Day 1 | |||||
---|---|---|---|---|---|
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Biochemical engineering, Fundamental properties | |||||
(10:00–11:00) (Chair: Yamada Ryosuke) | |||||
B104 | Effective production of 1,3-PDO using genetically engineered cyanobacteria by controlling light supply | cyanobacteria 1,3-PDO Air-lift bioreactor | 7-a | 7 | |
B105 | Repeated batch culture for xylitol production by co-culture of flocculating yeast and Candida magnoliae | xylitol co-culture repeated batch culture | 7-a | 8 | |
B106 | Efficient production of L-lactic acid from corncobs using thermotolerant Bacillus smithii by simultaneous saccharification and fermentation | biomass corn cob lactic acid | 7-a | 9 | |
(11:00–12:00) (Chair: Matsumoto Takuya) | |||||
B107 | Enhanced continuous production of glycerol using halotolerant microalgae Dunaliella tertiolecta | Dunaliella tertiolecta Carbon dioxide Continuous production | 7-a | 10 | |
B108 | Effective production of VHH antibody fragment using recombinant Escherichia coli by DO-stat fed-batch culture | VHH E.coli DO-stat fed-batch | 7-a | 13 | |
B109 | Stabilization of single-chain variable fragment production using recombinant E coli by supplementing amino acids | E coli fed-batch DO-stat | 7-a | 14 | |
(13:00–14:00) (Chair: Yasuda Masahiro) | |||||
B113 | Optimization of substrate feeding rate in single-chain variable fragments (scFvs) production using recombinant E.coli by DO-stat fed-batch culture | DO-stat fed-batch culture E. coli | 7-a | 17 | |
B114 | Synthesis of alanyl-alanine using organic solvent-stable PST-01 protease | dipeptid alanine enzyme | 7-a | 19 | |
B115 | Identification of genes responsible for reducing or absorbing platinum Ion in Escherichia coli | reduction adsorption precious metal | 7-a | 20 | |
(14:00–14:40) (Chair: Yoshimoto Makoto) | |||||
B116 | Localization of metabolic enzyme in yeast mitochondria for producing 3-hydroxypropionic acid | yeast mitochondria 3-hydroxypropionic acid | 7-a | 21 | |
B117 | Metabolic engineering for producing bioalkane by Escherichia coli | bioalkane #Escherichia coli# metabolic engineering | 7-a | 22 | |
(15:00–16:00) (Chair: Horiuchi Jun-ichi) | |||||
B119 | Preparation of liposomes immobilized with papain and their application to protein digestion reactions | papain liposomes protein digestion | 7-c | 23 | |
B120 | 3D cultivation of fibroblast cell using polymer particle having hydrophilic graft chain | Polymer particle Amphiphilic graft polymer chain Adhesive cell | 7-e | 39 | |
B121 | Improvement of carotenoid production in yeast by novel mutagenesis strategy | Saccharomyces cerevisiae ¦Â-carotene mutagenesis strategy | 7-a | 45 | |
(16:00–16:40) (Chair: Kumada Yoichi) | |||||
B122 | Improvement of microalgae growth by co-culturing with Bacillus subtilis | microalgae Bacillus subtilis co-cultivation | 7-a | 46 | |
B123 | Application of replica-exchange method in molecular dynamics analysis of nematic phase transition of 5CB liquid crystal (Graduate School of Eng. Sci., Osaka U.) *Takemoto Kengo, (Graduate School of Information Sci., U. Hyogo) Ishii Yoshiki, | Liquid Crystal phase transition replica exchange | 1-a | 86 | |
Day 2 | |||||
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Separation processes | |||||
(10:00–11:00) (Chair: Kumakiri Izumi) | |||||
B204 | Fuel production by thermal separation of scum discharged from steelworks | Scum Heat treatment Oil/water separation | 4-b | 49 | |
B205 | Study for continuous NO oxidation for flue gas | Nitrogen monoxide Continuous oxidation High silica zeolite | 4-e | 38 | |
B206 | Study on adsorption removal of nitrogen monoxide in exhausted gas | Y-type zeolite Nitrogen monoxide Adsorption | 4-e | 40 | |
(11:00–12:00) (Chair: Yamamoto Takuji) | |||||
B207 | Adsorption removal of low concentration nitrogen oxides | Zeolite Nitrogen dioxide Adsorption removal | 4-e | 43 | |
B208 | Effect of functional group of polymer particle on protein adsorption | Polymer particle Protein adsorption Hydrophobic functional group | 4-e | 44 | |
B209 | Analysis of acid dissolution of metal and absorption of generated gas | Metal dissolution Nitrogen dioxide Gas Absorption | 4-d | 48 | |
(13:00–14:00) (Chair: Nagasawa Hiroki) | |||||
B213 | Effect of carbon membrane synthesis conditions on dehydration performance | Carbon composite membrane Pervaporation Hollow silica | 4-a | 32 | |
B214 | Influence of operating conditions on the degree of collapse in vial freeze-drying process | freeze-drying collapse | 4-h | 52 | |
B215 | Development of porous polymer membranes based on phase separation and elucidation of the mechanism of porosity | polymer membrane phase field | 4-a | 54 | |
(14:00–14:40) (Chair: Nakagawa Kyuya) | |||||
B216 | Preparation of wood-tar based carbon membranes on different porous supports and their gas permeation property | Porous carbon support Carbon molecular sieve membrane Wood tar | 4-a | 59 | |
B217 | Surface modification of zeolite particles used for fillers in polymeric membranes | sililation of zeolite particles characterization interfacial contact | 4-a | 63 | |
(15:00–16:00) (Chair: Shirakawa Yoshiyuki) | |||||
B219 | Preparation of carbon moleculear sieve membranes prepared from polyamideimide and their gas permeation property | Carbon molecular sieve membrane polyamideimide gas separation | 4-a | 64 | |
B220 | Ultra-thin film formation of ZIF-8 MOF using amorphization of metal complexes | metal-organic framework amorphization crystallization | 4-a | 65 | |
B221 | Tailoring of organosilica membrane for steam/non-condensable gas separation at moderate-to-high temperature | membrane steam organosilica | 4-a | 73 | |
(16:00–17:00) (Chair: Okita Erika) | |||||
B222 | Separation characteristics of proteins using a new macroporous resin in ion-exchange chromatography | Macroporous resin Mass transfer Dynamic Binding Capacity | 4-e | 15 | |
B223 | Effect of Pt-Zeolite membrane microstructure on the degradation rate of dissolved organics in water | zeolite platinum water treatment | 4-a | 16 | |
B224 | Influence of operation conditions on the oxidation property of Ag-TiO2 membranes | Silver-TiO2 Photocatalytic membrane Dissolved organics | 4-a | 26 |