Hall A | |||||
---|---|---|---|---|---|
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Material/Interface (Student Award Oral) | |||||
(10:30–12:00) (Chair: Noda Suguru) | |||||
A101 | Preparation of microcapsules using spray blend mixer | microcapsules spray blend mixer emulsion | 12-f | 94 | |
A102 | Study on crystal structure transformation of the nanosize iron oxide | Iron oxide Crystal structure Nano particle | 12-c | 30 | |
A103 | Artificial Photosynthesis Using Microcapsules with Zinc Porphrin and Enzyme | microcapsule zinc porphyrin photosynthesis | 12-f | 43 | |
A104 | Determination of solidification condition of organic silica exhibiting pronounced water-repellency | organic silica water-repellency thermal decomposition | 12-a | 12 | |
A105 | Production of K-alum crystals by semi-bath cooling crystallization | Semibatch cooling K-alum Mono-disperse crystals | 12-g | 3 | |
A106 | Fabrication of CNT-based sensor device functionalized by membrane protein complex | Carbon nanotube peptide aptamer protein complex | 12-i | 64 | |
Lunch break | |||||
(12:50–14:05) (Chair: Shono Atsushi) | |||||
A111 | Surface modification of SiO2 nanoparticles by polyethyleneimine-oleic acid complex and their composite formation through wet processing | Composites Nanoparticles Dispersion | 12-a | 55 | |
A112 | Formation condition of micropore in alkylated organic silica by pyrolytic decomposition of non-polar groups | organic silica pyrolytic decomposition micropore | 12-a | 13 | |
A113 | Zeolite coating on the magnetic nanoparticles | Zeolite Magnetite Nano particle | 12-c | 32 | |
A114 | Effect of amphiphilic dispersing solvent in surface hydrophobization of hydrophilic inorganic nanoparticles (Nat. Inst. Tech. or Nippon Inst. Tech. or NITech,Fukushima) *Igarashi T., | nanoparticle surfacce hydrophobization dispersibility | 12-c | 18 | |
A115 | Development of the measurement of supersaturations used on a batch cooling operation | Batch Cooling Crystallization Supersaturation K-alum | 12-g | 4 | |
Break | |||||
(14:15–15:30) (Chair: Kimata M.) | |||||
A117 | Fabrication and evaluation of amphiphobic nanocellulose film | Nanocellulose Amphiphobic surface Characterization | 12-j | 25 | |
A118 | Control of stop-band wavelength of gel-immobilized colloidal photonic crystals by compression | Colloidal Crystals Photonic Crystals Tunable Properties | 12-m | 95 | |
A119 | Preparation of non-spherical inorganic microspheres in a W/O/W emulsion | silica emulsion non-spherical | 12-k | 79 | |
A120 | Heat treatment condition to form micropores precisely template from phenyl groups in a matrix formed of siloxane bonds | phenylated silica pyrolytic decomposition micropore formation | 12-a | 11 | |
A121 | Fabrication of Micrometer-Sized, Monodispersed Polymer Particles (NIT or Nippon Inst. Tech. or NITech,Fukushima) *Obinata S., | Soap-free Emulsion Polymerization Monodispersed Particles Micrometer-Sized Particles | 12-c | 7 | |
Banquet | |||||
Get-together | |||||
Hall B | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Environment (Student Award Oral) | |||||
(10:30–12:00) (Chair: Kaminoyama Meguru) | |||||
B101 | Water purification technology for emerging countries | water purification process emerging countries nitrification | 13-a | 33 | |
B102 | The breeding process of the biocathode in microbial fuel cell | Microbial fuel cell Biocathode Wastewater treatment | 13-b | 39 | |
B103 | Assessment of temperature and coexisting elements for plactical application of a removal process of boron using Ettringite | Ettringite Boron Hot spring water | 13-b | 72 | |
B104 | Heterogeneous reaction of SO2 with Ca dissolved in aqueous solutions of organic acids | Desulfurization Organic Acid Raman Spectroscopy | 13-f | 82 | |
B105 | Investigation of optimum heating conditions for cobalt recovery from spent lithium-ion battery | Lithium-ion battery Recycling Physical separation | 13-e | 48 | |
B106 | Evaluation of biofilm formation in anammox bacteria using suspended particle method | Nitrogen treatment anammox Suspended particle method | 13-b | 19 | |
Lunch break | |||||
(12:50–14:05) (Chair: Matsuda Hiroyuki) | |||||
B111 | Efects of initial dye and microbial concentration on aerobic decolorization rate of azo dye | azo dye Acid Orange 7 activated sludge | 7-a | 75 | |
B112 | High-rate denitrification of wastewater containing high nitrate using denitrifying biofilm. | Denitrification waste water biofilm | 13-b | 21 | |
B113 | Treatment of nitrate contaminated groundwater by a MFC equipped with denitrifying biocathode | Microbial Fuel Cells Denitrification Groundwater | 13-a | 83 | |
B114 | Effect of molecular structure of azo dye on the biological decolorization rate | azo dye biologial decolorization | 13-b | 41 | |
B115 | Improvement of mutual separation of Pt(IV)/Fe(III) from HCl solution by solvent extraction | platinum solvent extraction amine-type extractant | 4-f | 23 | |
Break | |||||
(14:15–15:30) (Chair: Yoshimi Yasuo) | |||||
B117 | Nitrification of wastewater containig low ammonia under low temperature. | nitrification low temperature low concentrations of ammonia | 13-b | 34 | |
B118 | Power generation by microbial fuel cell with packed bed cathode | microbial fuel cell wastewater treatment biocathode | 13-b | 67 | |
B119 | Characteristics of phosphorus in a waste biomass during a gasification process | gasification phosphorus biomass | 13-e | 89 | |
B120 | Construction of Remediation Process of Bauxite Residue by Sulfuric Acid Leaching and Bipolar-membrane Electrodialysis | Bauxite Residue(Red Mud) Bipolar-membrane Electrodialysis in-situ remediation | 13-e | 50 | |
B121 | Effects of medium size and airflow rate on the treatment performance of aerated constructed wetlands treating dye-containing wastewater | wastewater treatment constructed wetland airflow rate | 13-b | 40 | |
Break | |||||
Special Lecture, The Researcher Invited Lecture, Student Award Ceremony | |||||
B123 | [Special Lecture] Activation of community and reduction of CO2 emission through cooperation among industry, government, academia and citizen | climate stabilization community activation industry-government-academia | 14-e | 118 | |
Break | |||||
B125 | [Invited Lecture] Systematic material design using biomolecules | organism molecule functional design system design | 7-a | 119 | |
Student awards ceremony | |||||
Hall C | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Energy (Student Award Oral) | |||||
(10:30–12:00) (Chair: Yamanaka S.) | |||||
C101 | Enhancement of mass transfer in vanadium redox flow battery by using porous materials | Porous material Vanadium redox flow battery Mass transfer | 9-e | 98 | |
C102 | Preparation of tungsten-carbon alloy catalysts for hydrogen evolution reaction | hydrogen evolution reaction carbon alloy tungsten carbide | 9-e | 78 | |
C103 | CuO nanowire@Co3O4 ultrathin nanosheet core/shell Array: An effective catalyst for water electrolysis | CuO@Co3O4 Water electrolysis Hydrogen production | 11-a | 26 | |
C104 | Catalyic activity of Pd nanoparticles supported on TiO2-CNF for formic acid oxidation | Direct formic acid fuell cell Carbon nanofiber Electrocatalyst | 9-e | 100 | |
C105 | Application of sulfonated carbon to anode and cathode catalyst layers of polymer electrolyte fuel cells | Polymer electrolyte fuel cell Sulfonated carbon Catalyst layer | 9-e | 81 | |
C106 | The effect of nitrogen concentration in TECNF for methanol oxidation reaction activity | Direct methanol Fuel cell Nitrogen doping Catalytic activity | 9-e | 99 | |
Lunch break | |||||
Reaction Engineering (Student Award Oral) | |||||
(12:50–14:05) (Chair: Seshimo Masahiro) | |||||
C111 | Influence of nitrogen and boron doping of the carbon support on a catalystic activity of nickel for benzene hydrogenation | hydrogenation nickel carbon | 5-a | 70 | |
C112 | Oxygen reduction activity of carbon alloy catalysts prepared with metal-phthalocyanines | carbon alloy oxygen reduction reaction | 11-a | 76 | |
C113 | Highly Efficient Suzuki-Miyaura Coupling Reaction with Ni-Zn Hydroxy Double Salt-Intercalated [Pd(OH)4]2- Complex Catalyst | Ni-Zn hydroxy double salt Anion exchange intercalation | 5-a | 17 | |
C114 | Hydrogen production via formic acid decomposition over molybdenum carbide catalyst | Formic acid Molybdenum carbide Hydrogen production | 5-a | 27 | |
C115 | Preparation and characterization of a film model carbon alloy catalyst: a detailed surface study | CARBON ALLOY PEFC film | 9-f | 92 | |
Break | |||||
(14:15–15:30) (Chair: Hara T.) | |||||
C117 | An explanation of the enhanced activity of carbon black for oxygen reduction reaction by doping of born and nitrogen | carbon alloy oxygen reduction reaction | 11-a | 88 | |
C118 | Membrane reactor for ammonia decomposition in the low temperature and high purity hydrogen recovery | Ammonia Palladium Membrane reactor | 5-d | 93 | |
C119 | Direct growth and structural control of graphene films on dielectric substrates by etching-precipitation method | graphene crystal growth dry-etching | 5-h | 46 | |
C120 | Removal of the Water Insoluble Odor Using Non-thermal Plasma | Corona Discharge Odor Plasma | 5-c | 1 | |
C121 | Preparation of Carbon-supported Ni-Ru catalyst for Methylcyclohexane Dehydrogenation | Dehydrogenation Catalyst Methylcyclohexane | 9-e | 85 | |
Hall D | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Seperation Process (Student Award Oral) | |||||
(10:30–12:00) (Chair: Sakai Mikio) | |||||
D101 | Separation of binary VOC vapor by ionic liquid membranes | ionic liquid liquid membrane volatile organic compounds | 4-a | 35 | |
D102 | Improvement of FAU-type zeolite membrane performance for dehydration (Waseda U. School of Adv. Sci. and Eng./Waseda Res. Inst. Science and Engineering/JST-CREST) Matsukata Masahiko, (Waseda U. School of Adv. Sci. and Eng.) *Nomura Ryunosuke, | FAU-type zeolite Membrane Dehydration | 4-a | 52 | |
D103 | Continuous enrichment of acetic acid aqueous solution by high- silica chabazite membrane | CHA zeolite membrane dehydration acetic acid | 4-a | 91 | |
D104 | Analysis of fouling mechanism in concentration of cheese whey by membrane distillation | Membrane distillation Whey Fouling mechanism | 4-a | 14 | |
D105 | Control of zeolitic pore size for silicalite-1 powder with carbon deposition | silicalite-1 membrane zeolite carbon deposition | 4-a | 51 | |
D106 | High-density Lattice-shaped Microchannel Networks for Continuous Separation of Microparticles | Particle Separation Lattice-shaped Microchannel Cell Sorting | 4-i | 96 | |
Lunch break | |||||
Particles/Fluids Process (Student Award Oral) | |||||
(13:05–14:05) (Chair: Honma S.) | |||||
D112 | Effect of fluid viscosity on power consumption and gas-liquid mass transfer in an aerated stirred vessel | gas-liquid mass transfer aerated stirred vessel fluid viscosity | 2-b | 36 | |
D113 | Lagrangian simulation of melting metal due to radiation heat flux | the MPS method heat transfer radiation heat flux | 2-a | 56 | |
D114 | Fabrication of monodisperse microbubbles using glass capillary microfluidic devices | Microbubble Microfluidics | 2-e | 42 | |
D115 | Study on mechanism of mixing promotion by aeration based on bubbles pass route and liquid flow state of plastic fluid in a stirred vessel | Plastic fluid Mixing with aeration Flow state | 2-b | 38 | |
Break | |||||
(14:15–15:00) (Chair: Honma S.) | |||||
D117 | Characteristics and Visualization of Atomization using Air-Assisted Atomizer | atomization Visualization spray | 2-e | 86 | |
D118 | Significant increase of specific surface area by simply adding water into the grinding product | nano-grinding water addition solubility | 2-f | 53 | |
D119 | Effects of impeller speed and vessel size on particle collisions with impeller blade in a solid-liquid stirred vessel | Solid-liquid mixing Particle collisions Scale-up | 2-b | 47 | |
Hall E | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Biochemical Engineering (Student Award Oral) | |||||
(10:30–12:00) (Chair: Yamauchi N.) | |||||
E101 | Development of protein refolding method using electric field | protein refolding electric field | 7-a | 74 | |
E102 | Mechanism identification of substrate inhibition of Sortase A mutants and improvement of mutations | enzyme substrate inhibition mutation | 7-a | 20 | |
E103 | Preparation of seamless microcapsules using electrospray | electrospray seamless microcapsule O/W emulsion | 12-f | 61 | |
E104 | Regulation of Mechanical and Thermal Properties of Agar Gel composited with Calcium Alginate | Agar gel Calcium alginate Mechanical properties | 12-l | 8 | |
E105 | Adsorption and desorption properties of proteins on carbon black | carbon proteins adsorption | 4-e | 87 | |
E106 | Correlation between the growth activity and the dielectric properties of animal cells exposed to various stress. | dielectrophoresis | 7-c | 65 | |
Lunch break | |||||
(12:50–14:05) (Chair: Shimada Y.) | |||||
E111 | Direct single-molecule observations of reaction processes between DNA and DNA metabolic enzymes | single-molecule observations Single-stranded DNA Micro-flow channel | 7-b | 71 | |
E112 | Bone regeneration promoting effect by CMC non-woven / Calcium phosphate composite sheets | carboxymethyl cellulose calcium phosphate bone regeneration | 7-e | 24 | |
E113 | Fabrication of Vascular Tissues by Using Silicone Channels Embedding Inorganic Salts | Vascular Alginate hydrogel PDMS | 7-e | 90 | |
E114 | Analysis of bacterium isolated from used soluble cutting oil and it's tolerance toward pulsed-discharge plasma treatment | pulsed-discharge plasma inactivation Bacillus barbaricus | 7-g | 97 | |
E115 | Development of immobilization technique for circular DNA | DNA immobilization circular DNA protein expression | 7-i | 66 | |
Break | |||||
Supercritical Fluids (Student Award Oral) | |||||
(14:15–15:15) (Chair: Shimoyama Y.) | |||||
E117 | Extraction of grape seed oil from grape seeds using supercritical carbon dioxide | grape seed oil Supercritical carbon dioxide entrainer | 8-c | 73 | |
E118 | Forming of polymers with using mixtures of CO2 and N2 as forming agent | CO2/N2 forming simulation | 8-e | 60 | |
E119 | Preparation of solid dispersions of poorly water-soluble drugs using the melting point depression by high-pressure carbon dioxide | solid dispersion amorphization Carbon dioxide | 8-e | 63 | |
E120 | Estimation of Melting Point Depression of Organic Compounds by High-Pressure Carbon Dioxide | Carbon dioxide Melting Point Depression Drug | 8-b | 45 |