Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
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Day 1 10:00– 11:40 | Chair: Konishi Masaaki, Watanabe Nozomi |
PB149 | Engineering acyl-ACP reductase with fusion tags enhances alka(e)ne synthesis in Escherichia coli
(Osaka Metro. U.) *(Stu)Han Jiahu, (Reg)Matsumoto Takuya, (Reg)Yamada Ryosuke, (Reg)Ogino Hiroyasu | Bio-alka(e)ne Acyl-ACP reductase Fusion tags
| SY-67 | 186 |
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PB150 | Site-specific antibody modification using an antibody-binding protein fusion enzyme
(Kyushu U.) *(Stu)Nishioka R., Iida R., Minamihata K., Sato R., Kimura M., (Reg)Kamiya N. | Antibody-drug conjugate Biopharmaceutics Enzymatic conjugation
| SY-67 | 555 |
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PB151 | Uptake of heterologous polysaccharides into antigen-presenting cells
(Doshisha U.) *(Stu)Iwata Yasunori, Yamanaka Daiki, (Kyoto U.) Akiyoshi Kazunari, (Doshisha U.) (Reg)Matsumoto Michiaki, (Reg)Tahara Yoshiro | Drug Delivery System
| SY-67 | 230 |
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PB152 | Fabricating bioluminescent biosensors using an antibody binding protein with whole antibodies
(Tokyo Tech) *(Reg)Yasuda Takanobu, (Reg)Zhu Bo, (Reg)Ueda Hiroshi, (Reg)Kitaguchi Tetsuya | Antibody Antibody binding protein Bioluminescence
| SY-67 | 653 |
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PB153 | Construction of a nanopore using the transmembrane domain of the cell surface protein AtaA
(Nagoya U.) *(Stu)Hwang Taehyun, (Reg)Yoshimoto Shogo, (Stu)Sasahara Jun, (TUAT) Kawano Ryuji, (Nagoya U.) (Reg)Hori Katsutoshi | Nanopore sensing Trimeric Autotransporter Adhesin Protein sequencer
| SY-67 | 618 |
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PB154 | Conversion of choline-responsive proteins into As(III) sensors using protein engineering
(Chiba U.) *(Stu)Yamaguchi Ryo, Yamamoto Tetsuaki, (Kanagawa Inst. Tech.) Kamiya Katsumasa, (Waseda U.) Umeno Daisuke, (Chiba U.) Kawai-Noma Shigeko | As Cysteine microbial sensor
| SY-67 | 768 |
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PB155 | Aggregation of low molecular weight compounds inhibit DNase I
(Kobe U.) *(Stu)Habe S., Shimizu N., (Kobe U.) Moriwaki T., Aoi T., (Fujita Health U.) Ikeda M., (Kobe U.) (Reg)Morita K., (Reg)Maruyama T. | Molecular aggregation Self-assembly Inhibitor
| SY-67 | 81 |
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PB156 | Stability and enzyme activity of trypsin covalently immobilized onto the surface of polymer-modified lipid membranes
(Yamaguchi U.) *(Stu)Wakabayashi Mikiya, Takahashi Yuya, (Reg)Yoshimoto Makoto | immobilized trypsin lipid membranes enzyme activity
| SY-67 | 743 |
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PB157 | Effect of point mutation at CDR4 antigen-binding affinity of VHH
(Kyoto Inst. Tech.) *(Stu)Numata Tatsunori, (Stu)Mihara Akihiro, (Stu)Tabata Mei, (Reg)Horiuchi Jun-ichi, (Reg)Kumada Yoichi | VHH CDR4 point-mutation
| SY-67 | 803 |
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PB158 | Design of Proteinaceous Higher-Order Structures with CutA1 as a Scaffold at Nanobio Interfaces
(Okayama U.) *(Stu)Kawakami Tatsuma, (Reg)Imamura Koreyoshi, (Reg)Imanaka Hiroyuki | nano-biointerface CutA1 scaffold
| SY-67 | 995 |
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PB159 | Basic study on fibrous protein polymerization reaction for artificial fiber formation
(Kyushu U.) *(Stu)Nagatani Ayasa, Minamihata Kosuke, (Nagahama Inst. Bio-Sci. and Tech.) (Reg)Ishikawa Masahito, (Nagoya U.) (Reg)Yoshimoto Shogo, (Reg)Hori Katsutoshi, (Kyushu U.) (Reg)Kamiya Noriho | Protein protein fiber protein polymer
| SY-67 | 586 |
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PB160 | Analysis of the molecular mechanism for the mechanical stability of the trimeric adhesive protein AtaA by molecular dynamics simulation
(Nagoya U.) *(Stu)Sasahara J., (Reg)Yoshimoto S., (Kansai U.) Fujimoto K., (Nagoya U.) (Reg)Hori K. | Trimeric Autotransporter Adhesin Mechanostability Molecular Dynamics Simulation
| SY-67 | 631 |
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PB161 | Preparation of an oxygen-generating hydrogel and its functional evaluation
(Kyushu U.) *(Stu)Li Tengchang, (Reg)Mizumoto Hiroshi, (Reg)Kajiwara Toshihisa | tissue engineering hydrogel oxygen supply
| SY-67 | 591 |
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PB162 | Extensive lysine methylation of the outer membrane protein AtaA in Acinetobacter sp. Tol 5
(Nagoya U.) *(Stu)Inoue Shori, Oka Hiroya, (Reg)Yoshimoto Shogo, (Reg)Hori Katsutoshi | Post-translational modification Outer membrane protein Adhesion
| SY-67 | 721 |
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PB163 | Construction of a machine-learning model to predict optimal mevalonate pathway gene expression levels for efficient production of carotenoids in yeast
(Osaka Metro. U.) *(Stu)Shimazaki Shun, (Reg)Yamada Ryosuke, Yamamoto Yoshiki, (Reg)Matsumoto Takuya, (Reg)Ogino Hiroyasu | Carotenoid Machine-learning Metabolic engineering
| SY-67 | 143 |
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PB164 | Effect of photosynthetic bacteria on production of paclitaxel by cultured yew cells.
(Sojo U.) *(Stu)Nishikawa Waka, (Reg)Yamamoto Shinjiro, Miyasaka Hitoshi, Hayashi Shuhei | Paclitaxel Taxus cuspidate photosynthetic bacteria
| SY-67 | 256 |
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PB165 | Improvement of hyaluronic acid production by culture medium optimization using deep learning
(Kitami Inst. Tech.) *(Stu)Watanabe Kazuki, Kawai Yoshizumi, Chiou Tai-Ying, (Reg)Konishi Masaaki | Streptococcus zooepidemicus Hyaluronic acid Deep learning
| SY-67 | 407 |
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PB166 | Assessment of soil environment using DGGE for soil microbial community structure analysis
(Kanazawa U.) *(Stu)Kitaichi Yuichiro, (Reg)Takiguchi Noboru, (Reg)Kumita Mikio | plastic DGGE soil environment
| SY-67 | 498 |
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PB167 | Acetate ester production using Yarrowia lipolytica
(Kobe U.) *(Stu)Koshiba Ayumi, (Reg)Kondo Akihiko, (Reg)Tanaka Tsutomu | Yarrowia lipolytica Metabolic Engineering
| SY-67 | 519 |
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PB168 | Development of technology for the bioproduction of aromatic compounds from C1-C2 compounds
(RIKEN) *(Reg)Fujiwara Ryosuke, Shirai Tomokazu, (Reg)Kondo Akihiko | Metabolic engineering Bioproduction Methylorubrum extorquens
| SY-67 | 809 |
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PB169 | Cost-effective production of D-lactic acid from biomass by simultaneous saccharification and fermentation using genetically engineered lactic acid bacteria
(Kyoto Inst. Tech.) *(Stu·PCEF)Kubo Sayuri, (Reg)Kumada Yoichi, (Reg)Horiuchi Jun-ichi, (Osaka U.) (Reg)Okano Kenji, (Kobe U.) (Reg)Kondo Akihiko, (Reg)Tanaka Tsutomu | D-lactic acid Corncobs simultaneous saccharification and fermentation
| SY-67 | 790 |
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PB170 | Examination of light-shielding materials available for nitrifying bacteria-immobilized light-shielding hydrogel to mitigate photoinhibition
(Soka U.) *(Stu)Kubo Yuhi, Aramoto Kiriko, (Reg)Nishi Kento, (Reg)Matsuyama Tatsushi, (Reg)Ida Junichi | Nitrifying bacteria Light-shielding material Photoinhibition
| SY-67 | 536 |
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PB171 | Metallosupramolecular gels based on complex formation between short chain peptides and copper ions.
(U. Miyazaki) *(Stu)Motomura Aki, (Reg)Inada Asuka, (Reg)Oshima Tatsuya | short peptide metal complex Metallosupramolecular gels
| SY-67 | 130 |
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PB172 | Retention and elution properties of PEGylated cyclic peptides in chromatography
(Yamaguchi U.) *(Stu)Hamanaka Seiji, (Reg)Yoshimoto Noriko | ion exchange chromatography PEGylation cyclic peptide
| SY-67 | 729 |
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PB173 | Development of insect- and single cell-based meat with controlled texture through enzymatic cross-linking, ionic cross-linking and 3D printing
(Osaka U.) *(Stu)Ohara Hiromasa, (Reg)Horiguchi Ikki, (Reg)Kojima Masaru, (Reg)Sakai Shinji | Food printing Single cell-based meat Enzymatic cross-linking
| SY-67 | 312 |
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PB174 | Bacteria-induced radical polymerization for the synthesis of artificial extracellular polymeric substances
(Nagoya U.) *(Stu)Sugiura Kento, (Reg)Ito Akira, (Reg)Kaneko Masahiro | Radical polymerization Engineered Living Material Redox reactions
| SY-67 | 564 |
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PB175 | Preparation of hydrogels containing chitosan-oleic acid complex particles and evaluation of their in vitro digestion behavior
(Tokyo City U.) *(Stu)Kikuchihara Tsukasa, (Reg)Kuroiwa Takashi | Polyelectrolyte complex Hydrogel In vitro digestion
| SY-67 | 510 |
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PB176 | Quantitative evaluation of the effect of sterol species on the cation permeability of lipid membranes containing amphotericin B
(Shinshu U.) *(Stu)Ito K., (Reg)Saeki D., Okumura Y. | Amphotericin B Ion permeability Liposome
| SY-67 | 609 |
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PB177 | Development of electrochemical aptasensor using membrane pores as a molecular reaction space
(Tokyo Tech) *(Stu)Tabata Erika, (Reg)Okuyama Hiroto, (Reg)Yamaguchi Takeo | Biosensor Electochemical aptasensor Aptamer
| SY-67 | 952 |
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PB178 | Development of multiplex detection method for miRNAs using gold nanoparticle size as label
(UTokyo) *(Stu)Nara Y., (Reg)Nakamura N., (Reg)Ohta S. | gold nanoparticles size nucleic acid
| SY-67 | 434 |
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PB179 | Preparation of microparticles incorporating curcumin using cacao butter and evaluation of their dispersibility and cell absorption
(U. Miyazaki) *(Stu)Taniguchi Arisa, (Reg)Oshima Tatsuya, (Reg)Inada Asuka | cacao butter curcumin
| SY-67 | 100 |
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PB180 | Antibacterial Activity of Cationic Polymer Particles with Different Hydrophobicity
(Tohoku U.) *(Stu·PCEF)Nagasawa Akira, Fujishima Kensuke, (Reg)Suga Keishi, (Reg)Watanabe Kanako, (Reg)Nagao Daisuke | Polymer particles Surface polarity Antibacterial materials
| SY-67 | 221 |
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PB181 | Evaluation of multi focal properties of lipids bilayer systems from τ vs λ plot by Global-TRES of Twin Probes: Laurdan and Prodan
(Osaka U.) *(Stu)Ito Natsuumi, (Reg)Watanabe Nozomi, (Reg)Okamoto Yukihiro, (Reg)Umakoshi Hiroshi | Global-TRES Solvent modeling Multi focal properties of lipids bilayer systems
| SY-67 | 447 |
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PB182 | Improvement of cell growth of green algae by co-cultivation with yeast
(Osaka Metro. U.) *(Stu)Karitani Yukino, (Reg)Yamada Ryosuke, (Reg)Matsumoto Takuya, (Reg)Ogino Hiroyasu | Green algae Yeast Co-culture
| SY-67 | 367 |
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PB183 | Analyzing the effect of amino acid composition on the growth of lactic acid bacteria by deep neural networks
(Kitami Inst. Tech./Hokkaido Sugar) *(Stu)Kobayashi Yoshimi, (Kitami Inst. Tech.) Chiou Tai-Ying, (Reg)Konishi Masaaki | Lactic Acid Bacteria Deep Neural Network Amino Acid
| SY-67 | 681 |
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PB184 | Engineering of Schizosaccharomyces pombe for methyl anthranilate production
(Kobe U.) *(Stu)Matsumoto Chiho, (Reg)Kondo Akihiko, (Reg)Tanaka Tsutomu | Schizosaccharomyces pombe Metabolic Engineering
| SY-67 | 525 |
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PB185 | Efficient xylitol production by repeated batch culture using coprecipitation with flocculent yeast
(Kyoto Inst. Tech.) *(Stu)Yamawaki Taiki, (Reg)Kumada Yoichi, (Reg)Horiuchi Jun-ichi | xylitol-producing yeast flocculent yeast co-cultivation
| SY-67 | 841 |
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PB186 | Stabilization of antibody fragment production using recombinant Escherichia coli based on DO-stat fed-batch culture
(Kyoto Inst. Tech.) *(Stu·PCEF)Yamaguchi Daisuke, (Reg)Kumada Yoichi, (Reg)Horiuchi Jun-ichi | #E.coli# DO-stat fed-batch Plasmid stability
| SY-67 | 791 |
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PB187 | Effect of chitosan-casein complex layer on the crystallization behavior in O/W emulsions containing solid fats
(Tokyo City U.) *(Stu)Furuta Akimi, (Reg)Kuroiwa Takashi | palm oil fat crystallization polyelectrolyte complex
| SY-67 | 858 |
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PB188 | Development of Biosensor using submicron-sized membrane pore for signal amplification
(Tokyo Tech) *(Stu)Fujita Kana, (Reg)Okuyama Hiroto, (Reg)Yamaguchi Takeo | Biosensor point-of-care testing signal amplification
| SY-67 | 1000 |
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PB189 | Separation of nanoparticles based on their size and surface charge by two-dimensional electrophoresis for multiplex detection of biomarkers
(UTokyo) *(Stu)Yamagishi T., (Reg)Nakamura N., (UTokyo/JST PRESTO) (Reg)Ohta S. | gold nanoparticles two-dimensional electrophoresis multiple biomarkers
| SY-67 | 455 |
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PB190 | Engineering of Corynebacterium glutamicum for phloroglucinol production
(Kobe U.) *(Stu)Horita Mayo, (Reg)Kondo Akihiko, (Reg)Tanaka Tsutomu | Corynebacterium glutamicum Metabolic Engineering
| SY-67 | 530 |
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PB191 | Effective production of glycerol using genetically engineered cyanobacteria employing photobioreactor with external circulation loop
(Kyoto Inst. Tech.) *(Stu)Yo Seien, (Reg)Horiuchi Jun-ichi, (Reg)Kumada Yoichi, (Kyushu U.) Hirokawa Yasutaka, Hanai Taizo, (Kobe U.) Murakami Akio, Ogura Sinya, Hasi Ryota, Takeda Mayuko | Genetically engineered cyanobacteria External circulation loop Glycerol
| SY-67 | 1006 |
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PB192 | Emulsification characteristics of microchannel homogenizer for production of double emulsions containing vegetable oil
(Tokyo City U.) *(Stu)Tamai Chiaki, (Reg)Kuroiwa Takashi | water-in-oil-in-water emulsion asymmetric microchannel array encapsulation
| SY-67 | 794 |
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PB193 | Development of X-ray induced fluorescence excitation mechanism mediated by gold nanoparticles toward photodymamic thrapy in deep tissues
(UTokyo) *(Stu)Nagata W., (Reg)Nakamura N., (UTokyo/JST PRESTO) (Reg)Ohta S. | gold nanoparticles electron X-ray
| SY-67 | 456 |
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PB194 | Production of nonnatural nitroaromatic compouds by Escherichia coli with N-oxygenase
(Kobe U.) *(Stu)Mori Ayana, (Reg)Kondo Akihiko, (Reg)Tanaka Tsutomu | Nitroaromatic compound Metabolic Enginerring Escherichia coli
| SY-67 | 552 |
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PB195 | Properties of gelatin membranes entrapping chitosan-oleic acid complex particles and their application for incorporation of a lipophilic bioactive compound
(Tokyo City U.) *(Stu)Nishida Ibuki, Shiratori Suguru, (Reg)Kuroiwa Takashi | polyelectrolyte complex curcumin mechanical property
| SY-67 | 870 |
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PB196 | Metabolic engineering of Escherichia coli for efficient valuable chemical production from glucose and xylose
(Kobe U.) *(Stu)Nonaka Daisuke, (RIKEN) (Reg)Fujiwara Ryosuke, (Kobe U.) (Reg)Kondo Akihiko, (Reg)Tanaka Tsutomu | Metabolic Engineering Parallel Metabolic Pathway Engineering Escherichia coli
| SY-67 | 569 |
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Day 1 10:30– 10:40 | PB165 | Improvement of hyaluronic acid production by culture medium optimization using deep learning
(Kitami Inst. Tech.) *(Stu)Watanabe Kazuki, Kawai Yoshizumi, Chiou Tai-Ying, (Reg)Konishi Masaaki | Streptococcus zooepidemicus Hyaluronic acid Deep learning
| SY-67 | 407 |
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Day 1 11:00– 11:10 | PB183 | Analyzing the effect of amino acid composition on the growth of lactic acid bacteria by deep neural networks
(Kitami Inst. Tech./Hokkaido Sugar) *(Stu)Kobayashi Yoshimi, (Kitami Inst. Tech.) Chiou Tai-Ying, (Reg)Konishi Masaaki | Lactic Acid Bacteria Deep Neural Network Amino Acid
| SY-67 | 681 |
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Day 1 15:00– 16:20 | PB165 | Improvement of hyaluronic acid production by culture medium optimization using deep learning
(Kitami Inst. Tech.) *(Stu)Watanabe Kazuki, Kawai Yoshizumi, Chiou Tai-Ying, (Reg)Konishi Masaaki | Streptococcus zooepidemicus Hyaluronic acid Deep learning
| SY-67 | 407 |
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Day 1 15:00– 16:20 | PB183 | Analyzing the effect of amino acid composition on the growth of lactic acid bacteria by deep neural networks
(Kitami Inst. Tech./Hokkaido Sugar) *(Stu)Kobayashi Yoshimi, (Kitami Inst. Tech.) Chiou Tai-Ying, (Reg)Konishi Masaaki | Lactic Acid Bacteria Deep Neural Network Amino Acid
| SY-67 | 681 |
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Day 3 10:40– 11:00 | T306 | [Featured presentation] New proposal for the design of microbial media by profiling of media components (Kitami Inst. Tech.) (Reg)Konishi Masaaki | midium profiling design
| SY-71 | 233 |
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Day 3 11:00– 11:20 | Chair: Konishi Masaaki |
T307 | Optogenetic metabolic flux control and its application
(Osaka U.) *(Reg)Toya Yoshihiro, Akagi Hayato, Sakurai Shota, Kawanishi Suwa, Tsukamoto Masashi, (Reg)Shimizu Hiroshi | Optogenetics Metabolism Escherichia coli
| SY-71 | 228 |
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Day 3 15:00– 16:20 | Chair: Konishi Masaaki |
S319 | Prediction of aerobic fermentation behavior of waste mushroom bed in a fed-batch reactor
(Shinshu U.) *(Stu)Kondo Yuki, (Reg)Shimada Iori, (Reg)Osada Mitsumasa, (Reg)Fukunaga Hiroshi, (Reg)Takahashi Nobuhide | microbial kinetics waste biomass utilization CO2 and heat supply
| ST-29 | 988 |
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S320 | Investigation on organic solvent extraction method of microalgae intracellular oils and fats with coarse-grained molecular dynamics
(mazda) *(Reg)Sakai Hiroyuki, Ichikawa Kazuo, Maeda Shinichiro | Microalgae Coarse-grained molecular dynamics
| ST-29 | 375 |
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S321 | Tar removal by a packed of materials
(Gunma U.) *(Stu)Shimizu Kyohei, (Reg)Noda Reiji, (Sanki Eng) (Reg)Tsujibayashi Ryosuke, Senda Takeshi | Tar removal filter
| ST-29 | 526 |
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S322 | Carbonization of Bamboo for Upgrading and Use as Industrial Energy
(Kogakuin U.) *(Reg)Kim Heejoon, (Stu)Kijima Haruki, (Reg)Sakai Yuji, (Stu)Sato Masaya | Carbonization Bamboo Upgrading
| ST-29 | 274 |
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