by low-grade carbonaceous resources | low-rank coal redox reaction power generation | 9-c | 128 | |
J23 | aaa | a a a | 1-a | 2 | |
J24 | Estimation of structural properties of electrode layer by simulation, observation and machine learning | 電池 機械学習 画像処理 | 11-a | 153 |