Day 1 | |||||
---|---|---|---|---|---|
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Session organized by Industry <Unit Operation, Unforgettable - Useful Stirring Technology> | |||||
(13:00–13:30) (Chair: Yamamori Y.) | |||||
E113 | [Requested talk] Recent Review of Mixing Technology Research and Actual Application Examples of Mixing Technology Development | vapor-liquid mixing visualization simulation | S-1 | 75 | |
(13:30–14:00) (Chair: Ikari K.) | |||||
E114 | [Requested talk] Role of Agitation, Mixing for Crystallization Process | crystallization mixing crystal growth | S-1 | 76 | |
(14:00–14:30) (Chair: Murakami N.) | |||||
E115 | [Requested talk] Agitating Technology of Stirred Tank Reactor (Mainly in Polymerization Reactor) | mixing reaction polymer | S-1 | 77 | |
The SCEJ Awards presentation <The SCEJ Award for Outstanding Technological Development> | |||||
E117 | The SCEJ Award for Outstanding Technological Development and The SCEJ Award for Outstanding Young Engineer | 0-d | 914 | ||
E118 | [The SCEJ Award for Outstanding Technological Development] The development and commercialization of new power mixer by DEM simulation | 0-d | 913 | ||
E119 | [The SCEJ Award for Outstanding Technological Development] JPE's Dry DeSOx/DeNOx process,ReACT(Regenerative Activated Coke Technology) | 0-d | 912 | ||
Session organized by Industry <Creation of New Idea with Co-operation between Industry, Academia and Government> | |||||
(15:20–16:50) (Chair: Nishioka M.) | |||||
E121 | [Invited lecture] Application Development of a Chemical Process by Microwave Energy | nano particle microwave plasma in liquid | S-3 | 95 | |
E122 | [Invited lecture] Collaboration of a New Bioreactor for Mammalian Cell Culture | bio mammalian cell ventilated mixing culture | S-3 | 94 | |
E123 | [Invited lecture] Development of a System for Biofuel Production through Industry-Academia Collaboration | bio technology bio fuel fermentation | S-3 | 96 | |
Day 2 | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Materials engineering & interfacial phenomena | |||||
(9:00–10:00) (Chair: Umakoshi H.) | |||||
E201 | Effect of Mixed Organic Corrosion Inhibitor to Prevent Galvanic Corrosion of Aluminum | corrosion inhibitor galvanic corrosion adsorption | 12-a | 48 | |
E202 | Control of orientation of functional groups in amphiphilic polymer during dip-coating to prepare anti-fouling surfaces | surface functionalization anti-fouling coating | 12-a | 225 | |
E203 | Kinetic study and modeling of capillary condensation in mesoporous silica | capillary condensation mesoporous silica pore size distribution | 12-a | 285 | |
Break | |||||
(10:20–11:00) (Chair: Yabuki A.) | |||||
E205 | Formation of bone-like apatite on modified-Ti surface in the presence of protein | surface-modifed titanium apatite protein | 12-m | 600 | |
E206 | Characterization of supported phospholipid bilayers formed onto a porous alumina substrate | supported phospholipid bilayer porous alumina immobilization | 12-a | 724 | |
(11:00–12:00) (Chair: Maruyama T.) | |||||
E207 | Evaluation of Amino Acid Polymerization at the Liposome Membrane in Aqueous Phase | Membranome Amino Acid Polymerization Liposome | 12-a | 788 | |
E208 | Characterization of Micro-Membrane Properties and Its Application for Partitioning and Conversion of Hydrophobic Molecules | Membranome Micro-Membrane Properties Molecular Conversion | 12-a | 796 | |
E209 | Mechanism of chiral recognition at the interface of liposome membrane and its application | membranome chiral recognition amino acid | 12-a | 805 | |
(16:00–17:20) (Chair: Shono A.) | |||||
E222 | Encapsulation of various materials into hydrophobic resin particles with high efficiency using superamphiphobic substrates | capsule high encapsulation efficiency superamphiphobic substrate | 12-f | 261 | |
E223 | Low-temperature curing latent catalyst development by microencapsulation of aluminum complexes | aluminum complex microcapsule curing catalyst | 12-f | 274 | |
E224 | Fundamental properties and self-healing ability of microcapsule which gives material self-repair function | self-healing microencapsulation TDCB test | 12-f | 547 | |
E225 | The role of nuclei for the formation of silver nanoparticles in hydrothermal process | silver nanoparticles cluster aggregation | 12-d | 881 | |
Day 3 | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Materials engineering & interfacial phenomena | |||||
(9:00–10:00) (Chair: Yamaguchi T.) | |||||
E301 | Manufacture of enzyme immobilization carrier with enzyme modification function in organic media | Enzyme Immobilization Polymer brush | 12-j | 333 | |
E302 | Solid electrolyte function of a polyethylene porous membrane filled with Side-Chain Crystalline Block co-polymer by using its crystalline supramolecular interaction | Filling Membrane Side-Chain Crystalline Block Co-Polymer Supramolecular Interaction | 12-j | 708 | |
E303 | Kinetics study of CO2 capture-release process by thermal responsive microgel particles | microgel particles CO2 capture release film | 12-j | 858 | |
(10:00–11:00) (Chair: Hoshino Y.) | |||||
E304 | New immobilization method of enzyme on microchannel surface | immobilized enzyme microchannel enzymatic reaction | 12-j | 862 | |
E305 | Fabrication of Red Blood Cell-like micro gel beads | Red blood cell Micro gel beans Coffee stain phenomenon | 12-m | 595 | |
E306 | Transient morphology of a rapidly gelling calcium alginate solution to spherical geometry. | transient morphology rapidly gelling solution spherical geometry | 12-e | 240 | |
(11:00–11:40) (Chair: Ohashi H.) | |||||
E307 | Preparation of Metal Oxide Nanoparticle/Hydrogel Composite Material and its Characterization | hydrogel nanoparticle composite material | 12-e | 757 | |
E308 | Relationship Between Protein Recognition of Synthetic Nanogel and Refolding of Denatured Ptoein | NIPAm nanogel protein refolding | 12-e | 825 | |
(11:40–12:00) (Chair: Yoshida M.) | |||||
E309 | [The SCEJ Award for Outstanding Young Researcher] Development of Novel Functional Hydrogels for Bioengineering and Biomedical Applications | 12-e | 622 | ||
(13:00–14:00) (Chair: Ono T.) | |||||
E313 | The effect of counter ion on soap-free emulsion polymerization | Soap-free emulsion polymerization particle size counter ion | 12-c | 54 | |
E314 | Organic silica coating of hydrophilic nanoparticles surface in amphiphilic solvent | organic alkylated silica amphiphilic solvent hydrophilic surface | 12-c | 342 | |
E315 | Microreactor flow synthesis of ZIF-8 particles with controlled size and adsorption properties | Microreactor Zeolitic imidazolate framework-8 Particle size and shape control | 12-c | 351 | |
(14:00–15:00) (Chair: Kanamori T.) | |||||
E316 | Preparation of a novel nanoparticles with framework consisting of disulfide bond | silica disulfide bond functional nanoparticle | 12-c | 746 | |
E317 | Synthesis of LiMn2O4 Nanoparticles by RF Thermal Plasma | Thermal plasma Li-based nanoparticle Metal oxide nanoparticle | 12-c | 538 | |
E318 | Gas-phase generation of moble metal-NiO nanorod hybrid nanoparticles. | hybrid nanoparticles oxidation induced phase separtion laser ablation | 12-d | 68 | |
(15:00–16:00) (Chair: Tamaki T.) | |||||
E319 | Development of catalyst for steam reforming of methane by applying partial reduction | steam reforming catalyst partial reduction | 12-d | 151 | |
E320 | Visible light-Induced Activation of Molecular Oxygen on Platinum Nanoparticles Supported on Tantalum Oxides | photocatalysis platinum nanoparticles visible light | 12-d | 312 | |
E321 | Effect of zigzag and armchair site of polycyclic aromatic hydrocarbon on soot formation | Soot Polycyclic aromatic hydrocarbon particle size distribution | 12-d | 617 | |
(16:00–17:00) (Chair: Shioi A.) | |||||
E322 | Synthesis of MFI-type Zeolites with Controlled Pore Structure Using Intercalated Octosilicate Precursors | silicalite-1 TS-1 intercalation | 12-i | 603 | |
E323 | Synthesis and magnetic properties of FePt nanocomposite magnets via self-assembled block copolymer templates (Toyota Central R&D Laboratories) *Wakayama Hiroaki, | self-assembly block copolymer nanocomposite | 12-i | 639 | |
E324 | Development of Carbon-free Catalyst Layer using Porous PtFe Nanocapsule for Polymer Electrolyte Fuel Cells (Kanagawa Academy of Sci. and Tech./Tokyo Tech) *Kuroki Hidenori, | Nanocapsule Catalyst Polymer Electrolyte Fuel Cell | 12-i | 722 |