Last modified: 2025-01-18 14:10:04
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Hall I, Day 1 | |||||
(13:00–13:40) | |||||
I113 | Development of lipid extraction method by solidification | liquid solid transition Lipid Extraction | 4-f | 7 | |
I114 | Novel Rare Metal Recovery Method from Saprolite Ore Using a Hydrophobic Deep Eutectic Solvent | Deep eutectic solvent Nickel Saprolite Ore | 4-f | 223 | |
(13:40–14:40) | |||||
I115 | Machine learning to develop extraction solvent for Ga(III) and separation of Ga(III) and In(III) by multi-stage solvation extraction | Solvation Extraction Gallium Indium | 4-f | 325 | |
I116 | Thermodynamic analysis of interfacial turbulence in extraction operations | Interfacial Turbulence Maximum Entropy Production Principle Marangoni effect | 4-f | 402 | |
I117 | Lipid Extraction Method for Microalgae Using Liquefied Ammonia as a Solvent | Microalgae Ammonia Extraction | 4-f | 438 | |
(15:00–16:00) | |||||
I119 | Hydrogen permselectivity on the novel ceramic substrates | Hydrogen permselective membrane BN plasma treatment | 4-a | 3 | |
I120 | Exploring the limits of gas separations in single-stage membrane processes | membrane gas separations separation limits modeling | 4-a | 145 | |
I121 | Preparation of carbon molecular sieve membranes using wood tar as a precursor | wood tar carbon molecular sieve membrane gas separation | 4-a | 674 | |
(16:00–17:00) | |||||
I122 | Mechanism of CO2 Separation at the Filler Interface of Mixed Matrix Membranes | CO2 separation Non-equilibrium Molecular Dynamics Zeolitic Imidazolate Framework | 4-a | 625 | |
I123 | Experimental demonstration of membrane separation method in CO2 capture system | Membrane separation Carbon dioxide capture | 4-a | 440 | |
I124 | Fabrication of water vapor/gas selective membranes using TEMPO-oxidized cellulose nanofibers | Cellulose nanofiber Vapor permeation Steam recovery | 4-a | 217 | |
Hall I, Day 2 | |||||
(15:20–16:20) | |||||
I220 | Depth filters of PLLA prepared with NMP | depth filter PLLA NMP | 4-b | 556 | |
I221 | Oxidation reaction of NO in gas and aqueous phase by hydrogen peroxide and NO removal using gas absorber packed with glass fiber filter | Nitrogen monoxide Hydrogen peroxide Gas absorber packed with glass fiber filter | 4-d | 411 | |
I222 | Humidification performance of perfluorosulfonic acid capillary membranes modules | Perfluorosulfonic acid membrane Humidification Membrane module | 4-a | 278 | |
(16:20–17:00) | |||||
I223 | Development of neutral molecule extra-high-removal reverse osmosis(RO) membranes to enable the ultrapure water production from recycled wastewater | Membrane separation Reverse osmosis Neutral molecule removal | 4-a | 181 | |
I224 | Spray coating of Zirconium-based MOF Membranes for Organic Solvent Nanofiltration | Metal-organic framework UiO-66 MOF membrane | 4-a | 230 | |
Hall I, Day 3 | |||||
(9:00–9:40) | |||||
I301 | Correlation of flooding phenomenon in tray column | flooding tray column correlation | 4-c | 566 | |
I302 | Easy method measuring plate efficiency of trayed distillation column | Trayed distillation column Plate efficiency Measuring method | 4-c | 4 | |
(9:40–10:20) | |||||
I303 | Demonstration of steam reduction in a pilot-scale distillation column using a heat pump. | Distillation Heat pump Energy-saving | 4-c | 171 | |
I304 | Ammonium recovery from supernatant of digestive fluid for nitrogen-circulating society | Concentration Forward osmosis nitrogen-circulation | 4-a | 584 | |
(10:40–11:20) | |||||
I306 | Fabrication of MOF/GO membrane for efficient separation of rare metal ions | Graphene oxide MOF Strontium removal | 4-a | 492 | |
I307 | Ionic MOF-based supported liquid membrane for gold extraction | Gold recovery semiconductor wastewater UiO-66-DMOAP, supported liquid membrane, selective extraction | 4-a | 659 | |
(11:20–12:00) | |||||
I308 | Development of microporous carbon-SiO2-ZrO2 ceramic composite membrane with excellent hydrothermal stability for molecular separation | carbon-contained ceramic membranes hydrothermal stable molecular separation | 4-a | 249 | |
I309 | Estimation of mass transfer coefficients using the analytical solutions for breakthrough curves with LDF approximation | Breakthrough curve LDF approximation | 4-e | 657 | |
(13:20–14:00) | |||||
I314 | Fundamental study on removal of degraded substances for recycling used lubricating oil | Adsorbent Degraded oil Used oil | 4-e | 571 | |
I315 | Control of pore structure by plasma surface modification of organosilica membranes with different pendant groups | Plasma silica membrane pervaporation | 4-a | 231 | |
(14:00–14:40) | |||||
I316 | Formation and improved molecular selectivity of ordered polyamide network channels using self-aggregation behavior of porphyrins | polyamide membrane ordered network channel molecular separation | 4-a | 515 | |
I317 | Intercalation modifications of graphene oxide nanofiltration membranes | nanochannel membranes nanofiltration | 4-a | 158 | |
(15:00–16:00) | |||||
I319 | Flocculation kinetics of positively charged colloidal particles induced by various type of flocculants studied in the standardized colloid mixing | Initial flocculation rate Standardized colloid mixing (SCM) Flocculant; Latex particle | 4-b | 401 | |
I320 | High-precision separation of such nanomaterials as nanoparticle and protein by combining nanofiber membrane with electric field filter | filtration electric field nanofiber | 4-a | 693 | |
I321 | Optimizing high-performance polyester nanomembranes for antibiotic desalination | nanofiltration membranes interfacial polymerization antibiotic desalination | 4-a | 316 | |
(16:00–17:00) | |||||
I322 | Effect of co-solvent for interfacial polymerization on physical and chemical properties of polyamide membrane | polyamide membrane interfacial polymerization | 4-a | 510 | |
I323 | Hydrophobic Modification of Polyketone Membranes Using Chitin for Water-in-Oil Emulsion Separation | Water-in-oil emulsion Hydrophobic membrane Fouling resistance | 4-a | 520 | |
I324 | Thermodynamic investigations on the relationship between the hydration structures around poly(2-methoxyethyl acrylate) and poly(2-hydroxyethyl methacrylate) and their antifouling properties | fouling membrane molecular dynamics | 4-a | 713 |
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SCEJ 90th Annual Meeting (Tokyo, 2025)