Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
J(¸áÁ°) | |||||
(10:00–11:00) (Chair: Yasuda Masahiro, Masakoto Kanezashi) | |||||
J01 | Preparation and characterization of gas separation membranes used Allylhydridopolycarbosilane(AHPCS) | Silicon carbide Gas separation AHPCS | 4-a | 109 | |
J02 | Evaluation of subnano pore size distribution of microporous membranes by gas diffusion method | Gas separation membrane Pore size distribution NKP method | 4-a | 89 | |
J03 | Network tuning and gas permeation property of fluorine-silica membrane derived from Triethoxyfluorosilane(TEFS) | Sol-gel Fluorine-silica gas permeation | 4-a | 69 | |
J04 | Effect of operating conditions on the dehydration performance of MOR-zeolite membranes | zeolite membrane dehydration pervaporation | 4-a | 165 | |
J05 | Application of hydrophilic zeolite membrane for concentrating fermentation products | zeolite membrane fermentation pervaporation | 4-a | 166 | |
(11:00–12:00) (Chair: Yoshioka Tomohisa, Sano Noriaki) | |||||
J06 | eparation of organic vapors by ionic liquid-functionalized silica membrane | ionic liquid membrane separation organic vapor separation | 4-a | 179 | |
J07 | Alkaline absorption of carbondioxde in the presence of polymer particle having cations | Carbondioxde Alkaline absorption Green house effect | 4-d | 75 | |
J08 | Preparation of ion gel for CO2 separation membrane | Ionic liquid Ion gel CO2 separation | 4-a | 110 | |
J09 | Gas permeation properties and pore size controllability of BTESP (bis(triethoxysilyl)propane) membrane | sol-gel gas separation organosilica membrane | 4-a | 66 | |
J10 | Influence of preparation conditions on the high-temperature CO2 capture performance of Ba2TiO4 | CO2 capture adsorbent Ba2TiO4 | 4-d | 172 | |
Lunch break | |||||
J(¸á¸å) | |||||
(13:00–14:12) (Chair: Hiroki Nagasawa, Kumakiri Izumi) | |||||
J16 | Particle Separation by Dielectrophoresis Using Nano-Structured Electrode | dielectrophoresis nano particle particle separation | 4-b | 146 | |
J17 | Behavior of Nitrogen in Carrier Added Activated Sludge Process | Nitrification Activated sludge process Carrier | 4-b | 91 | |
J18 | Treatment of nickel in waste water using humus | nickel adsorption humus | 4-b | 90 | |
J19 | Hypochlorite degradation of tirtiary amide RO membrane | Reverse osmosis membrane chlorine resistant tertiary amide | 4-a | 175 | |
J20 | Effect of aeration on the filtration characteristics of hollow fiber microfiltration membranes | filtration characteristics hollow fiber aeration | 4-b | 92 | |
J21 | Development of thermo-responsive polymers having a glycerol backbone and application to forward osmosis process | forward osmosis draw solute thermo-responsive polymer | 4-a | 76 | |
(14:12–15:24) (Chair: Inada Asuka, Kawasaki Kenji) | |||||
J22 | Fabrication of nano-filtration membrane via layer-by-layer method and effect of polymer structures on water permeability | Nano-filtration membrane Layer-by-Layer assembly electrostatic interaction | 4-a | 142 | |
J23 | Mass transfer behavior in thermoresponsive polymer membrane (Nat. Col. Tech., Nara College) *Kashiwazaki Hiromu, | thermoresponsive membrane polymer | 4-a | 158 | |
J24 | Reverse osmosis and nanofiltration in organic solution using microporous ceramic membranes | ceramic membrane reverse osmosis organic solution | 4-a | 80 | |
J25 | One-step fabrication of polyamide 6 hollow fiber membranes for organic solvent filtration | TIPS Hollow fiber membrane Organic solvent filtration | 4-a | 106 | |
J26 | Fabrication of Stacked Metal Oxide Nanosheet / Graphene Oxide Membranes and Effects of composite ratio on the Membrane Performance | Separation membrane Nanosheet Graphene oxide | 4-a | 88 | |
J27 | Preparation of silica membrane by atmospheric pressure plasma interfacial polymerization | atmospheric pressure plasma interfacial polymerization silica membrane low-temperature sintering | 4-a | 84 |