Updated on 2021/10/27

写真a

 
KANDA Hideki
 
Organization
Graduate School of Engineering Materials Process Engineering 1 Assistant Professor
Graduate School
Graduate School of Engineering
Undergraduate School
School of Engineering Materials Science and Engineering
Title
Assistant Professor
Contact information
メールアドレス
External link

Degree 3

  1. Ph.D. in Engineering ( 2000.3   Kyoto University ) 

  2. Master (Engineering) ( 1997.3   Kyoto University ) 

  3. Bachelor (engineering) ( 1995.3   Kyoto University ) 

Research Interests 11

  1. Laser ablation

  2. Electrospinning

  3. Non-equilibrium plasma

  4. Carotenoids

  5. Vegetable lipids

  6. Supercritical fluid

  7. Microalgae

  8. Extraction

  9. Coal-fired power generation

  10. Molecular simulation

  11. Adsorption

Research Areas 4

  1. Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Catalyst and resource chemical process

  2. Nanotechnology/Materials / Composite materials and interfaces

  3. Energy Engineering / Applied plasma science

  4. Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Biofunction and bioprocess engineering

Current Research Project and SDGs 5

  1. Extraction, synthesis and reactions with high-pressure green fluids

  2. Nanoparticle synthesis by laser ablation

  3. Creation of nano-materials by plasma

  4. Molecular simulation of phase transitions in nano-confined space

  5. Development of energy-saving lipid extraction technique from microalgae

Research History 6

  1. Assistant professor, Department of Materials Process Engineering, Nagoya University

    2017.4

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    Country:Japan

  2. JST(Japan Science and Technology Agency) and JICA(Japan International Cooperation Agency)   SATREPS: Science and Technology Research Partnership for Sustainable Development   Principal Investigator (JST) / Chief Adviser (JICA)

    2015.6

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    Country:Japan

  3. Assistant Professor, Department of Chemical Engineering, Nagoya University

    2012.12 - 2017.3

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    Country:Japan

  4. Japan Science and Technology Agency   Creation of Basic Technology for Improved Bioenergy Production through Functional Analysis and Regulation of Algae and Other Aquatic Microorganisms   PRESTO Researcher

    2011.4 - 2016.3

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    Country:Japan

  5. Central Research Institute of Electric Power Industry (Private nonprofit organization)   Chief Researcher

    2001.7 - 2012.11

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    Country:Japan

  6. Central Research Institute of Electric Power Industry (Private nonprofit organization)   Researcher

    2000.4 - 2001.6

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    Country:Japan

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Education 3

  1. Kyoto University   Graduate School, Division of Engineering

    - 2000.3

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    Country: Japan

  2. Kyoto University   Graduate School, Division of Engineering   Chemical engineering

    - 1997.3

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    Country: Japan

  3. Kyoto University   Faculty of Engineering

    - 1995.3

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    Country: Japan

Professional Memberships 7

  1. Research Association For Feedstock Recycling of Plastics Japan   Secretary 2017FY-now (Secretariat 2017FY)

    2017.4

  2. The Japan Society on Adsorption   Council Member (Editorial Board 2009FY-2014FY)

    2009.4

  3. Society for Chemical Engineers, Japan

  4. The Japan Institute of Energy

  5. The Chemical Society of Japan

  6. The Society of Separation Process Engineering, Japan

  7. The Japan Society of Applied Physics

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Committee Memberships 12

  1. 化学工学会 東海支部未来の化学工学を創る会   幹事  

    2019.4 - 2021.3   

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    Committee type:Academic society

  2. 日本吸着学会 第33回日本吸着学会研究発表会   実行委員  

    2018.11 - 2019.11   

  3. 分離技術会年会2019実行委員会   委員  

    2018.11 - 2019.5   

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    Committee type:Academic society

  4. プラスチック リサイクル化学研究会   事務局  

    2017.4 - 2018.6   

  5. The 10th international conference on supercritical fluids   Local organizing committee  

    2017.4 - 2017.12   

  6. International Drying Symposium 2016   Organizing Committee Members  

    2015.7 - 2016.8   

  7. 岐阜県   研究課題外部評価委員  

    2014.2 - 2014.3   

  8. The Japan Society on Adsorption   Chairman of the adsorption symposium 2012  

    2012.4 - 2012.8   

  9. 長浜バイオDME研究会   委員  

    2010.4 - 2012.3   

  10. The Japan Society on Adsorption   Councilor  

    2009.4   

  11. 日本吸着学会   編集委員  

    2009.4 - 2015.3   

  12. NPO法人資源リサイクルセンター   「環境ビジネスKANSAIプロジェクト」推進組織「PCB対応技術WG」委員  

    2008.12 - 2009.3   

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Awards 23

  1. Advanced technology award

    2008.7   Fuji-Sankei Business i  

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    Award type:Award from publisher, newspaper, foundation, etc.  Country:Japan

    I had the honor of making a presentation to Her Imperial Highness Princess Takamado.

  2. The Japan Institute of Energy Award for Progress

    2015.2   The Japan Institute of Energy  

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    Award type:Award from Japanese society, conference, symposium, etc.  Country:Japan

  3. The Japan Society on Adsorption Award for Progress

    2009.11   The Japan Society on Adsorption  

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    Award type:Award from Japanese society, conference, symposium, etc.  Country:Japan

  4. 研究奨励賞

    2008.10   日本粉体工業技術協会  

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    Country:Japan

  5. 優秀プロジェクト賞

    2008.8   京都大学環境衛生工学研究会  

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    Country:Japan

  6. 技術進歩賞

    2008.3   日本化学会  

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    Country:Japan

  7. 第88春季年会ハイライト講演

    2008.3   日本化学会  

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    Award type:Award from Japanese society, conference, symposium, etc.  Country:Japan

  8. 環境・技術プロジェクト賞

    2007.11   土木学会  

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    Country:Japan

  9. 第87春季年会講演奨励賞

    2007.5   日本化学会  

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    Country:Japan

  10. Virtual Jounrnal of Nanoscale Science and Technology

    2007.2   米国物理学協会  

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    Country:United States

  11. 創立五十周年記念技術賞

    2006.11   粉体工学会  

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    Country:Japan

  12. 奨励賞

    2004.2   日本エネルギー学会  

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    Country:Japan

  13. 優秀ポスター賞

    2018.8   日本食品工学会  

  14. Poster Award

    2017.12   The 10th International Conference on Supercritical Fluids Supergreen 2017   Production of b-carotene emulsion under supercritical CO2 improved by thermal Z-isomerization treatment

    Maiko Ono, Masaki Honda, Wahyudiono, Hideki Kanda, Motonobu Goto

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    Award type:Award from international society, conference, symposium, etc.  Country:Japan

  15. Best Poster award

    2017.11   The 11th International Conference on Separation Science and Technology   Classification of lipid extracted from microalgae Nannochloropsis oceania by liquefied dimethyl ether

    Naomasa Yamamoto, Kazuya Murakami, Masaki Honda, Wahyudiono, Hideki Kanda, Motonobu Goto

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    Award type:Award from international society, conference, symposium, etc.  Country:Japan

  16. The Best Article in Separation and Transport Phenomena Topic

    2016.11   The 3rd International Seminar on Fundamental And Application of Chemical Engineering 2016   Extraction of curucmin from turmeric using ultrasonic assisted carbon dioxide with ethanol

    Chhouk Kimthet, Wahyudino, Hideki Kanda, Motonobu Goto

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    Country:Japan

  17. Best poster presentation award

    2015.10   e-AISA functional materials and biomass utilization 2015   Extraction of lipid from labyrinthulea Aurantiochytrium limacinum by using liquefied dimethyl ether

    Rintaro Hishino, Kazuya Murakami, Wahyudiono, Siti Machmudar, Yuji Okita, Eiji Ohashi, Hideki Kanda, Motonobu Goto

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    Award type:Award from international society, conference, symposium, etc.  Country:Japan

  18. Excellent award

    2015.10   e-AISA functional materials and biomass utilization 2015 e-AISA functional materials and biomass utilization 2015   Production of acetaminophen microparticles by using supercritical carbon dioxide

    Nadezhda Tsareva, Hazuki Nerome, Hideki Kanda, Motonobu Goto

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    Award type:Award from international society, conference, symposium, etc.  Country:Japan

  19. Best poster presentation award

    2015.3   (ISPlasma2015/IC-PLANTS2015) 7th International Symposium on Advanced Plasma Science and Its Applications for Nitrides and Nanomaterials / 8th International Conference on Plasma-Nano Technology & Sciences  

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    Country:Japan

  20. The 10th International Conference on SeBest poster presentation award.

    2014.10   The 10th International Conference on Separation Science and Technology  

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    Country:Japan

  21. ポスター賞

    2003.9   日本化学会 コロイドおよび界面化学討論会  

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    Country:Japan

  22. Virtual Jounrnal of Nanoscale Science and Technology

    2000.6   米国物理学協会  

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    Country:United States

  23. ポスター賞

    1999.10   日本吸着学会  

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    Country:Japan

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Papers 236

  1. Thermodynamic model of extraction equilibrium in cylindrical nanopores validated with molecular dynamics simulation Reviewed

    Hideki Kanda, Wahyudiono, Motonobu Goto

    Chemical Engineering Science   Vol. 248   page: 117115   2022.2

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    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  2. Molecular dynamics simulation and thermodynamic model of vapor–solid coexistence of the Lennard–Jones fluid in cylindrical nanopores Reviewed

    Hideki Kanda, Takeshi Hiramatsu, Wahyudiono, Motonobu Goto

    Chemical Engineering Science   Vol. 248   page: 117116   2022.2

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    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  3. Synthesis of titanium dioxide nanoparticle by means of discharge plasma over an aqueous solution under high-pressure gas environment Reviewed International coauthorship

    Wahyudiono, Hiroki Kondo, Siti Machmudah, Hideki Kanda, Yaping Zhao, Motonobu Goto

    Alexandria Engineering Journal   Vol. 61   page: in press   2022

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  4. Extraction of diterpenes from spent coffee grounds and encapsulation in PVP particles using supercritical carbon dioxide Reviewed International coauthorship

    Yelin Zhang, Wahyudiono, Ratana Rujiravanit, Hideki Kanda, Motonobu Goto

    Separation Science and Technology     page: in press   2022

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    Language:English   Publishing type:Research paper (scientific journal)  

  5. Phytochemical Compounds Extraction from Medicinal Plants by Subcritical Water and Its Encapsulation via Electrospraying Reviewed International coauthorship

    Siti Machmudah, Meika Wahyu Fitriana, Nadhia Fatbamayani, Wahyudiono, Hideki Kanda, Sugeng Winardi, Motonobu Goto

    Alexandria Engineering Journal   Vol. 61   page: in press   2022

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  6. Low-Pressure Electrospinning Process for Fabricating Polyvinylpyrrolidone - Tea Tree Oil Nanofibers Reviewed

    Li Zhu, Wahyudiono, Hideki Kanda, Motonobu Goto

    ACS Omega     page: under review   2022

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    Language:English   Publishing type:Research paper (scientific journal)  

  7. Extraction of procyanidin B2 from apple fruit skin using subcritical water Reviewed International coauthorship

    Wahyudiono, Shinya Maeda, Siti Machmudah, Hideki Kanda, Motonobu Goto

    ASEAN Engineering Journal     page: in press   2021.12

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  8. Molecular dynamics simulation and thermodynamic model of triple point of Lennard-Jones fluid in cylindrical nanopores Reviewed

    Hideki Kanda, Takeshi Hiramatsu, Wahyudiono, Motonobu Goto

    Chemical Engineering Science   Vol. 244   page: 116829   2021.11

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    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  9. Add value preparation from livestock by-products to regenerative medicial materials Invited

    Hideki Kanda

    Reports for Research Grants for Meat and Meat Products   Vol. 39   page: 111 - 118   2021.11

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    Authorship:Lead author, Last author, Corresponding author   Language:Japanese   Publishing type:Research paper (bulletin of university, research institution)  

  10. Improvement in filtration performance of ultraporous nanofiber membrane by plasma-induced surface modification Reviewed

    Yasuhito Mukai, Song Liu, Yoshihiro Takayama, Yui Hayashi, Kakeru Mano, Shigenori Takahashi, Wahyudiono, Hideki Kanda, Motonobu Goto

    ACS Omega   Vol. 6   page: 28038 - 28048   2021.10

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  11. Improved Storage Stability of Lycopene Z-Isomers Utilizing Edible Media and Antioxidants to Promote Practical Applications Reviewed

    Kazuya Murakami, Masaki Honda, Wahyudiono, Hideki Kanda, Motonobu Goto

    ACS Food Science & Technology   Vol. 1   page: 1677 - 1686   2021.10

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    Language:English   Publishing type:Research paper (scientific journal)  

  12. Extraction of lipid from microalgae using low boiling point weak polar solvents Invited Reviewed

    Hideki Kanda, Motonobu goto

    Seibutsu-kogaku kaishi   Vol. 99 ( 9 ) page: 482 - 485   2021.9

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    Authorship:Lead author, Corresponding author   Language:Japanese   Publishing type:Research paper (scientific journal)  

  13. Pulsed Discharge Plasma in Slug-flow Reactor System for Water Pollutant Removal and Nanoparticle Synthesis Reviewed International coauthorship

    Wahyudiono, Siti Machmudah, Hideki Kanda, Yaping Zhao, Motonobu Goto

    Engineering Journal   Vol. 25 ( 9 ) page: 1 - 17   2021.9

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    Language:English   Publishing type:Research paper (scientific journal)  

  14. Surfactant-free preparation of an ostrich carotid artery scaffold using liquefied dimethyl ether and DNase Reviewed

    Hideki Kanda, Daigo Ando, Kento Oya, Wahyudiono, Motonobu Goto

    Arabian Journal of Chemistry   Vol. 14   page: 103280   2021.8

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    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  15. Synthesis of cerium dioxide nanoparticles by gas/liquid pulsed discharge plasma in a slug flow reactor Reviewed

    Wanying ZHU, Yingying Lin, Li Zhu, Wahyudiono, Masaki Honda, Hideki Kanda, Motonobu Goto

    ACS Omega   Vol. 6   page: 20966 - 20974   2021.8

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  16. Preparation of Liposomes from Soy Lecithin Using Liquefied Dimethyl Ether Reviewed

    Hideki Kanda, Tsubasa Katsube, Wahyudiono, Motonobu Goto

    Foods   Vol. 10   page: 1789   2021.8

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    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  17. Molecular Dynamics Simulation of Tolman Length and Interfacial Tension of Symmetric Binary Lennard-Jones Liquid Reviewed

    Hideki Kanda, Wahyudiono, Motonobu Goto

    Symmetry   Vol. 13   page: 1376   2021.8

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  18. Pulsed Discharge Plasma over an Aqueous Solution Surface Induces Lignin Decomposition Reviewed International coauthorship

    Takumi Ibuki, Wahyudiono, Siti Machmudah, Hideki Kanda, Masami Bito, Yaping Zhao, Motonobu Goto

    Arabian Journal for Science and Engineering   Vol. 46   page: in press   2021.6

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  19. Enhancement of lipid extraction from soya bean by addition of dimethyl ether as entrainer into supercritical carbon dioxide Reviewed

    Hideki Kanda, Yuji Fukuta, Wahyudiono, Motonobu Goto

    Foods   Vol. 10   page: 1223   2021.6

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  20. Pulsed Discharge Plasma in High Pressure Environment for Water Pollutant Degradation and Nanoparticle Synthesis Reviewed International coauthorship

    Wahyudiono, Siti Machmudah, Hideki Kanda, Yaping Zhao, Motonobu Goto

    Plasma   Vol. 4   page: 309 - 331   2021.6

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  21. Surfactant-free decellularization of porcine aortic tissue by subcritical dimethyl ether Reviewed

    Hideki Kanda, Daigo Ando, Rintaro Hoshino, Tetsuya Yamamoto, Wahyudiono, Shogo Suzuki, Satoshi Shinohara, Motonobu Goto

    ACS Omega   Vol. 6   page: 13417 - 13425   2021.5

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  22. Hydrothermal Synthesis: Low-Temperature Subcritical Water for Ceria-Zirconia Mixed Oxides Preparation Reviewed International coauthorship

    Siti Machmudah, Widiyastuti, Wahyudiono, Sugeng winardi, Hideki Kanda, Motonobu Goto

    Indonesian Journal of Chemistry   Vol. 21 ( 1 ) page: 1-13   2021.4

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  23. Extraction and Micronization of β-glucan in One-step Process by Combining Subcritical Water and Supercritical Carbon Dioxide Reviewed International coauthorship

    Wahyudiono, Siti Machmudah, Hideki Kanda, Motonobu Goto

    IOP Conference Series: Earth and Environmental Science   Vol. 672   page: 012078   2021.4

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  24. Bimetallic Nanoparticle Generation by Pulsed Laser Ablation of Au and TiO2 Plates in an Aqueous Medium Reviewed International coauthorship

    Wahyudiono, Shota Kawai, Mardiansyah Mardis, Siti Machmudah, Hideki Kanda, Yaping Zhao, Motonobu Goto

    Alexandria Engineering Journal   Vol. 60   page: 2225–2234   2021.4

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  25. Phenolic Compound, Antioxidant and Antibacterial properties of Electrospun PVP Nanofiber loaded with Bassela rubra linn extract and Alginate from Sargassum sp. Invited Reviewed International coauthorship

    Eka Lutfi Septiani, Okky Putri Prastuti, Siti Machmudah, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    IOP Conference Series: Materials Science and Engineering   Vol. 1143   page: 012015   2021.4

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    Language:English   Publishing type:Research paper (international conference proceedings)  

  26. Nanoparticle production of carotenoid by cis-isomerization of carotenoid and rapid expansion of supercritical solution Invited

    Hideki Kanda

    Report of Toyo Institute of Foof Technology   Vol. 33   page: 103 - 108   2021.3

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    Authorship:Lead author, Last author, Corresponding author   Language:Japanese   Publishing type:Research paper (bulletin of university, research institution)  

  27. Ethanol-free extraction of resveratrol and its glycoside from Japanese knotweed rhizome by liquefied dimethyl ether without pretreatments Reviewed International coauthorship

    Hideki Kanda, Kazuma Oishi, Siti Machmudah, Wahyudiono, Motonobu Goto

    Asia-Pacific Journal of Chemical Engineering   Vol. 16   page: e2600   2021.3

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    Authorship:Lead author, Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  28. Electrospun polymer fibers with metal nanoparticles synthesized by plasma

    Hideki Kanda, Motonobu Goto

      Vol. 32   page: in press   2021.3

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  29. Water Removal from Wood Biomass by Liquefied Dimethyl Ether for Enhancing Heating Value Reviewed International coauthorship

    Siti Machmudah, Dimas Tiar Wicaksono, Mary Happy, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    Energy Reports   Vol. 6   page: 824-831   2020.11

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  30. Ethanol-free antisolvent crystallization of glycine by liquefied dimethyl ether Reviewed

    Hideki Kanda, Tsubasa Katsube, Rintaro Hoshino, Mitsuhiro Kishino, Wahyudiono, Motonobu Goto

    Heliyon   Vol. 6   page: e05258   2020.10

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  31. Direct extraction of lutein from wet macroalgae by liquefied dimethyl ether without any pretreatment Reviewed

    Hideki Kanda, Wahyudiono, Siti Machmudah, Motonobu Goto

    ACS Omega   Vol. 5 ( 37 ) page: 24005-24010   2020.9

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  32. CO2量抑え抽出に成功 微細藻類からバイオ燃料 Invited

    神田英輝

    名古屋大学環境報告書2020     page: 23-24   2020.9

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  33. Effect of Solvent Selection and Nozzle Geometry on Curcuma mangga Micronization Process using Supercritical Antisolvent: Experiment and CFD Simulation Reviewed International coauthorship

    Sarah Duta Lestari, Siti Machmudah, Sugeng Winardi, Tantular Nurtono, Wahyudiono, Hideki Kanda, Motonobu Goto

    Food and Bioproducts Processing   Vol. 123   page: 367 - 377   2020.9

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  34. Step-Wise Pressure Controlling Approach for Supercritical Carbon Dioxide Extraction of Essential Oil from Thick Peel of Bitter Orange (Citrus Aurantium) Reviewed

    Hoshino Y, Tanaka M, Takamizu A, Suetsugu T, Hoshino M, Wahyudiono, Kanda H Goto M

    Austin Chemical Engineering   Vol. 7 ( 3 ) page: 1079   2020.8

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  35. Nonthermal atmospheric pressure plasma for methylene blue dye decolourisation using a slug flow reactor system Reviewed International coauthorship

    Motoki Yamada, Wahyudiono, Siti Machmudah, Hideki Kanda, Motonobu Goto

    Plasma Chemistry and Plasma Processing   Vol. 40   page: 985-1000   2020.7

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  36. Preparation of liposomes encapsulating β-carotene using supercritical carbon dioxide with ultrasonication Reviewed International coauthorship

    Yukako Tanaka, Chiho Uemori, Tatsuhiko Kon, Masaki Honda, Wahyudiono, Siti Machmudah, Hideki Kanda, Motonobu Goto

    Journal of Supercritical Fluids   Vol. 161   page: 104848   2020.7

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  37. Correlation of Extract Composition on Antioxidant Activity of Electrospun PolyvinylPyrrolidone/Bassela rubra linn Leaf Extract Composite Reviewed International coauthorship

    Eka Lutfi Septiani, Azmi Alvian Gabriel, Okky Putri Prastuti, Defi Nur Indahsari, Ervina Diah Ariyanti, Siti Machmudah, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    Key Engineering Materials   Vol. 851   page: 122-127   2020.7

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  38. Atmospheric-pressure Pulsed Discharge Plasma in a Slug Flow Reactor System for the Synthesis of Gold Nanoparticles Reviewed International coauthorship

    Motoki Yamada, Wahyudiono, Siti Machmudah, Hideki Kanda, Yaping Zhao, Motonobu Goto

    ACS Omega   Vol. 5   page: 17679-17685   2020.7

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  39. 亜臨界プラズマによる機能性ナノコンポジットの合成

    神田 英輝, 後藤 元信

    電子光学研究のあゆみ   Vol. 31   page: in press   2020.6

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    Authorship:Lead author, Corresponding author   Language:Japanese   Publishing type:Research paper (bulletin of university, research institution)  

  40. Fabrication of chitosan particles through a coaxial nozzle under pressurized carbon dioxide Reviewed International coauthorship

    Wahyudiono, Anthony Susilo, Siti Machmudah, Hideki Kanda, Motonobu Goto

    Asia-Pacific Journal of Chemical Engineering   Vol. 15   page: e2466   2020.5

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  41. One-step preparation of Z-isomer-rich β-carotene nanosuspensions utilizing a natural catalyst, allyl isothiocyanate, via supercritical CO2 Reviewed

    Yelin Zhang, Masaki Honda, Tetsuya Fukaya, Wahyu Diono, Hideki Kanda, Motonobu Goto

      Vol. 12   page: 777   2020.5

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  42. Room-Temperature Extraction of Direct Coal Liquefaction Residue by Liquefied Dimethyl Ether Reviewed International coauthorship

    Qingxin Zheng, Yelin Zhang, Wahyudiono, Thierry Fouquet, Xi Zeng, Hideki Kanda, Motonobu Goto

    Fuel   Vol. 262   page: 116528   2020.4

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    Authorship:Corresponding author   Language:English   Publishing type:Research paper (scientific journal)  

  43. Lipid Extraction from Microalgae Covered with Biomineralized Cell Walls using Liquefied Dimethyl Ether Reviewed

    Hideki Kanda, Rintaro Hoshino, Kazuya Murakami, Wahyudiono, Qingxin Zheng, Motonobu Goto

    Fuel   Vol. 262   page: 116590   2020.4

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  44. Ultrasonic-Enhanced Fabrication of Metal Nanoparticles by Laser Ablation in Liquid Reviewed International coauthorship

    Xin Hu, Noriharu Takada, Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto

    Industrial & Engineering Chemistry Research   Vol. 59 ( 16 ) page: 7512-7519   2020.4

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  45. Synthesis and Modification of Metal Nanoparticles by Plasma over an Aqueous Solution under Pressurized Argon Reviewed International coauthorship

    Wahyudiono, Hiroki Kondo, Motoki Yamada, Noriharu Takada, Siti Machmudah, Hideki Kanda, Motonobu Goto

    IOP Conference Series: Materials Science and Engineering   Vol. 778   page: 012018   2020.4

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  46. Enhanced production of β-carotene suspensions using supercritical CO2 via naturally occurring Z-isomerization-accelerating catalyst Reviewed International coauthorship

    Yelin Zhang, Masaki Honda, Wahyudiono, Hideki Kanda, Motonobu Goto

    IOP Conference Series: Materials Science and Engineering   Vol. 778   page: 012008   2020.4

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  47. Formation of fine particles from curcumin/PVP by the supercritical antisolvent process with coaxial nozzle Reviewed International coauthorship

    Siti Machmudah, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    ACS Omega   Vol. 5   page: 6705-6714   2020.3

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  48. Dc-Plasma over Aqueous Solution for Synthesis of Titanium Dioxide Nanoparticles under Pressurized Argon Reviewed International coauthorship

    Wahyudiono, Hiroki Kondo, Motoki Yamada, Noriharu Takada, Siti Machmudah, Hideki Kanda, Motonobu Goto

    ACS Omega   Vol. 5 ( 10 ) page: 5443-5451   2020.3

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  49. Electrospraying Micronization of Phytochemical Compounds Extract from Eucheuma cottonii Reviewed

    Dwi Setyorini, Siti Machmudah, Sugeng Winardi, Kusdianto Kusdianto, Wahyudiono, Hideki Kanda, Motonobu Goto

    Jurnal Teknik ITS   Vol. 8 ( 2 ) page: F68-F73   2019.12

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  50. Microparticles Formation of Ganoderma lucidum Extract by Electrospraying Method Reviewed

    Siti Machmudah, Dwi Setyorini, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    ASEAN Journal of Chemical Engineering   Vol. 19 ( 2 ) page: 74-82   2019.12

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  51. Electrospraying technique under pressurized carbon dioxide for hollow particle production Reviewed

    Wahyudiono, Hiroyuki Ozawa, Siti Machmudah, Hideki Kanda, Motonobu Goto

    Reactive and Functional Polymers   Vol. 142   page: 44-52   2019.9

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  52. Pressurized hot water extraction of carrageenan and phenolic compounds from Eucheuma Cottonii and Gracilaria SP.: Effect of extraction conditions Reviewed

    Siti Machmudah, Widiyastuti, Wahyudiono, Hideki Kanda, Sugeng Winardi, Motonobu Goto

    ARPN Journal of Engineering and Applied Sciences   Vol. 14 ( 18 ) page: 3113-3123   2019.9

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  53. Sorption Efficiency in Dye Removal and Thermal Stability of Sorghum Stem Aerogel Reviewed

    Eka Lutfi Septiani, Okky Putri Prastuti, Yuni Kurniati, Mar'atul Fauziyah, Widiyastuti, Heru Setyawan, Wahyudiono, Hideki Kanda, Motonobu Goto

    Materials Science Forum   Vol. 966   page: 175-180   2019.8

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  54. Optimization of rubber seed oil extraction using liquefied dimethyl ether Reviewed

    Panatpong Boonnoun, Artiwan Shotipruk, Hideki Kanda, Motonobu Goto

    Chemical Engineering Communications   Vol. 206 ( 6 ) page: 746-753   2019.6

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  55. Improved Carotenoid Processing with Sustainable Solvents Utilizing Z-Isomerization-Induced Alteration in Physicochemical Properties: A Review and Future Directions Reviewed

    Masaki Honda, Hakuto Kageyama, Takashi Hibino, Yelin Zhang, Wahyudiono, Hideki Kanda, Rysei Yamaguchi, Ryota Takemura, Tetsuya Fukaya, Motonobu Goto

    Molecules   Vol. 24 ( 11 ) page: 2149(1-19)   2019.6

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  56. 先生に一問一答

    神田英輝

    名大トピックス   Vol. 313   page: 4-5   2019.6

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  57. Hydrothermal and solvothermal synthesis of cerium-zirconium oxide for catalyst application Reviewed

    Siti Machmudah, Muhamad Risky Ceaser, Muhammad Fareid Alwajdy, Widiyastuti, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    International Journal of Technology   Vol. 10 ( 3 ) page: 582-592   2019.5

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  58. Particle Micronization of Curcuma mangga Rhizomes Ethanolic Extract/Biopolymer PVP using Supercritical Antisolvent Process Reviewed

    Sarah Duta Lestari, Siti Machmudah, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    The Journal of Supercritical Fluid   Vol. 146   page: 226-239   2019.4

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  59. Synthesis of Silver Nanoparticles by Atmospheric Pressure Pulsed Discharge Plasma in Slug Flow System Reviewed

    Motoki Yamada, Shigenori Takahashi, Wahyudiono, Noriharu Takada, Hideki Kanda, Motonobu Goto

    Japanese Journal of Applied Physics   Vol. 58 ( 1 ) page: 016001(1-8)   2019.1

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  60. Atmospheric-pressure pulsed discharge plasma in capillary slug flow system for dye decomposition Reviewed

    Wahyudiono, Kakeru Mano, Yui Hayashi, Motoki Yamada, Shigenori Takahashi, Noriharu Takada, Hideki Kanda, Motonobu Goto

    Chemical Engineering & Processing: Process Intensification   Vol. 135   page: 133-140   2019.1

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  61. Micronization for Enhancement of Curcumin Dissolution via Electrospraying Technique Reviewed

    Kimthet Chhouk, Wahyudiono, Hideki Kanda, Motonobu Goto

    ChemEngineering   Vol. 2 ( 4 ) page: 60(1-11)   2018.12

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  62. 微細藻類の燃料化の課題と液化ジメチルエーテルによる油脂抽出 Invited

    神田英輝,後藤元信

    環境管理   Vol. 54 ( 11 ) page: 43-48   2018.11

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  63. Enhanced solubility and reduced crystallinity of carotenoids, β-carotene and astaxanthin, by Z-isomerization Reviewed

    Masaki Honda, Tomohiko Kodama, Hakuto Kageyama, Takashi Hibino, Wahyudiono, Hideki Kanda, Motonobu Goto

    European Journal of Lipid Science and Technology   Vol. 120 ( 11 ) page: 1800191(1-8)   2018.11

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  64. Consideration of Au-carbon nanoparticles by laser ablation under supercritical CO2 Reviewed

    Mardiansyah Mardis, Wahyudiono, Noriharu Takada, Hideki Kanda, Motonobu Goto

    ARPN Journal of Engineering and Applied Sciences   Vol. 13 ( 20 ) page: 8343-8347   2018.10

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  65. Supercritical Fluids Extraction of Valuable Compounds from Algae: Future Perspectives and Challenges Reviewed

    Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto

    ngineering Journal   Vol. 22 ( 5 ) page: 13-30   2018.9

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  66. Lipids from Vitellaria paradoxa Gaertn Seeds by Supercritical CO2: Extraction and Optimization of Parameters by Response Surface Methodology Reviewed

    Naomasa Yamamoto, Kazuya Murakami, Chhouk Kimthet, Wahyudiono, Siaw Onwona-Agyeman, Hideki Kanda, Motonobu Goto

    Engineering Journal   Vol. 22 ( 5 ) page: 31-44   2018.9

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  67. Production of β-carotene nanosuspensions using supercritical CO2 and improvement of its efficiency by Z-isomerization pre-treatment Reviewed

    Maiko Ono, Masaki Honda, Wahyudiono, Keiji Yasuda, Hideki Kanda, Motonobu Goto

    The Journal of Supercritical Fluids   Vol. 138   page: 124-131   2018.8

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  68. Microwave-accelerated Z-isomerization of (all-E)-lycopene in tomato oleoresin and enhancement of the conversion by vegetable oils containing disulfide compounds Reviewed

    Masaki Honda, Haruka Sato, Munenori Takehara, Yoshinori Inoue, Chitoshi Kitamura, Ryota Takemura, Tetsuya Fukaya, Wahyudiono, Hideki Kanda, Motonobu Goto

    European Journal of Lipid Science and Technology   Vol. 120 ( 7 ) page: 1800060(1-9)   2018.7

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  69. Effect of thermal treatment and light irradiation on the stability of lycopene with high Z-isomers content Reviewed

    Kazuya Murakami, Masaki Honda, Ryota Takemura, Tetsuya Fukaya, Wahyudiono, Hideki Kanda, Motonobu Goto

    Food Chemistry   Vol. 250   page: 253-258   2018.6

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  70. Nanoparticle formation of PVP/astaxanthin inclusion complex by solution-enhanced dispersion by supercritical fluids (SEDS): Effect of PVP and Z-isomarized astaxanthin contents Reviewed

    Kaori Kaga, Masaki Honda, Tomoki Adachi, Masatoshi Honjo, Wahyudiono, Hideki Kanda, Motonobu Goto

    The Journal of Supercritical Fluids   Vol. 136   page: 44-51   2018.6

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  71. Preparation of liposomes encapsulating beta-carotene using supercritical carbon dioxide with ultrasonication Invited

    Hideki Kanda, Motonobu Goto

      Vol. 29   page: 68-69   2018.5

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  72. Crystallization of all Trans-β-carotene by Supercritical Carbon Dioxide Antisolvent via Co-axial Nozzle Reviewed

    Tomohiko Kodama, Masaki Honda, Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto

    Engineering Journal   Vol. 22 ( 3 ) page: 25-38   2018.5

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  73. Synthesis of nano particle by plasma reaction field Invited

    Hideki Kanda, Motonobu Goto

      Vol. 29   page: 137-138   2018.5

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  74. Micronization of curcumin with biodegradable polymer by supercritical anti-solvent using micro swirl mixer Reviewed

    Kimthet Chhouk, Wahyudiono, Hideki Kanda, Shin-ichiro Kawasaki, Motonobu Goto

    Frontiers of Chemical Science and Engineering   Vol. 12 ( 1 ) page: 184-193   2018.4

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  75. Electrospinning of Poly(Vinyl Pyrrolidone) Fibers Containing Metal Oxides Nanoparticles by Electrospinning under Dense CO2 Reviewed

    Hiroyuki Ozawa, Siti Machmudah,Wahyudiono, Hideki Kanda, Motonobu Goto

    Research on Chemical Intermediates   Vol. 44 ( 4 ) page: 2215-2230   2018.4

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  76. Glycine Oligomerization by Pulsed Discharge Plasma over Aqueous Solution under Atmospheric Pressure Reviewed

    Yui Hayashi, Wahyudiono, Takada Noriharu, Hideki Kanda, Motonobu Goto

    ChemEngineering   Vol. 2 ( 2 ) page: 17(1-11)   2018.4

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  77. Efficacy of supercritical carbon dioxide integrated hydrothermal extraction of Khmer medicinal plants with potential pharmaceutical activity Reviewed

    Kimthet Chhouk, Wahyudiono, Hideki Kanda, Motonobu Goto

    Journal of Environmental Chemical Engineering   Vol. 6 ( 2 ) page: 2944-2956   2018.4

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  78. Subcritical water extraction enhancement by adding deep eutectic solvent for extracting xanthone from mangosteen pericarp Reviewed

    Siti Machmudah, Sarah Duta Lestari, Widiyastuti, Wahyudiono, Hideki Kanda, Sugeng Winardi, Motonobu Goto

    The Journal of Supercritical Fluids   Vol. 133 ( 2 ) page: 615-624   2018.3

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  79. Effect of the Z-isomer content on nanoparticle production of lycopene using solution-enhanced dispersion by supercritical fluids (SEDS) Reviewed

    Tomohiko Kodama, Masaki Honda, Ryota Takemura, Tetsuya Fukaya, Chiho Uemori, Wahyudiono, Hideki Kanda, Motonobu Goto

    The Journal of Supercritical Fluids   Vol. 133 ( 1 ) page: 291-296   2018.3

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  80. Formation of Au-Carbon Nanoparticles by Laser Ablation under Pressurized CO2 Reviewed

    Mardiansyah Mardis, Wahyudiono, Noriharu Takada, Hideki Kanda, Motonobu Goto

    Asia-Pacific Journal of Chemical Engineering   Vol. 13 ( 2 ) page: e2176(1-8)   2018.3

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  81. Extraction of Phytochemical Compounds from Eucheuma cottonii and Gracilaria sp using Supercritical CO2 Followed by Subcritical Water Reviewed

    Dwi Setyorini,Ridlo Aanisah, Siti Machmudah, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    MATEC Web of Conferences   Vol. 156   page: 03051(1-6)   2018.3

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  82. Synthesis of Ceria Zirconia Oxides using Solvothermal Treatment Reviewed

    Siti Machmudah, Widiyastuti, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    MATEC Web of Conferences   Vol. 156   page: 05014(1-5)   2018.3

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  83. Enhanced lycopene extraction from gac (Momordica cochinchinensis Spreng.) by the Z-isomerisation induced by microwave irradiation pretreatment Reviewed

    Masaki Honda, Yo Watanabe, Kazuya Murakami, Nguyen Ngoc Hoang, Wahyudiono, Hideki Kanda, Motonobu Goto

    European Journal of Lipid Science and Technology   Vol. 120 ( 2 ) page: 1700293(1)-1700293(8)   2018.2

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  84. Crystallization of Acetaminophen in Nano/Micro Scale Using Swirl Mixing Micro Device Under Pressurized Carbon Dioxide Reviewed

    Chiho Uemori, Tomohiko Kodama, Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto

    ARPN Journal of Engineering and Applied Sciences   Vol. 13 ( 4 ) page: 1340-1349   2018.2

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  85. Rapid and selective concentration of lycopene Z-isomers from tomato pulp by supercritical CO2 with co-solvents Reviewed

    Yo WATANABE, Masaki HONDA, Takuma HIGASHIURA, Tetsuya FUKAYA, Siti MACHMUDAH, WAHYUDIONO, Hideki KANDA, Motonobu GOTO

    Solvent Extraction Research and Development   Vol. 25 ( 1 ) page: 47-57   2018.1

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  86. Thermal isomerization pre-treatment to improve lycopene extraction from tomato pulp Reviewed

    Masaki Honda, Yo Watanabe, Kazuya Murakami, Ryota Takemura, Tetsuya Fukaya, Wahyudiono, Hideki Kanda, Motonobu Goto

    LWT - Food Science and Technology   Vol. 86   page: 69-75   2017.12

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  87. Thermal isomerization of (all-E)-lycopene and separation of the Z-isomers by using a low boiling solvent: Dimethyl ether Reviewed

    Kazuya Murakami, Masaki Honda, Wahyudiono, Hideki Kanda, Motonobu Goto

    Separation Science and Technology   Vol. 52 ( 16 ) page: 2573–2582   2017.10

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  88. Production of Liposome from Sphingomyelin by Ultrasonic Device under Supercritical Carbon Dioxide Reviewed

    Chiho Uemori, Tsubasa Katsube, Siti Machmudah, Wahyu Diono, Hideki Kanda, Keiji Yasuda, Motonobu Goto

    Asian Journal of Applied Sciences   Vol. 5 ( 5 ) page: 1042-1048   2017.10

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  89. Comparison of Conventional and Ultrasound Assisted Supercritical Carbon Dioxide Extraction of Curcumin from Turmeric (Curcuma Longa L.) Reviewed

    Kimthet Chhouk, Wahyudiono, Hideki Kanda, Motonobu Goto

    Engineering Journal   Vol. 21 ( 5 ) page: 53-65   2017.9

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  90. The thermal Z-isomerization-induced change in solubility and physical properties of (all-E)-lycopene Reviewed

    Kazuya Murakami, Masaki Honda, Ryota Takemura, Tetsuya Fukaya, Mitsuhiro Kubota, Wahyudiono, Hideki Kanda, Motonobu Goto

    Biochemical and Biophysical Research Communications   Vol. 491 ( 2 ) page: 317-322   2017.9

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  91. One-step synthesis of water-dispersible carbon nanocapsules by pulsed arc discharge over aqueous solution under pressurized argon Reviewed

    Yui Hayashi, Noriharu Takada, Wahyudiono, Hideki Kanda, Motonobu Goto

    Research on Chemical Intermediates   Vol. 43 ( 7 ) page: 4201-4211   2017.7

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  92. Extraction of Phytochemicals from Grains of paradise using Supercritical Carbon Dioxide Reviewed

    Maiko Ono, Yukihiro Kawamoto, Chiho Uemori, Wahyudiono, Hideki Kanda, Motonobu Goto

    Engineering Journal   Vol. 21 ( 4 ) page: 53-64   2017.7

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  93. Extraction of Phenolic Compounds and Antioxidant Activity from Garlic Husks using Carbon Dioxide Expanded Ethanol Reviewed

    Kimthet Chhouk, Chiho Uemori, Wahyudiono, Hideki Kanda, Motonobu Goto

    Chemical Engineering & Processing: Process Intensification   Vol. 117   page: 113-119   2017.7

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  94. Esterification of high free fatty acids in supercritical methanol using sulfated angel wing shells as catalyst Reviewed

    Nur Syazwani Osman, Mohd Lokman Ibrahim, Wahyudiono, Hideki Kanda, Motonobu Goto, Yun Hin Taufiq-Yap

    The Journal of Supercritical Fluids   Vol. 124   page: 1-9   2017.6

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  95. Reaction of Cl- ions in electrolyte solution induced electrical discharge plasma in the presence of argon fine bubbles Reviewed

    Yui Hayashi, Noriharu Takada, Wahyudiono, Hideki Kanda, Motonobu Goto

    AIP Conference Proceedings   Vol. 1840   page: 020001(7p)   2017.5

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  96. Extraction of curcumin from Curcuma longa L. using ultrasound assisted supercritical carbon dioxide Reviewed

    Chhouk Kimthet, Wahyudiono, Hideki Kanda, Motonobu Goto

    AIP Conference Proceedings   Vol. 1840   page: 100001 -9pp   2017.5

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  97. Hydrothermal extraction of antioxidant compounds from mangosteen pericarp with low-transition-temperature mixture and sonication pretreatment Reviewed

    Siti Machmudah, Widiyastuti, Tantular Nurtono, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    AIP Conference Proceedings   Vol. 1840   page: 060009 -7pp   2017.5

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  98. Sub- and Supercritical Fluids Extraction of Phytochemical Compounds from Eucheuma cottonii and Gracilaria sp. Reviewed

    Siti Machmudah, Widiyastuti, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    Chemical Engineering Transactions   Vol. 56   page: 1291-1296   2017.4

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  99. 液化ジメチルエーテルによる微細藻類からの油脂抽出 Invited

    神田英輝、後藤元信

    分離技術   Vol. 47 ( 2 ) page: 43-48   2017.3

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  100. The E/Z isomer ratio of lycopene in foods and effect of heating with edible oils and fats on isomerization of (all-E)-lycopene Reviewed

    Masaki Honda, Kazuya Murakami, Yo Watanabe, Takuma Higashiura, Tetsuya Fukaya, Wahyudiono, Hideki Kanda, Motonobu Goto

    European Journal of Lipid Science and Technology   Vol. 119   page: 1600389(1-9)   2017.3

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  101. Fluorine-Doped Tin Oxide Catalyst for Glycerol Conversion to Methanol in Sub-Critical Water Reviewed

    Wan Zurina Samad, Motonobu Goto, Hideki Kanda, Wahyudiono, Norazzizi Nordin, Liew King Hong, Mohd Ambar Yarmo, Muhammad Rahimi Yusop

    The Journal of Supercritical Fluids   Vol. 120 ( 2 ) page: 366-378   2017.2

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  102. Synthesis of hydrophilic carbon nanoparticles from amino acids by pulsed arc discharge over aqueous solution in argon under near-critical pressure Reviewed

    Yui Hayashi, Noriharu Takada, Wahyudiono, Hideki Kanda, Motonobu Goto

    The Journal of Supercritical Fluids   Vol. 120 ( 2 ) page: 403-407   2017.2

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  103. Extraction of Lipids from Wet Arthrospira platensis By Liquefied Dimethyl Ether Reviewed

    Rintaro HOSHINO, Masaki OGAWA, Kazuya MURAKAMI, WAHYUDIONO, Hideki KANDA, Motonobu GOTO

    Solvent Extraction Research and Development   Vol. 24 ( 1 ) page: 47-60   2017.1

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  104. Hydrogen Peroxide formation by electric discharge with fine bubbles Reviewed

    Yui Hayashi, Noriharu Takada, Wahyudiono, Hideki Kanda, Motonobu Goto

    Plasma Chemistry and Plasma Processing   Vol. 37 ( 1 ) page: 125-135   2017.1

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  105. Synthesis of Polyhedra Magnetite Particles by Hydrothermal Process under High Pressure Condition Reviewed

    Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto

    Journal of Engineering and Technological Sciences   Vol. 48 ( 6 ) page: 754-772   2016.12

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  106. Effect of solvent on nanoparticle production of β-carotene by a supercritical anti-solvent process Reviewed

    Hazuki Nerome, Siti Machmudah, Wahyudiono, Ryuichi Fukuzato, Takuma Higashiura, Hideki Kanda, Motonobu Goto

    Chemical Engineering & Technology   Vol. 39 ( 10 ) page: 1771-1777   2016.10

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  107. Functional Ingredients Extraction from Citrus Genkou by Supercritical Carbon Dioxide Reviewed

    Yukihiro Kawamoto, Yuriko Suidou, Takuya Suetsugu, Arata Takamizu, Masahiro Tanaka, Wahyudiono, Hideki Kanda, Motonobu Goto, Munehiro Hoshino

    Asian Journal of Applied Sciences   Vol. 4 ( 4 ) page: 833-838   2016.8

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  108. Economical wet extraction of lipid from labyrinthulea Aurantiochytrium limacinum by using liquefied dimethyl ether Reviewed

    Rintaro Hoshino, Kazuya Murakami, Wahyudiono, Siti Machmudah, Yuji Okita, Eiji Ohashi, Hideki Kanda, Motonobu Goto

    Engineering Journal   Vol. 20 ( 4 ) page: 145-153   2016.8

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  109. Functional ingredients extraction from Garcinia mangostana pericarp by liquefied dimethyl ether Reviewed

    Hazuki Nerome, Rintaro Hoshino, Shota Ito, Ryohei Esaki, Yuki Eto, Shion Wakiyama, Tanjina Sharmin, Motonobu Goto, Hideki Kanda, Kenji Mishima

    Engineering Journal   Vol. 20 ( 4 ) page: 155-162   2016.8

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  110. HYDROTHERMAL EXTRACTION OF PHYTOCHEMICAL COMPOUNDS FROM POLYGONUM CUSPIDATUM ROOTS IN A SEMI-BATCH REACTOR SYSTEM Reviewed International coauthorship

    Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto

    ARPN Journal of Engineering and Applied Sciences   Vol. 11   page: 8509-8518   2016.8

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  111. Generation of Multi-hollow Structured Poly(methyl methacrylate) Fibers by Electrospinning under Pressurized CO2 Reviewed

    Wahyudiono, Koichi Okamoto, Siti Machmudah, Hideki Kanda, Motonobu Goto

    Polymer Engineering & Science   Vol. 56 ( 7 ) page: 752-759   2016.7

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  112. Macroporous Zirconia Particles Prepared by Subcritical Water in Batch and Flow Processes Reviewed

    Siti Machmudah, Okky Putri Prastuti, Widiyastuti, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    Research on Chemical Intermediates   Vol. 42 ( 6 ) page: 5367-5385   2016.6

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  113. Nickel Nanoparticles Generated by Pulsed Laser Ablation in Liquid CO2 Reviewed

    Mardiansyah Mardis, Noriharu Takada, Siti Machmudah, Wahyudiono, Koichi Sasaki, Hideki Kanda, Motonobu Goto

    Research on Chemical Intermediates   Vol. 42 ( 5 ) page: 4581-4590   2016.5

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  114. An Innovative Method for the Extraction of Phenolic Compounds from Polygonum Cuspidatum Reviewed

    Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto

    Asian Journal of Applied Sciences   Vol. 4 ( 2 ) page: 339-347   2016.4

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  115. Extraction of beta-glucan by Hydrothermal Liquidization of Barley Grain in a Semi-Batch Reactor Reviewed

    Shoko Kodama, Tetsuya Shoda, Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto

    Separation Science and Technology   Vol. 51 ( 2 ) page: 278-289   2016.2

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  116. Extraction of phytochemicals from saffron by supercritical carbon dioxide with water and methanol as entrainer Reviewed International coauthorship

    Hazuki Nerome, Mika Ito, Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto

    The Journal of Supercritical Fluids   Vol. 107   page: 377-383   2016.1

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  117. Integrated Process for beta-glucan Concentrate from Ganoderma lucidum by Extraction and Micronization Reviewed International coauthorship

    Siti Machmudah, Shoko Kodama, Wahyudiono, Hideki Kanda, Motonobu Goto

    American Chemical Science Journal   Vol. 11 ( 4 ) page: Article no.ACSJ.22842(8pp)   2016.1

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  118. Solid fuel production from cattle manure by dewatering using liquefied dimethyl ether Reviewed

    Kazuyuki Oshita, Satoshi Toda, Masaki Takaoka, Hideki Kanda, Takashi Fujimori, Kazutsugu Matsukawa, Taku Fujiwara

    Fuel   Vol. 159   page: 7-14   2015.11

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  119. Enhancing Pressurized Water Extraction of beta-glucan from Barley Grain by Adding CO2 under Hydrothermal Conditions Reviewed

    Shoko Kodama, Tetsuya Shoda, Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto

    Chemical Engineering and Processing: Process Intensification   Vol. 97   page: 45-54   2015.11

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  120. 化学工学年鑑2015 超臨界流体・バイオマス・天然化合物(抽出・分離)

    神田 英輝

    化学工学   Vol. 79 ( 10 ) page: 778-779   2015.10

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  121. Effect of fine bubbles on electric discharge in water Reviewed

    Yui Hayashi; Noriharu Takada, Hideki Kanda, Motonobu Goto

    Plasma Sources Science and Technology   Vol. 24   page: 055023   2015.10

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  122. Hydrophilic polymer composites synthesized by electrospinning under dense carbon dioxide Reviewed International coauthorship

    Wahyudiono, Koichi Okamoto, Siti Machmudah, Hideki Kanda and Motonobu Goto

    Peer reviewed AIP Conference Proceedings   Vol. 1699   page: 040010-7pp   2015.9

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  123. Extraction of valuable compounds from mangosteen pericarps by hydrothermal assisted sonication Reviewed International coauthorship

    Siti Machmudah, Sarah Duta Lestari, Qifni Yasa' Ash Shiddiqi, Widiyastuti, Sugeng Winardi, Wahyudiono, Hideki Kanda, and Motonobu Goto

    Peer reviewed AIP Conference Proceedings   Vol. 1699   page: 060008-7pp   2015.9

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  124. Hot Compressed Water Extraction of Lignin by Using a Flow-Through Reactor Reviewed International coauthorship

    Wahyudiono, Siti Machmudah, Hideki Kanda, Motonobu Goto

    Engineering Journal   Vol. 19 ( 4 ) page: 22-44   2015.7

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  125. Subcritical water extraction of polysaccharides using semi-batsh extractor Reviewed

    Shoko Kodama, tetsuya Shoda, Wahyudiono, Siti Machmudah, Hideki Kanda, Motonobu Goto

    Modern Applied Science   Vol. 9 ( 7 ) page: 220-224   2015.7

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  126. Mechanism of Macroporous Zirconia Particles Formation Prepared by Hydrothermal Synthesis Reviewed International coauthorship

    Siti Machmudah, Okky Putri Prastuti, Widiyastuti, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    Advanced Materials Research   Vol. 1112   page: 538-541   2015.7

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  127. Preparation of Ceria-Zirconia Mixed Oxide by Hydrothermal Synthesis Reviewed International coauthorship

    Siti Machmudah, M. Akmal Hadian, Lenno Samodro K., Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    Modern Applied Science9   Vol. 9 ( 7 ) page: 134-139   2015.7

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  128. Magnetite Thin Film on Mild Steel Formed by Hydrothermal Electrolysis for Corrosion Prevention Reviewed International coauthorship

    Siti Machmudah, Rizka Zulhijah, Wahyudiono, Heru Setyawan, Hideki Kanda, Motonobu Goto

    Chemical Engineering Journal   Vol. 268   page: 76-85   2015.5

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  129. Molecular conversion of phytochemicals during supercritical fluid extraction process from plant materials Reviewed

    Chiho Uemori, Mika Ito, Hazuki Nerome, Hideki Kanda, Motonobu Goto

    Asia Pacific Confederation of Chemical Engineering Congress 2015: APCChE 2015, incorporating CHEMECA 2015     page: 2469-2474   2015.4

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  130. Subcritical Water Extraction of Xanthone from Mangosteen (Garcinia Mangostana Linn) Pericarp Reviewed

    Siti Machmudah, Widiyastuti, Wahyudiono, Hideki Kanda, Sugeng Winardi, Motonobu Goto

    Journal of Advanced Chemical Engineering   Vol. 5 ( 1 ) page: 117   2015.2

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  131. Extraction of carotenoids and lipids from algae by supercritical CO2 and subcritical dimethyl ether

    Motonobu Goto, Hideki Kanda, Wahyudiono, Siti Machmudah

    The Journal of Supercritical Fluids   Vol. 96   page: 245-251   2015.1

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  132. Energy-saving lipid extraction from wet Euglena gracilis by low boiling point solvent dimethyl ether Reviewed

    Hideki Kanda, Peng Li, Motonobu Goto, Hisao Makino

      Vol. 8 ( 1 ) page: 610-620   2015.1

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  133. 液化ジメチルエーテルを用いた褐炭からの省エネルギー水分抽出

    神田 英輝, 後藤 元信, 牧野 尚夫

    日本エネルギー学会誌   Vol. 93 ( 11 ) page: 1073-1082   2014.11

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  134. Simultaneous extraction of valuable substances and water from citrus pomace using liquefied dimethyl ether Reviewed International coauthorship

    Rintaro Hoshino, Wahyudiono, Siti Machmudah, Hideki Kanda, Motonobu Goto

    Peer reviewed Proceedings of the 2nd International Seminar on Fundamental & Application of Chemical Engineering     page: I03   2014.11

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  135. Simultaneous extraction of water and essential oil from citrus leaves and peels using liquefied dimethyl ether Reviewed

    Rintaro Hoshino, Wahyudiono, Siti Machmdah, Hideki Kanda, Motonobu Goto

    Journal of Nutrition & Food Sciences   Vol. 4   page: 1000301   2014.8

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  136. Extraction of lipids and astaxanthin from wet Haematococcus pluvialis by liquefied dimethyl ether Reviewed International coauthorship

    Panatpong Boonnoun, Yuko Kurita, Yuichi Kamo, Wahyudiono, Siti Machmudah, Yuji Okita, Eiji Ohashi, Hideki Kanda, Motonobu Goto

    Journal of Nutrition & Food Sciences   Vol. 4   page: 1000305   2014.8

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  137. Extraction of fucoxanthin from raw macroalgae excluding drying and cell wall disruption by liquefied dimethyl ether Reviewed

    Hideki Kanda, Yuichi Kamo, Siti Machmudah, Wahyudiono, Motonobu Goto

    Marine Drugs   Vol. 12   page: 2383-2396   2014.5

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  138. Simultaneous extraction of water and valuable substances from citrus leaves and peel using liquefied dimethyl ether Reviewed International coauthorship

    Rintaro Hoshino, Wahyudiono, Siti Machmudah, Hideki Kanda, Motonobu Goto

    Proceedings of European meetings on Supercritical Fluids     page: LSH33   2014.5

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  139. Micronization of fat-soluble functional pigment using supercritical carbon dioxide as anti-solvent Reviewed International coauthorship

    Hazuki Nerome, Siti Machmudah, Wahyudiono, Ryuichi Fukuzato, Takuma Higashiura, Hideki Kanda, Motonobu Goto

    Proceedings of European meetings on Supercritical Fluids     page: LSH34   2014.5

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  140. Extraction of rice bran oil by supercritical carbon dioxide and solubility consideration Reviewed International coauthorship

    Karin Tomita, Siti Machmudah, Wahyudiono, Ryuichi Fukuzato, Hideki Kanda, Armando T. Quitain, Mitsuru Sasaki, Motonobu Goto

    Separation and Purification Technology   Vol. 125   page: 319-325   2014.4

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  141. Formation of PVP Hollow Fibers by Electrospinning in One-Step Process at Sub and Supercritical CO2 Reviewed

    Wahyudiono, Siti Machmudah, Hideki Kanda, Satoko Okubayashi, Motonobu Goto

    Chemical Engineering and Processing: Process Intensification   Vol. 77   page: 1-6   2014.3

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  142. Synthesis of ZrO2 nanoparticles by hydrothermal treatment Reviewed International coauthorship

    Siti Machmudah, W. Widiyastuti, Okky Putri Prastuti, Tantular Nurtono, Sugeng Winardi, Wahyudiono, Hideki Kanda, Motonobu Goto

    Peer reviewed AIP Conference Proceedings   Vol. 1586   page: 166-172   2014.2

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  143. Fabrication of micro-hollow fiber by electrospinning process in near-critical carbon dioxide Reviewed International coauthorship

    Koichi Okamoto, Siti Machmudah, Hideki Kanda, Satoko Okubayashi, Ryuichi Fukuzato, Motonobu Goto

      Vol. 1586   page: 43-47   2014.2

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  144. Subcritical water extraction and direct formation of microparticulate polysaccharide powders from ganoderma lucidum Reviewed International coauthorship

    Yui Matsunaga, Siti Machmudah, Wahyudiono, Hideki Kanda, Mitsuru Sasaki, Motonobu Goto

    International Journal of Technology   Vol. 5 ( 1 ) page: 40-50   2014.2

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  145. Simultaneous production of bio-solid fuel and bio-crude from vegetal biomass using liquefied dimethyl ether Reviewed

    Peng Li, Hideki Kanda, Hisao Makino

      Vol. 116   page: 370-376   2014.1

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    DOI: 10.1016/j.fuel.2013.08.020

  146. Decomposition of Methyl Orange using Pulsed Discharge Plasma at Atmospheric Pressure: Effect of Different Electrodes Reviewed International coauthorship

    Yui Hayashi, Wahyudiono, Siti Machmudah, Noriharu Takada, Hideki Kanda, Koichi Sasaki, Motonobu Goto

    Japanese Journal of Applied Physics   Vol. 53   page: 010212   2014.1

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  147. Removal of Water Pollutants by Pulsed Discharge Plasma and Observation of Its Optical Emission Intensity at Atmospheric Pressure Reviewed

    Yui Hayashi, Wahyudiono, Siti Machmudah, Hideki Kanda, Noriharu Takada, Koichi Sasaki, Motonobu Goto

    Japanese Journal of Applied Physics   Vol. 52   page: 11NE02   2013.11

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  148. Production of decaffeinated green tea leaves using liquefied dimethyl ether Reviewed

    Hideki Kanda, Peng Li, Hisao Makino

    Food and Bioproducts Processing   Vol. 91   page: 376-380   2013.10

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  149. Fabrication of Gold and Silver Nanoparticles with Pulsed Laser Ablation under Pressurized CO2 Reviewed

    Siti Machmudah, Wahyudiono, Noriharu Takada, Hideki Kanda, Koichi Sasaki, Motonobu Goto

    Siti Machmudah, Wahyudiono, Noriharu Takada, Hideki Kanda, Koichi Sasaki, Motonobu Goto Advances in Natural Sciences: Nanoscience and Nanotechnology   Vol. 4 ( 4 ) page: 045011   2013.10

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    DOI: 10.1088/2043-6262/4/4/045011

  150. 藻から効率よく燃料を抽出する新技術を開発

    神田英輝

    化学(化学同人)   Vol. 68 ( 10 ) page: 75   2013.10

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  151. Direct water removing from frozen brown coal at -20C Reviewed

    Hideki Kanda, Peng Li, Hisao Makino

    Fuel   Vol. 111   page: 880-882   2013.9

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    DOI: 10.1016/j.fuel.2013.04.008

  152. 未利用廃熱をDMEで分離エネルギーに変換する湿潤バイオマスからのオイルと水の抽出手法

    神田英輝

    化学工学   Vol. 77 ( 9 ) page: 620-623   2013.9

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  153. Wet extraction of hydrocarbons from Botryococcus braunii by dimethyl ether as compared with dry extraction by hexane Reviewed

    Hideki Kanda*, Peng Li, Takeshi Yoshimura, Shigeru Okada

    Fuel   Vol. 105   page: 535   2013.3

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    We propose the use of liquid dimethyl ether (DME) as a solvent for extracting hydrocarbons and lipids from Botryococcus braunii Race B paste. The extraction yields and main elements of the extracts obtained from the B. braunii by our technique is nearly the same as by hexane Soxhlet extraction on dried mass. A qualitative analysis by silica gel thin layer chromatography suggested that DME also effectively extracted the specific hydrocarbons, botryococcenes from the wet B. braunii cells. Gas chromatography/mass spectrometry of DME extractes indicated the presence of a large amount of C32 to C34 botryococcenes the main components of B. braunii Race B. In contrast, hexane extracted not only C32 to C34, but also small amounts of C30 and C31 botryococcenes ?the minor components. The result shows that extraction differences between DME and hexane are not important.

    DOI: 10.1016/j.fuel.2012.08.032

  154. 液化ジメチルエーテルを用いた家畜糞の乾燥に関する研究

    戸田覚之, 大下和徹, 高岡昌輝, 松川和嗣, 藤原拓, 神田英輝

    環境工学研究フォーラム   Vol. 49   page: 107 - 109   2012.11

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  155. エクセルギー再生によりエネルギー収支をプラスにする微細藻類オイルの新抽出法

    神田英輝

    日本エネルギー学会誌   Vol. 91 ( 11 ) page: 1172–1176   2012.11

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  156. Lipids extracted from several species of natural blue-green microalgae by dimethyl ether: extraction yield and properties Reviewed

    Hideki Kanda*, Peng Li, Tsuyoshi Ikehara, and Mina Yasumoto-Hirose

    Fuel   Vol. 95   page: 88   2012.5

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    Recently, the authors proposed a simple method for the extraction of lipid from high-moisture microalgae by using dimethyl ether (DME) without drying, cell disruption, and heating of the extractant. Herein, the versatility of this method was evaluated using several species of natural blue?green microalgae. Direct extraction of lipids from various species of high-moisture microalgae was successfully achieved using this method, with an extraction yield of 9.9?40.1% of the dry weight of the microalgae. The lipids extraction yield and molecular weight distribution achieved using the DME extraction method is comparable to those achieved using the widely used Bligh-Dyer's (BD) method. The lipids were characterized by low oxygen/nitrogen and high carbon/hydrogen content with a high calorific value of 33.8 MJ/kg, reflecting the high quality of the extracted oil.

  157. Characteristics of Biosolids in Dimethyl Ether Dewatering Method Reviewed

    Kazuyuki Oshita*, Masaki Takaoka, Yusuke Nakajima, Shinsuke Morisawa, Hideki Kanda, Hisao Makino, and Nobuo Takeda

    Water Environment Research   Vol. 84 ( 2 ) page: 120   2012.2

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    In this study, a method for removing water from biosolids that uses dimethyl ether (DME) as an extractant was considered. This study evaluates the applicability of the DME dewatering method to biosolid cakes by using a DME flow-type experimental apparatus. It was found that a high dewatering ratio is clearly achieved by increasing the liquefied DME/biosolid ratio and lowering the liquefied DME linear velocity. As the liquefied DME/biosolid ratio was increased, the carbon content in dewatered biosolid showed a slight decrease and the TOC concentration in separated liquid increased significantly. Finally, the input energy Es to remove 1 kg of water from the biosolid cake, using both the DME dewatering method and the conventional drying method was estimated. The calculation shows that Es for the DME dewatering process is approximately a third of Es for the conventional thermal drying process.

  158. Simple extraction method of green crude from natural blue-green microalgae by dimethyl ether: Extraction efficiency on several species compared to the Bligh-Dyer's method Reviewed

    Hideki Kanda* and Peng Li

    Peer reviewed Linkoping Electronic Conference Proceedings   Vol. 1 ( 57 ) page: 530   2011.11

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    DOI: 10.3384/ecp11057530

  159. DMEを用いた加熱不要の脱水技術の開発

    神田英輝

    分離技術   Vol. 41 ( 4 ) page: 216-220   2011.8

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  160. バイオマスエネルギーをシンプルに実現する技術でエネルギーの未来を拓く

    神田 英輝

    日経サイエンス   Vol. 41 ( 8 ) page: 表紙裏見開き   2011.8

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  161. Solidification in Weakly Attractive Cylindrical Nanopores under Tensile Condition Reviewed

    Hideki Kanda*

    Adsorption   Vol. 17 ( 4 ) page: 695   2011.7

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    The authors clarified freezing points of the Lennard-Jones (LJ) condensate for strongly attractive cylindrical nanopores by using molecular dynamics (MD), and by thermodynamically predicting the results without using any adjustable parameters. In contrast to the Clapeyron equation, the obtained freezing points exhibited a significant dependence on the equilibrium bulk phase pressure, forming a remarkably skewed curve on a p?T diagram. In this paper, for weakly attractive cylindrical nanopores, freezing point depression under tensile conditions, similar to the authors previous study. The MD results show that the authors previous thermodynamic model successfully predicted freezing point depression for a bigger pore. However, for a smaller pore, obtained freezing points (liquid-solid coexistence curve) remarkably close to the bulk vapor-solid coexistence curve, and could not be predicted by the thermodynamic model.

    DOI: 10.1007/s10450-011-9365-z

  162. Sewage Sludge Dewatering Process Using Liquefied Dimethyl Ether as Solid Fuel Reviewed

    Kazuyuki Oshita*, Masaki Takaoka, Yusuke Nakajima, Shinsuke Morisawa, Hideki Kanda, Hisao Makino and Nobuo Takeda

    Dry. Technol.   Vol. 29 ( 6 ) page: 624   2011.6

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    This article describes the dewatering of sewage sludge using liquefied dimethyl ether (DME), which clarified the effect of sludge type and its particle size. Changes in the heating value of the dewatered sludge were also examined. In addition, the change in dewaterability upon reuse of the liquefied DME was investigated experimentally. Regardless of the nature of the sludge, its dewatering behavior was similar. The amount of dewatered water could be increased by decreasing the diameter of the sludge cake. Complete drying of the sludge cake via DME dewatering resulted in retention of approximately 96% of the heating value (17.7 MJ/kg-sludge) of the original sludge cake dry base (18.4 MJ/kg db). The DME could be recovered after extraction, and reuse experiments showed that liquefied DME dewatering performance was unchanged after five reuses.

    DOI: 10.1080/07373937.2010.519129

  163. 超難処理PCB汚染ヘドロ注視の浄化メカニズムの解析

    神田英輝

    ホソカワミクロン粉体工業振興財団2010年度年報   Vol. 18   page: 33-37   2011.5

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  164. 藻類バイオマスの高効率抽出

    神田英輝

    藻類バイオマス2011     page: 1-11   2011.3

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  165. Simple Extraction Method of Green Crude from Natural Blue-green Microalgae by Dimethyl Ether Reviewed

    Hideki Kanda* and Peng Li

    Fuel   Vol. 90 ( 3 ) page: 1264   2011.3

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    By using dimethyl ether as extractant, the green crude was successfully extracted from high-moisture natural blue-green microalgae (91.0% of water content) with a high extraction capacity at 40.1% of dry weight of the microalgae. Compared with previous methods, this method combined drying, cell disruption, and solvent extraction in one step.

    DOI: 10.1016/j.fuel.2010.10.057

  166. Deodorization and Dewatering of Biosolid by Using Dimethyl Ether Reviewed

    Hideki Kanda*, Mayumi Morita, Hisao Makino, Keizo Takegami, Akio Yoshikoshi, Kazuyuki Oshita, Masaki Takaoka and Nobuo Takeda

    Water Environment Research   Vol. 83 ( 1 ) page: 23   2011.1

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    We proposed a method for the deodorising and dewatering of biosolids. In the proposed method, liquefied dimethyl ether (DME) was used as an extractant for odorous components and water. We developed a bench-scale experiment to almost completely deodorize and dewater biosolids by using liquefied DME at room temperature. The deodorized and dewatered biosolids have sufficient caloric density and can be used as a carbon neutral fuel.

    DOI: 10.2175/106143010X12609736966847

  167. アオコからの緑の原油の高効率抽出技術

    神田英輝

    クリーンエネルギー   Vol. 19 ( 10 ) page: 59–63   2010.10

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  168. Energy-Efficient Coal Dewatering using Liquefied Dimethyl Ether Reviewed

    Hideki Kanda* and Hisao Makino

    Fuel   Vol. 89 ( 8 ) page: 2104   2010.8

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    In this study, we dewatered sub-bituminous coal mined in Warra, Indonesia, by using liquefied dimethyl ether (DME); no heating was required in this dewatering process. We achieved this dewatering both in a laboratory-scale experiment and using previously developed bench-scale equipment. We also examined the properties of the coal before and after dewatering and measured the amount of energy required by the equipment. We found that the maximum water extraction efficiency of liquefied DME was 98.3%. Further, the properties of the coal did not change after the dewatering treatment. The wastewater obtained by dewatering can be treated by existing wastewater treatment technologies. The energy consumed by the bench-scale equipment was 2069 kJ/kg-water; thus, this dewatering process using liquefied DME was confirmed to be effective and energy efficient.

    DOI: 10.1016/j.fuel.2010.02.019

  169. 微細藻類から『緑の原油』を取り出す ~簡単・省エネルギー・エコフレンドリーの三拍子~

    神田英輝

    電力中央研究所 環境・社会活動レポート2010     page: 46–50   2010.8

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  170. Dewatering of Electroplating Sludge Using Dimethyl Ether Reviewed

    Kazuyuki Oshita*, Kazuya Takeda, Masaki Takaoka, Hideki Kanda, Shinsuke Morisawa, Hisao Makino, and Nobuo Takeda

    Doboku Gakkai Ronbunshuu G   Vol. 66 ( 3 ) page: 96   2010.7

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    The suitability of using dimethyl ether (DME) in dewatering coal for the treatment of sewage sludge has been found empirically to be highly effective. We investigated the effectiveness of a method involving the use of DME for dewatering electroplating sludge and tried to clarify the mechanism and characteristics of the dewatering process. Two zinc-containing sludge samples were examined and the effect of the volume of liquefied DME on the dewatering process was assessed. During the initial dewatering phase, the dewatering ratio is dependent only on the saturation degree of water in liquefied DME. In the later phase, it depends proportionally on the water concentration in the sludge and has a pattern that reduces the dewatering rate as dewatering is proceeded. Moreover, the dewatering pattern can be expressed using one dewatering rate constant, k. The water contained in the sludge samples was analyzed using thermogravimetry/differential thermal analysis and the evaporation temperature range was determined. The water remaining in the samples after dewatering was found to be thermally stable and tightly bound. We further determined the amounts of total carbon and metal elements in the dewatered water and compared the concentrations to those specified in the Japan Water Pollution Quality Control Act. An important observation is that the dewatered water from the samples requires further processing before it can be discharged into the drainage system due to the presence of large amounts of Cu, Pb and Zn.

    DOI: 10.2208/jscejg.66.96

  171. アオコから緑の原油の抽出に成功

    神田英輝

    OHM   Vol. 97 ( 6 ) page: 2-3   2010.6

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  172. ガソリンと同等の発熱量を持つバイオ燃料『緑の原油』

    神田英輝

    産業とエネルギー   Vol. 24 ( 4 ) page: 19-21   2010.6

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  173. 分子シミュレーションを活用したナノ細孔内三態相平衡・液液相平衡の熱力学モデルの構築

    神田英輝

    日本吸着学会誌   Vol. 24 ( 1 ) page: 11-17   2010.4

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  174. Extraction of PCBs and Water from River Sediment Using Liquefied Dimethyl Ether as an Extractant Reviewed

    Kazuyuki Ohsita*, Masaki Takaoka, Shin-ichiro Kitade, Nobuo Takeda, Hideki Kanda, Hisao Makino, Tadao Matsumoto and Shinsuke Morisawa

    Chemosphere   Vol. 78 ( 9 ) page: 1148   2010.2

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    We investigated whether polychlorinated biphenyls (PCBs) and water could be simultaneously removed from river sediment by solvent extraction using liquefied dimethyl ether (DME) as the extractant. DME exists in a gaseous state at normal temperature and pressure and can dissolve organic substances and some amount of water; therefore, liquefied DME under moderate pressure (0.6?0.8 MPa) at room temperature can be effectively used to extract PCBs and water from contaminated sediment, and it can be recovered from the extract and reused easily. First, we evaluated the PCB and water extraction characteristics of DME from contaminated sediment. We found that 99% of PCBs and 97% of water were simultaneously extracted from the sediment using liquefied DME at an extraction time of 4320 s and a liquefied DME/sediment ratio of 60 mL g-1. The extraction rate of PCBs and water was expressed in terms of a pseudo-first-order reaction rate. Second, we estimated the amount of DME that was recovered after extraction. We found that 91?92% of DME could be recovered. In other words, approximately 5?10% of DME was lost during extraction and recovery. It is necessary to optimize this process in order to recover DME efficiently. The extraction efficiency of the recovered DME is similar to that of the pure DME. From the results, we conclude that solvent extraction using liquefied DME is suitable for extracting PCBs and water from contaminated sediment.

    DOI: 10.1016/j.chemosphere.2009.12.017

  175. Biosolid Dewatering Process Using Liquefied Dimethyl Ether as Solid Fuel Reviewed

    Kazuyuki Oshita*, Masaki Takaoka, Yusuke Nakajima, Shinsuke, Morisawa, Hideki Kanda, Hisao Makino, and Nobuo Takeda

    Proceedings of the Water Environment Federation, Residuals and Biosolids 2010   Vol. 2010 ( 4 ) page: 734   2010.1

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  176. 液化ジメチルエーテルによる底質中PCBsの回分式抽出と溶媒再利用に関する研究

    渥美幸也, 大下和徹, 高岡昌輝, 水野忠雄, 森澤眞輔, 神田英輝, 牧野尚夫

    環境工学研究フォーラム   Vol. 47   page: 237 - 239   2010

  177. Dewatering of a Superabsorbent Polymer by using Liquefied Dimethyl Ether Reviewed

    Hideki Kanda*, Kazuyuki Oshita, Kazuya Takeda, Masaki Takaoka, Hisao Makino, Shinsuke Morisawa and Nobuo Takeda

    Dry. Technol.   Vol. 28 ( 1 ) page: 30   2009.12

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    In this study, we evaluated the applicability of the dimethyl ether (DME) dewatering method originally developed for high-moisture coal to superabsorbent polymer (SAP) and disposable diapers. It was found that liquefied DME successfully extracts water from SAP and disposable diapers. However, the polypropylene outer film and polyurethane used in diapers tended to dissolve in the liquefied DME and were subsequently released with the water discharged. These compounds are highly viscous, making it difficult to remove them from the drain outlet of the prototype. Therefore, the mechanics of the drain outlet should be considered in future studies.

    DOI: 10.1080/07373930903423814

  178. 液化ジメチルエーテルを利用する環境対策技術

    神田 英輝, 牧野 尚夫

    粉体工学会誌   Vol. 46 ( 11 ) page: 825-827   2009.11

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  179. Triple Point of a Lennard-Jones Fluid in Nanopores with Zero Excess Pore Wall Energy Reviewed

    Hideki Kanda* and Minoru Miyahara

    Adsorpt. Sci. Technol.   Vol. 27 ( 8 ) page: 735   2009.10

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    We have examined the triple points of Lennard-Jones methane confined in slit-shaped nanopores, i.e. nanopores with zero excess potential energy, using a molecular dynamics technique developed by us in a previous study. The critical condensates in the pores were cooled in a stepwise manner and the triple points determined for different pore sizes. We observed that the triple point temperature was inversely related to the pore size, identical to the Gibbs-Thomson equation. Whilst the Gibbs-Thomson equation requires adjustable parameters, our triple point model could predict the pressure and temperature without the need for such parameters. As a consequence, our model demonstrates a higher degree of generalization than the Gibbs-Thomson equation.

    DOI: 10.1260/0263-6174.27.8.734

  180. Clean up Process for Oil-polluted Materials by Using Liquefied DME Reviewed

    Hideki Kanda* and Hisao Makino

    Journal of Environment and Engineering   Vol. 4 ( 2 ) page: 356   2009.9

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    The proposed technology is a new concept that aims at energy-efficient drying and cleanup for general purposes by the use of liquefied DME (dimethyl ether) gas. Large amounts of energy are required for the cleanup of the ground since the water contained in the soil hinders the extraction processes that use hydrophobic organic solvents. Therefore, we focus on the use of liquiefied DME, which is eco-friendly, as an extractant. The saturated pressure of DME is moderate?0.51 MPa at 20°C and 0.68 MPa at 30°C. Liquefied DME resolves high volume organic contaminants and water. Moreover, water can be easily separated from DME by flash distillation. This technology reduces the energy required for water-removal to half the latent heat of water. We almost completely removed water and other oily materials by using DME. DME was completely recycled and none of it remained in these materials. The world's first prototype of a DME deoiling/dewatering process is shown. The capacity of this system is 10 L. Because of the low normal boiling point (-25°C) of DME, it does not remain in the soil and it can thus be reused as an extractant. In this presentation, we show the general purpose deoiling and dewatering processes for several materials.

    DOI: 10.1299/jee.4.356

  181. 火力発電の高効率化と環境負荷低減策の進展

    神田英輝

    科学と工業   Vol. 83 ( 7 ) page: 321-325   2009.7

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  182. 液化ジメチルエーテルの種々の汚泥に対する脱水特性と その再利用性

    大下和徹, 武田和也, 高岡昌輝, 森澤眞輔, 神田英輝, 牧野尚夫

    環境衛生工学研究   Vol. 23 ( 3 ) page: 100-103   2009.7

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  183. 常温・省エネルギー脱水技術の開発状況-期待されるDME脱水法-

    神田 英輝, 牧野 尚夫

    下水道(環境新聞社)   Vol. 32 ( 7 ) page: 43-45   2009.6

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  184. 液化ジメチルエーテルを使い油汚染土壌を浄化する技術

    神田 英輝, 牧野 尚夫

    高圧ガス(高圧ガス保安協会誌)   Vol. 46 ( 3 ) page: 29-32   2009.3

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  185. DME利用型脱水プロセスの試作機による石炭脱水特性の解明

    神田 英輝、牧野 尚夫

    電力中央研究所報告   Vol. M08020   page: 1-9   2009.3

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  186. Sewage Sludge Dewatering Process Using Liquid Di-Methyl Ether as Solvent Reviewed

    Kazuyuki Oshita*, Masaki Takaoka, Hideki Kanda, Yusuke Nakajima, Nobuo Takeda, and Hisao Makino

    Journal of Japan Sewage Works Association-Research   Vol. 46 ( 556 ) page: 71   2009.2

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  187. Energy-saving dewatering technology for sewage sludge using liquefied dimethyl ether Reviewed

    Hideki Kanda*, Hisao Makino, Mayumi Morita, Keizou Takegami, Nobuo Takeda, and Kazuyuki Oshita

    J. Japan Soc. of Waste Management Experts   Vol. 19 ( 6 ) page: 409   2008.12

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    We applied DME (dimethyl ether)-based dewatering technology, which has been developed for highmoisture coal, to dewatered sewage sludge and successfully decreased the water content of sewage sludge from 78wt% to 30wt%. Moreover, we clarified that five minutes is enough to dewater sewage sludge as contact time. In addition, the dried sewage sludge was deodorized. Since the temperature of sewage water is approximately constant throughout the year, sewage water and air can be used as sources of heat for the evaporation and condensation of DME. Thus, DME-based dewatering technology can be thought of not only as a dewatering technology but also as a technology for recovery of heat from sewage water.

    DOI: 10.3985/jswme.19.409

  188. Application of extraction technology using liquid dimethyl ether to PCBs from river sediment Reviewed

    Masaki Takaoka, Kazuyuki Oshita, Shin-ichro Kitade, Nobuo Takeda, Hideki Kanda, Hisao Makino, Tadao Matsumoto and Shinsuke, Morisawa

    Organohalogen Compounds   Vol. 80   page: 2264-2267   2008.12

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  189. Liquid-Liquid Phase Separation of Binary Lennard-Jones Fluid in Slit Nanopores Reviewed

    Hideki Kanda* and Hisao Makino

    Adsorption   Vol. 14 ( 4-5 ) page: 485   2008.10

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    The capillary phase separation of a binary mixture of two truncated and shifted Lennard-Jones (LJ) Ar liquids in slit-shaped oxygen nanopores is examined. The LJ parameters?ε(Ar(A)?Ar(A))=ε(Ar(B)?Ar(B))=0.8ε(Ar(A)?Ar(B)) and 0.5ε(Ar(A)?O)?=?ε(Ar(B)?O)?were used to distinguish the two Ar liquids. The cut off distance for Ar was 3.5σ. We employed a molecular dynamics (MD) technique in which a pore space was connected with a bulk solution to easily determine the equilibrium bulk concentration. Liquid phase isotherms were obtained for pores with widths ranging from 5.5σ to 9.5σ, and the relation between the pore width and the phase separation concentration was determined. Each simulation was run until the bulk concentration attained equilibrium (1?2 μs). The MD results show that the Patrick model overestimates the bulk concentration for a given pore size. We proposed a modified Patrick model in which the pore wall potential is considered. In our model, the Gibbs-Tolman-Koenig-Buff effect is not considered for the interfacial tension since two surfaces of tension exist on both sides of the equimolar dividing surface of the two-Ar liquid phase. The two surfaces of tension neutralized Gibbs-Tolman-Koenig-Buff effect each other. The present simple model successfully describes the relation to prove its reliability.

    DOI: 10.1007/s10450-008-9121-1

  190. Energy-Saving Drying Technology of Porous Media by Using Liquefied DME Reviewed

    Hideki Kanda*, Hisao Makino and Minoru Miyahara

    Adsorption   Vol. 14 ( 4-5 ) page: 467   2008.10

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    Process design and energy requirement for a practical plant are investigated for an energy-saving drying (dewatering) process invented by the authors in 2002 for high-moisture porous materials. The basic concept of the process involves the extraction of water from a high-moisture porous material by bringing it in physical contact with liquefied dimethyl ether (DME) at room temperature. Water content of DME asymptotically increases to the saturation value and the high-moisture porous material is dried almost perfectly. DME from the DME-water mixture is vaporized by decompression. DME and water are separated by flash distillation. DME vapor is compressed and cooled in a heat exchanger, and the latent heat of condensation is reused to vaporize the DME in the heat exchanger. Multistage compression and multistage flash distillation are employed. After compression, the temperature of DME is less than 50?°C. Because specific heat ratio of DME is only 1.11, the energy consumption of the compressor is reduced. Considering the adiabatic efficiency of the compressor and the net thermal efficiency, the total energy for dewatering is about 1100 kJ per 1-kg-water-content of the material being dewatered This process has significant potential and is compact than the existing dewatering processes.

    DOI: 10.1007/s10450-008-9120-2

  191. 液化ジメチルエーテル脱水法が下水汚泥の性状に与える影響

    中島祐輔, 大下和徹, 高岡昌輝, 森澤眞輔, 武田信生, 神田英輝, 牧野尚夫

    環境衛生工学研究   Vol. 22 ( 3 ) page: 64-67   2008.7

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  192. 液化ジメチルエーテルを用いたPCB汚染底質処理の基礎検討

    大下和徹, 高岡昌輝, 北出真一郎, 武田信生, 神田英輝, 牧野尚夫, 松本忠生, 森澤眞輔

    環境衛生工学研究   Vol. 22 ( 3 ) page: 144-147   2008.7

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  193. Super-energy-saving Dewatering Method for High-specific-surface-area Fuels by using Dimethyl Ether Reviewed

    Hideki Kanda*

    Adsorpt. Sci. Technol.   Vol. 26 ( 5 ) page: 345   2008.6

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    There is a growing need for the economical dewatering of high-specific-surface-area fuels containing large amounts of water, such as coal and sewage sludge. The principle underlying conventional dewatering methods is evaporation of the water content by heating the fuels to a high temperature, but this approach consumes a considerable amount of energy. The Central Research Institute of the Electric Power Industry (CRIEPI) has developed a method for the extraction of this water through the use of dimethyl ether (DME), which liquefies at ordinary temperatures under the influence of a slight pressure. In this method, the water content in the fuel is extracted into the liquefied DME for separation from the fuel. After dewatering, the DME is depressurised, and subsequently vaporised, thereby leaving the separated water. Dewatering with an input energy of only 1109 kJ/kg water under ordinary conditions has been demonstrated theoretically.

    DOI: 10.1260/026361708787548792

  194. 液化ジメチルエーテルを用いた脱水技術の開発

    神田英輝

    産業とエネルギー   Vol. 22 ( 2 ) page: 48-51   2008.3

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  195. 抽出用液化DMEを再生利用する常温油除去プロセスの開発

    神田 英輝、牧野 尚夫

    電力中央研究所報告   Vol. M07009   page: 1-7   2008.3

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  196. 液化DME脱水技術の氷点下での凍結固体燃料脱水への適応性評価

    神田 英輝、牧野 尚夫

    電力中央研究所報告   Vol. M07013   page: 1-6   2008.3

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  197. ナノ細孔内における単純流体の相図と相平衡の熱力学:ミクロ不均一現象からマクロ制御因子への橋渡し

    宮原 稔, 神田 英輝

    表面   Vol. 46 ( 1 ) page: 1-18   2008.1

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  198. Super energy-saving dewatering process for high-moisture coal using DME Reviewed

    Hideki Kanda and Hisao Makino

    Peer reviewed Proceedings of the 4th Joint China/Japan Chemical Engineering Symposium     page: TQ536   2007.12

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  199. 液化ジメチルエーテル(DME)を用いた脱水技術を開発

    神田 英輝

    電中研ニュース   Vol. 445   page: 1-4   2007.12

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  200. 液化DME利用型・超高効率常温脱水プロセスの開発

    神田英輝

    日本機械学会誌   Vol. 110   page: 878   2007.11

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  201. 液化DME利用型・超高効率常温脱水プロセス

    神田英輝

    OHM   Vol. 94 ( 9 ) page: 10-11   2007.9

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  202. Freezing of Lennard-Jones Fluids in Cylindrical Nanopores under tensile condition Reviewed

    Hideki Kanda and Minoru Miyahara

    Adsorption   Vol. 13 ( 3-4 ) page: 191-195   2007.7

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    We have shown the Lennard-Jones (LJ) phase diagram for a slit-shaped nanopore by molecular simulations and thermodynamically predicted the results with no adjustable parameter. With this success, LJ phase diagrams are predictable. In this study, the freezing of an LJ CH4 capillary condensate under a tensile condition in a nonstructural carbon nanopore with a cylindrical geometry was examined using molecular dynamics (MD) simulation. We employ a unit cell in contact with a bulk vapor phase, which is useful for the determination of the bulk vapor pressure in equilibrium with the molecules in a pore. The MD simulation results show liquid-solid (amorphous) phase transitions with a variation in the bulk vapor pressure. The frozen particles are arranged in concentric circular regions along the wall similar to those reported by Maddox and Gubbins. The freezing points are determined from the variations in density, enthalpy, arrangement, and structural functions. The obtained liquid-solid coexistence points are found to exhibit a significant dependence of the freezing point on the equilibrium bulk vapor pressure, forming an extraordinarily skewed curve on the p-T diagram, in contrast to the bulk phase coexistence that is represented by an almost vertical line. The origin of the significant dependence is considered to be the Laplace effect on the capillary condensate similar to the case with a slit-shaped pore. A simple model, which the authors earlier presented for slit-shaped nanopores, successfully predicted the p-T relation of the freezing point for cylindrical nanopores as well.

    DOI: 10.1007/s10450-007-9066-9

  203. 液化DMEを水分抽出剤として利用する超高効率・常温脱水プロセスの開発

    神田英輝

    表面   Vol. 45 ( 8 ) page: 14-24   2007.4

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  204. 液化DMEを利用する常温動作・超高効率多孔質固体脱水プロセスの開発

    神田英輝

    日本吸着学会誌   Vol. 21 ( 4 ) page: 10-15   2007.4

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  205. 液化DMEを水分抽出剤として用いる高水分炭の脱水プロセスの概念設計と所要動力の試算

    神田 英輝、牧野 尚夫

    電力中央研究所報告   Vol. M06004   page: 1-11   2007.3

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  206. Sublimation Phenomena of Lennard-Jones Fluids in Slit Nanopores Reviewed

    Hideki Kanda and Minoru Miyahara

    The Journal of Chemical Physics   Vol. 126 ( 5 ) page: 054703   2007.2

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    Using molecular dynamics simulations, The authors studied the solid-vapor coexistence states of Lennard-Jones methane confined in slit-shaped graphite nanopores. Both the intrapore solid and extrapore vapor were simulated using a unit cell which they previously developed. Frozen critical condensates in the pores were cooled stepwise, and the equilibrium vapor pressure was determined at each temperature. The obtained solid-vapor coexistence curves were remarkably lower than that of the bulk phase. Their thermodynamic model successfully predicts the simulation results without the need to introduce any adjustable parameter, and thus proves its reliability.

  207. Solid-Phase Formation in Nanospace -Phase Diagram of Confined Lennard-Jones Fluids Reviewed

    Minoru Miyahara*, Hideki kanda

    Peer reviewed 3rd China/Japan Joint Chemical Engineering Symposium     page: TQ021   2005.12

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  208. Sublimation Phenomena in Slit Nanopores - Lennard-Jones Phase Diagram - Reviewed

    Hideki Kanda*, Minoru Miyahara, and Ko Higashitani

    Adsorption   Vol. 11 ( Suppl. 1 ) page: S295   2005.7

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    Sublimation phenomena of Lennard-Jones fluids in slit-shaped nanopores were examined. Vapor-phase pressure at which a solid phase forms in a pore at a constant temperature is determined by the authors' molecular dynamics technique. The obtained phase-boundary pressure is remarkably lower than that of the bulk phase. A simple model of the sublimation is presented, which successfully predicts the molecular dynamics results with no adjustable parameter. Thus, a whole Lennard-Jones phase diagram in slit-shaped nanopores can now be predicted.

    DOI: 10.1007/s10450-005-5940-5

  209. Method of Preventing Coal Ash Hardening by Humidifying or Mixing with Additives Reviewed

    Yoshiyuro Kishi, Hideki Kanda*, Hiromi Shirai, Yoshimichi Daijyou

    Journal of Society of Powder Technology, Japan   Vol. 42 ( 7 ) page: 460   2005.7

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    The aim of this study is to prevent the hardening of coal ash during transportation from power plants and storage. In order to prevent the coal ash from hardening, humidification and mixing with additives were applied. As a result, (1) humidification of coal ash at 40°C with air of 50-90%RH, the hardenability of coal ash greatly decreased because sulfur trioxide on the surface of the coal ash reacted with alkaline components such as calcium carbonate by humidification, (2) miximg coal ash with lime stone is the most effective method in reducing the hardenability because it reacts with the sulfur trioxide. The addition of 1-10% lime stone is necessary to prevent hardening.

    DOI: 10.4164/sptj.42.460

  210. Numerical Analysis of Coal Ash Bed Hardening by Water Condensation Reviewed

    Masashi Wada, Hideki Kanda*, Mitsuhiko Hata, Hisao Makino, Chikao Kanaoka

    Journal of Society of Powder Technology, Japan   Vol. 42 ( 5 ) page: 317   2005.5

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    In this study, hardening phenomena of coal ash beds in high-humidity condition are examined. We employ a diffusion simulation in clarifying the distribution of condensed water in coal ash beds, in which water vapor is absorbed into sulfur trioxide adhered on the surface of coal ash particles. Aqueous sulfuric acids solution formed by the absorption is in equilibrium with the ambient water vapor. The diffusion rate of water vapor is proportional to the difference between the pressure and ambient water vapor pressure. The simulation successfully describes the results of previous experiment, at a constant temperature, with the variations in the equilibrium moisture and particle diameter of coal ash. Moreover, it is clarified that the relationship between water content and hardening phenomena is very similar for various coal ashes, with a correction of particle diameter of coal ash and the volume of condensate bridging between particles.

    DOI: 10.4164/sptj.42.317

  211. 液化DME脱水法による石炭脱水機構-分子動力学による脱水挙動の把握と脱水平衡式の構築-

    神田 英輝、白井 裕三、日恵井 佳子

    電力中央研究所報告   Vol. W04012   page: 1-8   2005.3

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  212. Study on Influential Factor in Hardening Phenomena of Coal Ash Bed Reviewed

    Kouichi Higashiyama, Hideki Kanda*, Hiromi Shirai, Hisao Makino, Ryouichi Kurose

    Journal of Society of Powder Technology, Japan   Vol. 41 ( 7 ) page: 508   2004.7

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    In this study, we examined influences of temperature, humidity and coal ash characteristics on hardening phenomena of coal ash beds. Coal ash beds were moistened and hardened at a high relative humidity and we found that hardening is prevented by removing sulfur trioxide on the surface of coal ash, e. g., by washing it in water or by contacting it with ammonia gas. Therefore, sulfur trioxide on the surface of coal ash plays an important role on the hardening of coal ash bed. In addition, moistened coal ash bed was hardened more by drying. The mechanism of hardening is such that alkaline materials in coal ash react with sulfuric acid formed by the adsorbed moisture and sulfur trioxide to produce sulfates by the neutralization reaction. Crystalline of sulfate, which is formed by drying, interconnects coal ash particles.

    DOI: 10.4164/sptj.41.508

  213. Triple point of Lennard-Jones Fluid in Slit Nanopore: Solidification of Critical Condensate Reviewed

    Hideki Kanda, Minoru Miyahara and Ko Higashitani

    The Journal of Chemical Physics   Vol. 120 ( 13 ) page: 6173-6179   2004.4

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    We report the results of a molecular dynamics simulation that looked for the triple point of Lennard-Jones fluid in slit-shaped nanopores. The simulation method employed for this purpose is able to maintain vapor?liquid coexistence in a nanopore at a specific equilibrium bulk-phase pressure. The triple point is the freezing point of the critical condensate. The triple-point temperature could be higher or lower than the bulk triple point, depending on the pore size. This is thought to be due to two opposing factors: the elevating effect of the pore-wall potential energy, and the depressing effect of the capillary condensate's tensile condition. Because of the cancellation, the deviation of the triple-point temperature from the bulk triple-point temperature was not considered significant. The pressure of the triple point, however, was significantly different from that of the bulk triple point. A simple model to describe the triple point is developed and shown to agree well with the results of the simulation. The importance of the two factors in nanoscale pores, which cannot be described by the classic Gibbs?Thomson equation, is emphasized.

    DOI: 10.1063/1.1652431

  214. 石炭の簡易脱灰技術の基礎検討 -脱灰性能におよぼす粉砕方式の影響-

    日恵井 佳子、白井 裕三、神田 英輝

    電力中央研究所報告   Vol. W03023   page: 1-12   2004.3

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  215. Detection of Freezing Point Elevation in Slit Nanospace by Atomic Force Microscopy Reviewed

    Minoru Miyahara*, Masanobu Sakamoto, Hideki Kanda, and Ko Higashitani

    Peer reviewed Proceedings of The 3rd Pacific Basin Conference on Adsorption Science and Technology     page: 234   2003.5

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    DOI: 10.1142/9789812704320_0039

  216. 簡易脱灰技術の基礎検討-石炭中灰分の分布状態と比重分離法による灰分除去特性の評価-

    香川 佳子、白井 裕三、神田 英輝

    電力中央研究所報告   Vol. W01019   page: 1-11   2003.3

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  217. 石炭の簡易脱灰技術の基礎検討-脱灰性能におよぼす石炭中灰分分布状態および粉砕粒径の影響-

    日恵井 佳子、白井 裕三、神田 英輝

    電力中央研究所報告   Vol. W03002   page: 1-9   2003.3

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  218. Freezing Point Elevation in Nanospace detected directly by Atomic Force Microscopy Reviewed

    Minoru Miyahara*, Masanobu Sakamoto, Hideki Kanda and Ko Higashitani

    Studies in Surface Science and Catalysis   Vol. 144   page: 411   2002.12

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    DOI: 10.1016/S0167-2991(02)80162-8

  219. 微粉炭火力用燃料の多様化 -環境性の向上と発電コストの低減-

    牧野尚夫、池田道隆、日恵井佳子、神田英輝、小野哲夫

    電中研レビュー   Vol. 46   page: 87-100   2002.11

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  220. 溶剤置換法による石炭脱水技術の検討-液化DMEによる脱水手法の基礎検討-

    神田 英輝、白井 裕三、香川 佳子

    電力中央研究所報告   Vol. W01013   page: 1-18   2002.6

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  221. Triple Point in Slit Nanopore: Determination by Molecular Dynamics and its Modeling Reviewed

    Minoru Miyahara*, Hideki Kanda and Ko Higashitani

    Peer reviewed Proceedings of Fundamentals of Adsorption 7     page: 975   2002.5

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  222. 簡易脱灰技術の基礎検討-顕微鏡画像を用いた石炭中灰分分布状態の定量化手法の検討-

    香川 佳子、白井 裕三、神田 英輝

    電力中央研究所報告   Vol. W01016   page: 1-14   2002.3

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  223. ナノ細孔内相転移モデルの構築と検証およびナノ細孔特性評価法への応用

    神田英輝

    日本吸着学会誌   Vol. 15 ( 1 ) page: 12-17   2001.4

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  224. 石炭の簡易脱灰技術の基礎検討-石炭中灰分の分布状態と比重分離法による灰分除去特性の評価-

    香川 佳子、白井 裕三、神田 英輝

    電力中央研究所報告   Vol. W00019   page: 1-11   2001.3

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  225. Molecular Simulation Study on Freezing in Nano-Pores Reviewed

    Minoru Miyahara*, Hideki Kanda, Ko Higashitani and Keith E. Gubbins

    Studies in Surface Science and Catalysis   Vol. 128   page: 31   2000.12

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    DOI: 10.1016/S0167-2991(00)80006-3

  226. Solidification of LJ Fluid in Cylindrical Nano-Pores and Its Geometrical Hindrance Effect: A Monte Carlo Study Reviewed

    Hideki Kanda, Minoru Miyahara*, and Ko Higashitani

    Langmuir   Vol. 16 ( 22 ) page: 8529   2000.10

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    Grand canonical Monte Carlo (GCMC) simulations have been conducted to investigate freezing phenomena of Lennard-Jones (LJ) methane confined in cylindrical nanopores of reduced pore diameter ranging from 4.5 to 9.5 with saturated vapor as equilibrium bulk condition. The arrangement of the LJ particles in frozen state is found to form a hexagonal array within each concentric circular layer. Nonmonotonic dependence of freezing point against pore diameter, which is observed in strongly attractive pore made of carbon, is interpreted as a result of competition between geometrical hindrance effect of a wall's shape and compression effect of a wall's attractive potential. Geometrical hindrance effect, which originates from excess energy of cylindrical frozen state relative to the fcc lattice state, is clarified to become stronger for smaller pore size. The latent heat is also smaller for smaller pore size. We model the shift of freezing point in cylindrical pore considering the geometrical hindrance effect, and its reliability is verified successfully through comparison with the GCMC results.

    DOI: 10.1021/la991659p

  227. 制限空間内相転移モデルの構築とナノ細孔特性評価法への応用

    神田 英輝

    粉体工学会誌   Vol. 37 ( 10 ) page: 761-762   2000.10

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  228. Verification of Condensation Model for Cylindrical Nano-Pores : Analysis of Nitrogen Isotherm for FSM-16 Reviewed

    Hideki Kanda, Minoru Miyahara*, Tomohisa Yoshioka and Morio Okazaki

    Langmuir   Vol. 16 ( 16 ) page: 6622   2000.7

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    An improved condensation model for the estimation of pore-size distribution in the range of nanometers is examined. In the authors' previous paper, the model proved its reliability in computer experiments employing the molecular dynamics technique. The model is tested here in a real experimental system with a MCM-41-like ordered mesoporous silicate, FSM-16. The study includes how to find the adsorbate-solid interaction strength, which is taken into account as an additional contribution for condensation other than the Kelvin effect. The true pore size of the material is separately determined to be 3.2 ± 0.2 nm by high-resolution transmission electron microscopy observation, and by a colloidal particle adsorption method. The conventional model for condensation, the Kelvin model, underestimates the pore size of FSM-16 to be 2.5 nm from the nitrogen isotherm. The present model successfully predicts the pore size to be 3.4 nm, and proves its reliability in the real experimental system. The effect of the pore wall's potential on the capillary coexistence relation is further discussed comparing ordered mesoporous silicates and the usual silica materials.

    DOI: 10.1021/la991575g

  229. Condensation Model for Cylindrical Nano-Pores Applied to Realistic Porous Glass Generated by Molecular Simulation Reviewed

    Hideki Kanda, Minoru Miyahara* and Ko Higashitani

    Langmuir   Vol. 16 ( 14 ) page: 6064   2000.6

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    DOI: 10.1021/la9915769

  230. Solid-Liquid Phase Transition of Lennard-Jones Fluid in Slit Pores under Tensile Condition Reviewed

    Minoru Miyahara*, Hideki Kanda, Mutsumi Shibao, and Ko Higashitani

    The Journal of Chemical Physics   Vol. 112 ( 22 ) page: 9909-9916   2000.6

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    The effect of equilibrium vapor-phase pressure onto freezing of a simple fluid in a nanopore is examined. We employ a molecular dynamics (MD) technique in a unit cell with imaginary gas phase, which has the benefit of easy determination of equilibrium vapor pressure. The method is shown to give consistent results with those by the grand canonical Monte Carlo (GCMC) method, and to have better feature of smaller degree of hysteresis between freezing and melting. The MD simulations showed liquid?solid phase transitions, at a constant temperature, with the variation in the equilibrium vapor-phase pressure below the saturated one. Thus-determined solid?liquid coexistence lines exhibited significant dependence of the freezing point against small changes in the bulk?phase vapor pressure, which implies the importance of tensile effect on freezing in nanopores. The capillary effect on the shift in freezing point was successfully described by a simple model based on continuum and isotropic assumption, even in a pore as small as 2 nm in width.

  231. Extraordinary Skewed Solid-Liquid Coexistence for Tensile Fluid in Nanopores and Its Origin: A Molecular Simulation Study Reviewed

    Minoru Miyahara*, Hideki Kanda, Mutsumi Shibao and Ko Higashitani

    Peer reviewed Proceedings of The 2nd Pacific Basin Conference on Adsorption Science and Technology     page: 431   2000.5

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    DOI: 10.1142/9789812793331_0086

  232. Modeling Capillary Condensation in Cylindrical Nano-Pores: Molecular Dynamics Study Reviewed

    Minoru Miyahara*, Hideki Kanda, Tomohisa Yoshioka and Morio Okazaki

    Langmuir   Vol. 16 ( 9 ) page: 4293   2000.3

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    We modeled condensation phenomena within cylindrical nanopores as a possible replacement for the Kelvin model that underestimates nanometer order pore sizes. The proposed model follows the simple concept of a continuum assumption similar to that for the Kelvin model. The difference was in the introduction of the contribution of the pore-wall potential and the curvature-dependent surface tension in our model. A molecular dynamics (MD) technique developed by the authors for isotherm determination was employed to test the concept and the model. Several isotherms for N2-like Lennard-Jones (LJ) particles in a silicate-like cylindrical pore with various diameters from 2 to 4 nm were obtained through MD simulations, and a relation between pore diameter and critical condensation pressure was determined. The present model successfully described the relation to demonstrate its reliability. The validity of the proposed model was examined also from the aspect of the shape of the meniscus and the pressure profile in the condensed phase, and gave fairly good agreement.

    DOI: 10.1021/la991227e

  233. Condensation Model for Cylindrical Nano-Pores Applied to Mesoporous Silicate FSM-16 Reviewed

    Hideki Kanda, Minoru Miyahara*, Tomohisa Yoshioka and Morio Okazaki

    Peer reviewed Proceedings of Fundamentals of Adsorption 6     page: 321   1998.5

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  234. Molecular Dynamics Study on Condensation in Cylindrical Nano-pores -Modeling and Verification- Reviewed

    Minoru Miyahara*, Hideki Kanda, Tomohisa Yoshioka and Morio Okazaki

    Peer reviewed Proceedings of Fundamentals of Adsorption 6     page: 249   1998.5

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  235. シリンダ状ナノ細孔内凝縮モデルとナノ細孔径評価-MD法およびメソポーラスシリカを用いた検証-

    神田 英輝、宮原 稔、吉岡 朋久、岡崎 守男

    Adsorption News   Vol. 12 ( 1 ) page: 20-21   1998.4

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  236. Single-Electrode Transient Behavior for Electric Double Layer Capacitor Composed of Nano-Porous Carbon Electrode. Reviewed

    Satoshi Iwasaki, Hideki Kanda, Minoru Miyahara* and Morio Okazaki

    Kagaku Kogaku Ronbunshuu   Vol. 23 ( 4 ) page: 519   1997.7

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    Single-electrode transient behavior was measured mainly during the discharging process for a model cell of electric double layer capacitor with nano-porous carbon electrodes and reference electrode. Apparent conductivity in the cell, which we call " effective conductivity," is determined with approximation of current in transient behavior to a one-dimensional electrophoretic model. A comparison of effective conductivity with conductivity of bulk solution suggests an interesting mechanism of transfer of electrolyte ions. The difference in transient behavior between various electrolyte ions was not conspicuous in spite of distinctive differences in conductivity of each bulk solution. The large pore diameter of the carbon electrode results in rapid transient behavior and such an electrode should be suitable for rapid charge and discharge. The effect of origin of carbon electrode is found to be significant to bring considerable differences in discharge rate. However, the difference in transient behavior that was caused by materials for carbon electrode becomes smaller for lower concentrations of electrolyte solution. Effective conductivities for all experiments do not directly reflect conductivities of bulk solution of each electrolyte. This implies that electrolyte ions are transported based not only on the electrophoretic effect, but also on a mechanism similar to surface diffusion.

    DOI: 10.1252/kakoronbunshu.23.519

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Books 22

  1. 高圧力の科学・技術事典

    神田英輝など( Role: Joint author)

    朝倉書店  2021.12 

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    Language:Japanese Book type:Scholarly book

  2. 藻類培養技術

    ( Role: Contributor)

    情報機構  2021.10  ( ISBN:978-4-86502-219-3

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    Total pages:324   Book type:Scholarly book

  3. Advances in Food Science

    Hideki Kanda, Yuji Fukuta, Wahyudiono, Motonobu Goto(Enhancement of Lipid Extraction from Soya Bean by Addition of Dimethyl Ether as Entrainer into Supercritical Carbon Dioxide)

    Vide Leaf   2021.9 

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    Language:English Book type:Scholarly book

  4. 藻類応用の技術と市場

    加藤美砂子, 今村壮輔, 宮下英明, 齋藤猛, 松本光史, 増田篤稔, 神田英輝他( Role: Joint author)

    シーエムシー出版  2020.8 

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    Language:Japanese Book type:Scholarly book

  5. バイオリファイナリーと分離技術

    神田英輝など( Role: Joint author)

    日本液体清澄化技術工業会   2020.7 

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    Total pages:166   Language:Japanese Book type:Scholarly book

  6. Sustainable Seaweed Technologies

    Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto( Role: Joint author)

    Elsevier  2020.5 

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    Total pages:732   Language:English Book type:Scholarly book

  7. Encyclopedia of Sustainability Science and Technology; Chapter "Supercritical Fluid Extraction and Fractionation"

    Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto( Role: Contributor)

    Springer  2019.2 

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    Language:English Book type:Scholarly book

  8. Green Electrospinning International journal

    Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto( Role: Contributor)

    De Gruyter  2018.11  ( ISBN:978-3-11-058139-3

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    Language:Japanese Book type:Scholarly book

  9. 化学工学の進歩シリーズ; 物質循環とマテリアル開発; 超臨界・亜臨界流体を用いた有機マテリアルの抽出分離

    神田英輝、後藤元信( Role: Contributor)

    三恵社  2018.11  ( ISBN:978-4-86487-968-2

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    Total pages:217   Language:Japanese Book type:Scholarly book

  10. Water Extraction of Bioactive Compound; Chapter "Hydrolysis of Biopolymers in Near Critical and Subcritical Water"

    Siti Machmudah, Wahyudiono, Hideki Kanda, Motonobu Goto( Role: Joint author)

    Elsevier  2017.9  ( ISBN:9780128093801

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    Language:English Book type:Scholarly book

  11. 藻類由来バイオ燃料と有用物質

    神田 英輝 ( Role: Joint author)

    シーエムシー出版  2016.11 

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    Language:Japanese

  12. 躍進する超臨界流体技術-新しいプロセスの原理とその実用化-

    後藤 元信、神田 英輝、堀添 浩俊、佐古 猛、内田 博久、大嶋 正裕、奥林 里子、川崎 慎一朗、福里 隆一( Role: Joint author)

    コロナ社  2014.11 

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    Language:Japanese

  13. 分離技術のシーズとライセンス技術の実用化 乾燥や細胞破壊が不要な微細藻類からの油脂抽出技術

    神田 英輝、後藤 元信( Role: Joint author)

    分離技術会  2014.10  ( ISBN:978-4-9908079-7

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    Language:Japanese

  14. 藻類の培養とその事業化・高収益化に向けた最新技術

    神田 英輝( Role: Joint author)

    情報機構  2013.6  ( ISBN:978-4-86502-025-0

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    Language:Japanese

  15. バイオマス・プロセス・ハンドブック

    化学工学会・日本エネルギー学会( Role: Joint author)

    オーム社  2012.5  ( ISBN:978-4-274-21218-5

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    Language:Japanese

  16. DME Handbook Supplement

    Japan DME Forum( Role: Joint author)

    Japan DME Forum  2011.10  ( ISBN:978-4-9903839-1-6

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    Language:English

  17. DMEハンドブック追補

    日本DMEフォーラム( Role: Joint author)

    日本DMEフォーラム  2011.4  ( ISBN:978-4-274-21024-2

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    Language:Japanese

  18. 藻類バイオマス工業利用における技術プロセス

    神田英輝( Role: Contributor)

    東京メガセミナー  2011.3 

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    Total pages:86   Language:Japanese Book type:General book, introductory book for general audience

  19. 藻類バイオマスにおける探索・培養・回収・抽出技術とビジネスチャンス

    神田英輝( Role: Contributor)

    東京メガセミナー  2010.10 

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    Total pages:115   Language:Japanese Book type:General book, introductory book for general audience

  20. 未利用バイオマスの活用技術と事業性評価

    サイエンス&テクノロジー( Role: Joint author)

    サイエンス&テクノロジー  2010.9  ( ISBN:978-4-86428-005-1

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    Language:Japanese

  21. 藻類の特性とバイオ燃料生産に関する技術動向

    神田英輝( Role: Contributor)

    東京インフォメーションセンター  2009.12 

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    Total pages:106   Language:Japanese Book type:General book, introductory book for general audience

  22. CARBON MATERIALS : Theory and Practice

    Research Signpost( Role: Joint author)

    Research Signpost  2008.12  ( ISBN:978-81-308-0247-3

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    Language:English

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Presentations 55

  1. 低沸点弱極性溶媒DMEを用いる乾燥不要の油脂抽出技術 Invited

    神田 英輝

    JST/OPERA機能性バイオ共創コンソーシアム・東京大学大学院新領域創成科学研究科 第10回「機能性バイオ」ミニシンポ 

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    Event date: 2020.12

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  2. カロテノイドのcis異性化による物性変化を利用した超臨界流体急速膨張法によるカロテノイドナノ粒子の調製 Invited

    神田 英輝

    東洋食品研究所講演会 

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    Event date: 2019.10

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  3. 水処理システムと湿式抽出法による藻類の高効率燃料化の融合と実用化 Invited

    神田 英輝

    農学国際教育研究センター第18回オープンフォーラム 

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    Event date: 2019.10

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  4. 南アフリカでバイオ燃料をつくるはなし Invited

    神田 英輝

    名古屋大学オープンレクチャー2019 

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    Event date: 2019.3

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

    Country:Japan  

  5. 乾燥⼯程が不要な微細藻類からの油脂抽出⼿法について Invited

    神田 英輝

    JCOAL技術者セミナー 

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    Event date: 2019.3

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  6. 超臨界・亜臨界流体を用いた有機マテリアルの抽出分離 International conference

    神田英輝、後藤元信

    化学工学の進歩シリーズ・講習会 

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    Event date: 2018.11

    Language:Japanese   Presentation type:Public lecture, seminar, tutorial, course, or other speech  

    Country:Japan  

  7. 液化ジメチルエーテルを用いるブタ大動脈からのスキャフォールド作成 Invited International conference

    神田 英輝

    化学工学会 第50回秋季大会 

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    Event date: 2018.9

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  8. 液化ジメチルエーテル抽出法による微細藻類の燃料化におけるエネルギー収支の改善 Invited

    神田 英輝

    化学工学会 第50回秋季大会 

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    Event date: 2018.9

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  9. 亜臨界流体中の抽出分離とプラズマ反応 Invited

    神田 英輝

    化学工学会東海支部・未来の化学工学を考える会 

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    Event date: 2018.9

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  10. 亜臨界流体のバイオ燃料の抽出やナノ複合粒子のプラズマ合成への利用 Invited

    神田 英輝

    化学工学会超臨界流体部会第17回サマースクール 

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    Event date: 2018.7 - 2018.8

    Language:English   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  11. 乾燥や細胞破壊が不要な微細藻類からの油脂抽出技術 Invited

    神田英輝、後藤元信

    分離技術会年会2018 

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    Event date: 2018.5

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

    Country:Japan  

  12. 藻からバイオ燃料を取り出すはなし

    神田 英輝

    名古屋大学オープンレクチャー2018 

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    Event date: 2018.3

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

    Country:Japan  

  13. カロテノイドのcis異性化による物性変化を利用した超臨界流体急速膨張法によるカロテノイドナノ粒子の調製 Invited

    神田 英輝

    東洋食品研究所講演会 

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    Event date: 2018.2

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  14. Lipid Extraction from Wet Microalgae by Liquefied Dimethyl Ether Invited International conference

    Hideki Kanda, Wahyudiono, Motonobu Goto

    Supergreen2017 

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    Event date: 2017.12

    Language:English   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  15. 低沸点弱極性溶媒による微細藻類からの油脂抽出とスキャホールド作成への応用 Invited

    神田 英輝

    JST CRESTさきがけ 藻類・水圏微生物の機能解明と制御によるバイオエネルギー創成のための基盤技術の創出領域 藻類バイオエネルギー公開シンポジウム 

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    Event date: 2017.11

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  16. Decomposition of organic compounds by discharge plasma at gas/liquid interface Invited International conference

    Motonobu Goto, Shigenori Takahashi, Kakeru Mano, Yui Hayashi, Noriharu Takada, Wahyudiono, Hideki Kanda

    The 14th International Symposium on Persistent Toxic Substances 

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    Event date: 2017.11

    Language:English   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  17. SYNTHESIS OF CARBON NANOPARTICLES BY DISCHARGE PLASMA AT AMBIENT TO PRESSURIZED GAS/LIQUID INTERFACE Invited International conference

    Motonobu Goto, Yui Hayashi, Kakeru Mano, Shigenori Takahashi, Noriharu Takada, Wahyudiono, Hideki Kanda

    the 4th International Symposium on Hybrid Materials and Processing (HyMaP2017) 

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    Event date: 2017.11

    Language:English   Presentation type:Oral presentation (invited, special)  

    Country:Korea, Republic of  

  18. Fabrication of hollow fiber by electrospinning in high pressure carbon dioxide Invited International conference

    Motonobu Goto, Hiroyuki Ozawa, Wahyudiono, Hideki Kanda

    The 15th International Conference on Advanced Materials (IUMRS-ICAM 2017) 

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    Event date: 2017.8 - 2017.9

    Language:English   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  19. 液化ジメチルエーテルを用いる抽出・晶析手法 Invited

    神田英輝

    日本材料学会第66期学術講演会 

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    Event date: 2017.5

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  20. Swirl Mixing Micro Device for Supercritical Anti-solvent Micronization Invited International conference

    Motonobu Goto, Chiho Uemori, Tomohiko Kodama, Wahyudiono, Hideki Kanda, Shin-ichiro Kawasaki

    16th European Meeting on Supercritical Fluids  

     More details

    Event date: 2017.4

    Language:English   Presentation type:Oral presentation (keynote)  

    Country:Japan  

  21. 液化ジメチルエーテルによる微細藻類からの油脂抽出

    神田 英輝

    分離技術会東海地区見学講演会 

     More details

    Event date: 2016.10

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

    Country:Japan  

  22. 微細藻類からのバイオ燃料生産

    神田 英輝

    あいちサイエンスフェスティバル2016 

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    Event date: 2016.10

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

    Country:Japan  

  23. Energy-saving extraction of lipids from wet microalgae by low-boiling solvent International conference

    Hideki KANDA

    11th International Marine Biotechnology Conference 

     More details

    Event date: 2016.8 - 2016.9

    Language:English   Presentation type:Oral presentation (invited, special)  

    Country:United States  

  24. 液化DMEなどの高圧流体を用いた抽出・晶析手法

    神田英輝

    化学工学会マイクロ化学プロセス分科会2016年討論交流会 

     More details

    Event date: 2016.7

    Language:Japanese   Presentation type:Symposium, workshop panel (nominated)  

    Country:Japan  

  25. 同軸二重ノズル噴射型超臨界CO2貧溶媒によるサブマイクロ・カルテノイド粒子の調製

    神田 英輝

    2015年度粉体工学会春期研究発表会 

     More details

    Event date: 2015.5

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  26. 液化DMEにより低温廃熱を分離エネルギーに変換する湿潤微細藻類の油脂抽出法

    神田 英輝

    第45回中部化学関係学協会支部連合秋季大会 

     More details

    Event date: 2014.11

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  27. 亜臨界DME抽出技術

    神田 英輝

    化学工学会第48回化学工学の進歩講習会 

     More details

    Event date: 2014.11

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  28. 微細藻類燃料のエネルギー収支のプラス化技術

    神田 英輝

    科学技術振興機構サイエンスアゴラ2014 

     More details

    Event date: 2014.11

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  29. 液化DMEによる乾燥・加熱処理・細胞破壊が不要な微細藻類からの油脂抽出法

    神田 英輝

    藻類バイオ燃料生産研究会 

     More details

    Event date: 2014.3

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  30. 液化DMEによる乾燥・加熱・細胞破壊が不要な 微細藻類からの油脂抽出法

    神田 英輝

    グローバル・サステイナブル・テクノロジー研究会 

     More details

    Event date: 2014.3

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  31. 乾燥・加熱処理・細胞破壊が不要な微細藻類からの油脂抽出手法

    神田 英輝

    化学工学会次世代エネルギー社会検討委員会 

     More details

    Event date: 2014.1

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  32. 草木質系バイオマスの常温脱水脱油技術による石炭・油代替燃料への転換

    神田 英輝

    環境省 循環型社会形成推進研究発表会 

     More details

    Event date: 2013.12

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  33. Extraction of lipids and carotenoids from algae by sub- and supercritical CO2 and dimethyl ether International conference

    Motonobu Goto, Hideki Kanda

    Workshop on Supercritical Fluids (SFE'13) 

     More details

    Event date: 2013.12

    Language:English   Presentation type:Oral presentation (invited, special)  

    Country:Brazil  

  34. 低エクセルギー率廃熱の回収によりエネルギー収支をプラスにする微細藻類オイ ルの抽出技術

    神田 英輝

    化学工学会関西支部セミナー 

     More details

    Event date: 2013.6

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  35. DMEによる藻類からのオイル抽出

    神田 英輝

    超臨界流体技術実用化のための基本評価技術 

     More details

    Event date: 2013.4

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  36. Dewatering and deoiling technology International conference

    Hideki Kanda, Peng Li, Misao Makino

    The 7th Asian DME Conference 

     More details

    Event date: 2011.11

    Language:English   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  37. Green crude oil directly extracted from high-moisture microalgae without drying, cell disruption, and heating solvent International conference

    Hideki Kanda, Peng Li

    The 6th Conference on Sustainable Development of Energy, Water and Environment Systems 

     More details

    Event date: 2011.9

    Language:English   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  38. 加熱・粉砕・有害薬品は不要 微細藻類からの緑の原油の抽出方法

    神田 英輝

    科学技術振興機構 新材料システム研究会Ⅱ 

     More details

    Event date: 2010.12

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  39. 液化DMEを用いた藻からの緑の原油の製造技術

    神田 英輝

    中部電力テクノフェア 

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    Event date: 2010.10

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  40. アオコから緑の原油の抽出に成功

    神田 英輝

    三井業際研究所 

     More details

    Event date: 2010.7

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  41. アオコから緑の原油の抽出に成功

    神田 英輝

    第5回新エネルギー国際展示会 

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    Event date: 2010.7

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  42. アオコからバイオ燃料を抽出する技術

    神田 英輝

    財団法人協和協会 新エネルギー委員会 

     More details

    Event date: 2010.5

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  43. 分子シミュレーションを活用したナノ細孔内三態相平衡・液液相平衡の熱力学モデルの構築

    神田 英輝

    日本吸着学会 

     More details

    Event date: 2009.11

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  44. DME脱水・脱油法の開発状況

    神田 英輝、牧野 尚夫

    三菱ガス化学株式会社 

     More details

    Event date: 2009.11

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  45. DME利用型・脱水脱油技術の開発

    神田 英輝、牧野 尚夫

    新潟DME研究会 

     More details

    Event date: 2009.9

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  46. DME利用型・脱水脱油技術の開発

    神田 英輝

    産業総合技術研究所 環境・エネルギーシンポジウム 

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    Event date: 2009.6

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  47. 液化DMEによる抽出を利用した脱水・脱油技術の開発状況

    神田 英輝、牧野 尚夫

    日本DMEフォーラム利用技術分科会 

     More details

    Event date: 2009.3

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  48. DMEを再利用する高水分炭・下水汚泥・PCB汚染底質の常温省エネルギー脱水浄化技術の開発 International conference

    神田 英輝

    全日本科学機器展 

     More details

    Event date: 2008.11

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  49. 液化DMEを用いた含水・含油固体の高度浄化技術

    神田 英輝、牧野 尚夫

    日本粉体工業技術協会 

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    Event date: 2008.9

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  50. ナノ空間内の基礎物質の三態相図の熱力学:ミクロ不均一現象からマクロ制御因子への橋渡し International conference

    神田 英輝

    日本化学会 第61回コロイドおよび界面化学討論会 

     More details

    Event date: 2008.9

    Language:English   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  51. DMEを再利用する高水分炭・下水汚泥・PCB汚染底質の常温省エネルギー脱水浄化技術の開発

    神田 英輝、大下 和徹、森田 真由美

    第22回独創性を拓く先端技術大賞レセプション 

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    Event date: 2008.7

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  52. 下水熱と液化ジメチルエーテルを利用する脱水汚泥ケーキの省エネ乾燥技術の開発

    神田 英輝、牧野 尚夫

    新潟DME研究会 

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    Event date: 2008.5

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  53. 液化DME利用型・超高効率常温脱水プロセスの開発

    神田 英輝

    日本化学会 第88春季年会 

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    Event date: 2008.3

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  54. 底質中PCB抽出・浄化とDME利用技術

    神田 英輝、大下 和徹、高岡 昌輝

    環境ビジネスKANSAI プロジェクト 

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    Event date: 2008.3

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

  55. DMEを用いた底質からのPCBの除去

    神田 英輝、大下 和徹

    財団法人北九州産業学術推進機構 

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    Event date: 2008.2

    Language:Japanese   Presentation type:Oral presentation (invited, special)  

    Country:Japan  

▼display all

Works 2

  1. I had the honor of making a presentation to Her Imperial Highness Princess Takamado.

    2008.7

  2. 研究成果の新聞での報道 120件超

    2000.4

Research Project for Joint Research, Competitive Funding, etc. 29

  1. 【代表】水処理システムと湿式抽出法による藻類の高効率燃料化の融合と実用化

    2015.5 - 2021.3

    地球規模課題対応国際科学技術協力プログラムSATREPS 

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    Grant type:Competitive

  2. 【代表】乾燥・細胞壁破壊・有毒抽剤が不要な藻類からの燃料抽出技術の創出

    2011.4 - 2016.3

    戦略的創造研究推進事業さきがけ 

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    Grant type:Competitive

  3. 【代表】常温・省エネルギーで液化DMEを抽剤として循環利用する藻からの油の抽出技術の開発

    2009.7 - 2011.6

    NEDO若手研究グラント 

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    Grant type:Competitive

  4. 【代表】吸着化学の研究手法に基づく超臨界流体抽出の熱力学モデルの構築と分子動力学による検証

    2021.7 - 2024.3

    特別研究助成 (複数年) 

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    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\3000000 ( Direct Cost: \3000000 )

  5. 【代表】DME抽出法による草木質バイオマスから石炭・石油代替燃料への省エネルギー転換

    2021.4 - 2022.3

    研究助成  (一般研究)

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    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\1000000 ( Direct Cost: \1000000 )

  6. 【代表】超臨界レーザーアブレーションによるナノ炭素被覆技術の開発

    2020.9 - 2023.3

    研究助成 

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    Grant type:Competitive

    Grant amount:\1800000 ( Direct Cost: \1800000 )

  7. 【代表】畜産副生物から再生医療部材への高付加価値加工

    2020.8 - 2021.9

    研究助成 

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    Grant type:Competitive

  8. リチウムイオン電池完全循環システム

    2018.11 - 2020.3

    未来社会創造事業 

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    Grant type:Competitive

  9. LMIR3を標的とするアレルギー・炎症性疾患治療薬の探索

    2018.5 - 2019.3

    委託研究開発 

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    Grant type:Competitive

  10. 【代表】カロテノイドのcis異性化による物性変化を利用した超臨界流体急速膨張法によるカロテノイドナノ粒子の調製

    2018.4 - 2019.3

    研究助成事業 

      More details

    Grant type:Competitive

  11. 【代表】液化ジメチルエーテルによる生体材料作成に関する基礎研究

    2017.10 - 2018.9

    企業からの受託研究  

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    Authorship:Principal investigator 

  12. 【再委託・代表】自動活性炭再生技術とフェントン水熱酸化法技術を複合化した省エネルギー先進排水・排 ガス処理技術の開発に関する調査

    2016.11 - 2017.9

    戦略的省エネルギー技術革新プログラム/省エネルギー技術開発事業の重要技術に係る周辺技術・関連課題の検討企画提案 

      More details

    Grant type:Competitive

  13. 【代表】界面活性剤フリーなスキャフォールド作成手法の開発

    2016.7 - 2017.3

    研究助成金 

      More details

    Grant type:Competitive

  14. 【代表】アフリカにおける持続可能な開発に向けた産業人材育成ネットワークの構築

    2016.7 - 2017.3

    地球規模課題対応国際科学技術協力プログラムSATREPS 企画提案 

      More details

    Grant type:Competitive

  15. ASEANにおけるコンパクトモビリティモデルの研究拠点

    2016.4 - 2019.3

    研究拠点形成事業(B.アジア・アフリカ学術基盤形成型) 

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    Grant type:Competitive

  16. 【代表】研究助成

    2015.4 - 2017.3

  17. 超臨界二酸化炭素を活用したスフィンゴミエリンリポソーム製造方法の確立

    2014

    企業からの受託研究 

  18. 【代表】DME液化ガスによる顔料製造プロセスの開発

    2014 - 2018.3

    企業からの受託研究 

  19. 【代表】液化DMEを用いた食品加工副産物の有効利用法に関する先行研究

    2014 - 2016.3

    企業からの受託研究 

  20. 【代表】液化DMEによる藻類燃料製造に関する研究

    2014 - 2015.3

    企業からの受託研究 

  21. 【代表】同軸二重ノズル噴射型超臨界CO2貧溶媒によるサブマイクロ・カルテノイド粒子の調製

    2013.4 - 2014.3

    研究助成金 

      More details

    Grant type:Competitive

  22. 食品原料からの有効成分の単離・精製に関する研究

    2013

    企業からの受託研究 

  23. 【代表】微生物からの油脂製造に関する研究

    2013 - 2017.3

    企業からの受託研究 

  24. 【代表】ジメチルエーテルによる石炭脱水技術の研究

    2013 - 2015.3

    企業からの受託研究 

  25. 【代表】植物からの常温油脂抽出に関する研究

    2013 - 2014.3

    企業からの受託研究 

  26. 【代表】液化物質(DME等)を用いたアミノ酸溶液の濃縮

    2013 - 2014.3

    企業からの受託研究 

  27. 【代表】超難処理PCB汚染ヘドロ粒子の浄化メカニズムの解明

    2009.4 - 2010.3

    研究助成金 

      More details

    Grant type:Competitive

  28. 【代表】DMEを再利用する高水分炭・下水汚泥・PCB汚染底質の常温省エネルギー脱水浄化技術の開発

    2008.7 - 2009.3

    研究奨励金 

      More details

    Grant type:Competitive

  29. バイオマスを利用したクリーンフューエルによる高効率発電技術

    2002.12 - 2004.3

    エネルギー・環境国際共同研究提案公募事業 国際提案公募 発電 

      More details

    Grant type:Competitive

▼display all

KAKENHI (Grants-in-Aid for Scientific Research) 8

  1. 【代表】エントレーナーが抱える諸問題を解決する超臨界流体抽出法の開発 International coauthorship

    2020.4 - 2023.3

    科学研究費補助金  基盤研究(C)

      More details

    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\4290000 ( Direct Cost: \3300000 、 Indirect Cost:\990000 )

  2. 【代表】界面活性剤フリーなスキャフォールド作成手法の開発 International coauthorship

    2017.4 - 2020.3

    科学研究費補助金  基盤研究(C)

      More details

    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\4810000 ( Direct Cost: \3700000 、 Indirect Cost:\1110000 )

  3. 【代表】窒素回収とグリーン燃料原料としてのアオコと人間との共存技術への挑戦 International coauthorship

    2013.4 - 2017.3

    科学研究費補助金 

      More details

    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\4030000 ( Direct Cost: \3100000 、 Indirect Cost:\930000 )

  4. 液化ジメチルエーテルによる、畜産廃棄物の脱水・乾燥プロセスの構築

    2011.4 - 2014.3

    科学研究費補助金  基盤研究(B)

    大下和徹

      More details

    Authorship:Coinvestigator(s) 

  5. 【代表】亜臨界DMEを抽剤に利用する高水分炭の水分と可燃分の同時抽出法の検討

    2011.4 - 2014.3

    科学研究費補助金  若手研究(A)

      More details

    Authorship:Principal investigator 

  6. 【代表】毛管相分離現象に起因するナノ細孔内超高速移動現象の解明と化学工学モデル化

    2009.4 - 2011.3

    科学研究費補助金  若手研究(B)

      More details

    Authorship:Principal investigator 

  7. 液化ジメチルエーテルによる底質中PCBs・ダイオキシン類の除去プロセスの構築

    2008.4 - 2011.3

    科学研究費補助金  基盤研究(B)

      More details

    Authorship:Coinvestigator(s) 

  8. 超薄壁ナノ空間における流体相挙動の解明および格子構造転移との協同性検討

    2006.4 - 2008.3

    科学研究費補助金  特定領域研究

    宮原稔

      More details

    Authorship:Coinvestigator(s) 

▼display all

Industrial property rights 48

  1. 動植物組織、動植物組織の細胞破壊方法及び動植物組織の細胞破壊装置

    篠原悟史、鈴木章吾、神田英輝

     More details

    Applicant:リコー、名古屋大学

    Application no:特願2018-047362  Date applied:2018.3

    Country of applicant:Domestic  

  2. イオン交換樹脂の乾燥方法、乾燥装置および強塩基性陰イオン交換樹脂

    神田英輝、後藤元信、橋本浩一郎、寺師亮輔

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    Applicant:名古屋大学、オルガノ

    Application no:2016-210791  Date applied:2016.3

    Country of applicant:Domestic  

  3. 有機顔料の製造方法

    安井健悟、関根均、國吉浩平、神田英輝、後藤元信

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    Applicant:名古屋大学、DIC

    Application no:2016-149045  Date applied:2016.3

    Country of applicant:Domestic  

  4. 有機顔料の精製方法

    安井健悟、関根均、國吉浩平、神田英輝、後藤元信

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    Applicant:名古屋大学、DIC

    Application no:2016-149046  Date applied:2016

    Country of applicant:Domestic  

  5. 脂質の分画方法

    神田 英輝、後藤 元信、沖田 裕司、大橋 英治

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    Applicant:名古屋大学、日本水産

    Application no:PCT/JP2015/059895  Date applied:2015.3

    Country of applicant:Domestic  

  6. アミノ酸水溶液の濃縮方法とアミノ酸の分離方法

    神田 英輝、岸野 光広

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    Applicant:名古屋大学、味の素

    Application no:特願2015-021811  Date applied:2015.2

    Country of applicant:Domestic  

  7. 脂質の分画方法

    神田 英輝、後藤 元信、沖田 裕司、大橋 英治

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    Applicant:名古屋大学、日本水産

    Application no:特願2014-071748  Date applied:2014.3

    Country of applicant:Domestic  

  8. アシル化ステロール配糖体を含有する粉末状叉は固形状組成物及び製造方法

    本城 政稔、奥原 康英、足立 知基、後藤 元信、神田 英輝

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    Applicant:名古屋大学、ファンケル

    Application no:特願2014-069588  Date applied:2014.3

    Country of applicant:Domestic  

  9. 廃熱回収システム

    神田 英輝

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    Applicant:電力中央研究所

    Application no:2012-194450  Date applied:2012.9

    Patent/Registration no:特許5429836号  Date registered:2015 

    Country of applicant:Domestic  

  10. 底質の処理方法及び抽出装置

    神田 英輝、牧野 尚夫、大下 和徹、高岡 昌輝、水野 忠雄

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    Applicant:電力中央研究所、月島機械

    Application no:2010-178741  Date applied:2010.8

    Patent/Registration no:特許5276631号  Date registered:2013 

    Country of applicant:Domestic  

  11. 有機物の抽出方法、有機物の製造方法、有機物抽出装置組立体、湿潤材料の処理方法

    神田 英輝、牧野 尚夫、森田 真由美、木村 敏之、吉越 昭雄

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    Applicant:電力中央研究所、月島機械

    Application no:2009-179513  Date applied:2009.7

    Patent/Registration no:特許5328547号  Date registered:2015 

    Country of applicant:Domestic  

  12. 油分抽出方法及び油性材料の製造方法

    神田 英輝、牧野 尚夫、森田 真由美、吉越 昭雄

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    Applicant:電力中央研究所、月島機械

    Application no:2009-094049  Date applied:2009.4

    Patent/Registration no:特許5319371号  Date registered:2014 

    Country of applicant:Domestic  

  13. 含水物質の脱水システムおよび脱水方法

    牧野 尚夫、神田 英輝、友成 輝夫、水谷 滋樹

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    Applicant:電力中央研究所

    Application no:2007-212215  Date applied:2007.8

    Patent/Registration no:特許5455628号  Date registered:2013 

    Country of applicant:Domestic  

  14. 含水物質の脱水システムおよび脱水方法

    牧野 尚夫、神田 英輝、友成 輝夫、水谷 滋樹

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    Applicant:電力中央研究所

    Patent/Registration no:インドネシア特許, 特願W00201000487  Date registered:2013 

    Country of applicant:Foreign country  

  15. 含水物質の脱水システムおよび脱水方法

    牧野 尚夫、神田 英輝、友成 輝夫、水谷 滋樹

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    Applicant:電力中央研究所

    Patent/Registration no:豪州分割特許2011213789B8号  Date registered:2014 

    Country of applicant:Foreign country  

  16. 含水物質の脱水システムおよび脱水方法

    牧野 尚夫、神田 英輝、友成 輝夫、水谷 滋樹

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    Applicant:電力中央研究所

    Patent/Registration no:中国特許, 特願200880103514.2  Date registered:2013 

    Country of applicant:Foreign country  

  17. 液化物を用いた氷含有物質の氷除去方法

    神田 英輝

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    Applicant:電力中央研究所

    Patent/Registration no:ロシア特許2392029号  Date registered:2011.8 

    Country of applicant:Foreign country  

  18. 含水物質の脱水システムおよび脱水方法

    神田 英輝、友成 輝夫、水谷 滋樹、牧野 尚夫

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    Applicant:電力中央研究所

    Patent/Registration no:豪州特許2011213789B2号  Date registered:2012.3 

    Country of applicant:Foreign country  

  19. 液化物を用いた氷含有物質の氷除去方法

    神田 英輝

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    Applicant:電力中央研究所

    Patent/Registration no:特許4734406号  Date registered:2012 

    Country of applicant:Domestic  

  20. 液化物を用いた氷含有物質の氷除去方法

    神田 英輝

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    Applicant:電力中央研究所

    Patent/Registration no:中国, 特許ZL200780010243.1号  Date registered:2011 

    Country of applicant:Foreign country  

  21. 液化物を用いた氷含有物質の氷除去方法

    神田 英輝

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    Applicant:電力中央研究所

    Patent/Registration no:カナダ特許 CA2646660号  Date registered:2011.8 

    Country of applicant:Foreign country  

  22. 含水物質の処理システム

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Applicant:電力中央研究所、月島機械

    Patent/Registration no:米国特許8246789号  Date registered:2010 

    Country of applicant:Foreign country  

  23. 含水物質の処理システム

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Applicant:電力中央研究所、月島機械

    Patent/Registration no:インドネシア特許, ID P0028348号  Date registered:2011 

    Country of applicant:Foreign country  

  24. 含水物質の処理システム

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Applicant:電力中央研究所、月島機械

    Patent/Registration no:中国, 特許ZL200880007291.X号  Date registered:2010 

    Country of applicant:Foreign country  

  25. 含水物質の処理システム

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Applicant:電力中央研究所、月島機械

    Patent/Registration no:豪州特許2008225537号  Date registered:2012 

    Country of applicant:Foreign country  

  26. 含水物質の処理システム

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Applicant:電力中央研究所、月島機械

    Application no:2007-060703  Date applied:2007.3

    Patent/Registration no:特許5346800号  Date registered:2010 

    Country of applicant:Domestic  

  27. 下水汚泥の脱臭方法

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Application no:2007-021090  Date applied:2007.1

    Patent/Registration no:5323500  Date registered:2011 

    Country of applicant:Domestic  

  28. 下水汚泥の脱臭方法

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Applicant:電力中央研究所、月島機械

    Patent/Registration no:ZL200880003186.9  Date registered:2013 

    Country of applicant:Foreign country  

  29. 含水物質の処理方法

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Applicant:電力中央研究所、月島機械

    Application no:2007-021089  Date applied:2007.1

    Patent/Registration no:5607884  Date registered:2014 

    Country of applicant:Domestic  

  30. 含水物質の処理方法

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Application no:08710626.6  Date applied:2007.1

    Patent/Registration no:EU08710626.6  Date registered:2013 

    Country of applicant:Foreign country  

  31. 含水物質の処理方法

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Applicant:電力中央研究所、月島機械

    Patent/Registration no:2008210818  Date registered:2013 

    Country of applicant:Foreign country  

  32. 含水物質の処理方法

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Applicant:電力中央研究所、月島機械

    Patent/Registration no:ZL200880003265.X  Date registered:2013 

    Country of applicant:Foreign country  

  33. 含水物質の処理方法

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Applicant:電力中央研究所、月島機械

    Patent/Registration no:ID P0030067  Date registered:2013 

    Country of applicant:Foreign country  

  34. 汚泥の処理方法

    神田 英輝、牧野 尚夫、森田 真由美、竹上 敬三、吉越 昭雄、高橋 正純

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    Applicant:電力中央研究所、月島機械

    Patent/Registration no:200980121190.X  Date registered:2013 

    Country of applicant:Foreign country  

  35. Method for dehydrating water-containgsubstance useing liquefied matter

    Hideki Kanda, Youichi Urakawa

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    Publication no:7803253 

    Patent/Registration no:7803253  Date registered:2010 

    Country of applicant:Foreign country  

  36. 液化物を用いた含油物質の脱油方法

    神田英輝

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    Applicant:電力中央研究所

    Patent/Registration no:4542517  Date registered:2010 

    Country of applicant:Domestic  

  37. 蓄熱方法および蓄熱装置

    神田英輝

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    Applicant:電力中央研究所

    Patent/Registration no:4671286  Date registered:2011 

    Country of applicant:Domestic  

  38. 細孔内付着液体残留量推定方法

    神田英輝

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    Applicant:電力中央研究所

    Patent/Registration no:5035816  Date registered:2012 

    Country of applicant:Domestic  

  39. 細孔径分布測定方法

    神田英輝

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    Applicant:電力中央研究所

    Patent/Registration no:4845004  Date registered:2011 

    Country of applicant:Domestic  

  40. 水分含有固体の水分除去方法およびシステム

    神田英輝、阿部俊夫

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    Applicant:電力中央研究所

    Patent/Registration no:4671700  Date registered:2011 

    Country of applicant:Domestic  

  41. 液化物質を用いた固体含有水分除去方法およびシステム

    神田英輝

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    Applicant:電力中央研究所

    Patent/Registration no:4601396  Date registered:2010 

    Country of applicant:Domestic  

  42. 液化物質を用いた固体含有水分の除去方法

    神田 英輝、白井 裕三

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    Applicant:電力中央研究所

    Application no:WO2003-101579  Date applied:2002.6

    Announcement no:1524019 

    Patent/Registration no:4291772  Date registered:2009 

    Country of applicant:Domestic  

  43. 液化物質を用いた固体含有水分の除去方法

    神田 英輝、白井 裕三

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    Applicant:電力中央研究所

    Patent/Registration no:EU1524019B1  Date registered:2013 

    Country of applicant:Foreign country  

  44. 液化物質を用いた固体含有水分の除去方法

    神田 英輝、白井 裕三

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    Applicant:電力中央研究所

    Patent/Registration no:2003241902  Date registered:2009 

    Country of applicant:Foreign country  

  45. 液化物質を用いた固体含有水分の除去方法

    神田 英輝、白井 裕三

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    Applicant:電力中央研究所

    Patent/Registration no:0018953  Date registered:2009 

    Country of applicant:Foreign country  

  46. 液化物質を用いた固体含有水分の除去方法

    神田 英輝、白井 裕三

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    Applicant:電力中央研究所

    Patent/Registration no:03812777.6  Date registered:2007 

    Country of applicant:Foreign country  

  47. 液化物質を用いた固体含有水分の除去方法

    神田 英輝、白井 裕三

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    Applicant:電力中央研究所

    Patent/Registration no:7537700  Date registered:2009 

    Country of applicant:Domestic  

  48. 液化物質を用いた固体含有水分の除去方法

    神田 英輝、白井 裕三

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    Applicant:電力中央研究所

    Patent/Registration no:2487641  Date registered:2009 

    Country of applicant:Foreign country  

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Teaching Experience (On-campus) 39

  1. 先端プロセス工学特別実験及び演習

    2020

  2. 先端プロセス工学セミナー

    2020

  3. マテリアル工学実験2

    2020

  4. マテリアル工学実験1

    2020

  5. マテリアル工学実験1

    2019

  6. 先端プロセス工学特別実験及び演習

    2018

  7. 先端プロセス工学セミナー

    2018

  8. 物理化学実験

    2018

  9. 化学工学実験

    2018

  10. マテリアル工学概論

    2018

  11. 先端マテリアル工学概論2

    2018

  12. 先端プロセス工学特別実験及び演習

    2017

  13. 物理化学実験

    2017

  14. 化学工学実験

    2017

  15. プロセス基礎セミナー

    2017

  16. マテリアル工学概論

    2017

  17. 先端プロセス工学セミナー

    2017

  18. 化学工学実験

    2016

  19. 物理化学実験

    2016

  20. 物質プロセス工学特別実験及び演習

    2016

  21. 物質プロセス工学セミナー

    2016

  22. プロセス基礎セミナー

    2016

  23. 物質プロセス工学特別実験及び演習

    2015

  24. プロセス基礎セミナー

    2015

  25. 物理化学実験

    2015

  26. 化学工学実験

    2015

  27. 物質プロセス工学セミナー

    2015

  28. プロセス基礎セミナー

    2014

  29. 化学工学実験

    2014

  30. 物理化学実験

    2014

  31. 物質プロセス工学セミナー

    2014

  32. 物質プロセス工学特別実験及び演習

    2014

  33. 物質プロセス工学セミナー

    2013

  34. 化学工学実験

    2013

  35. 物理化学実験

    2013

  36. 分析化学実験第1

    2013

  37. プロセス基礎セミナー

    2013

  38. 物質プロセス工学特別実験及び演習

    2013

  39. 物質プロセス工学特別実験及び演習

    2012

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Social Contribution 5

  1. 名古屋市立桜台高校 講義

    Role(s):Lecturer

    2020.12

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    Audience: High school students

  2. 福島県立福島高校 講義

    Role(s):Lecturer

    2018.10

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    Audience: High school students

  3. TICADVIフォローアップ・国際シンポジウム “アフリカの持続可能な開発に向けた産業人材育成” を企画・開催

    Role(s):Planner, Organizing member, Report writing

    名古屋大学、国際協力機構(JICA)  2017.2

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    Audience: Researchesrs, General, Company, Civic organization, Governmental agency, Media

    Type:Lecture

  4. 安城南高校の総合学習授業

    Role(s):Lecturer

    2016.5

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    Audience: High school students

  5. 国際協力機構専門家として南アフリカ共和国で活動(延べ200日以上)

    2015.9

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    Audience: Researchesrs, General, Governmental agency

    Type:Other

Media Coverage 6

  1. 新聞での研究報道 110件以上(2020年まで) Newspaper, magazine

  2. 先端人 効率的に藻類から油脂抽出 神田英輝さん Newspaper, magazine

    朝日新聞社  朝日新聞  朝刊18面  2021.3

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    Author:Other 

  3. 韓国JIBS放送 濟州海の希望 海の砂漠化になっている濟州の海洋環境の再生プロジェクトと海洋資源の活用(2013/11/30) TV or radio program

    2013.11

  4. ニッポンの火力発電がスゴイ! 石炭・LNG発電の最新技術 TV or radio program

    TokyoMX TV  ガリレオチャンネル  2010.8

  5. New oil looking greener TV or radio program

    NHK WORLD TV   NEWSLINE  2010.7

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    Author:Myself 

  6. PCB汚染低質を浄化する技術を開発 TV or radio program

    NHK総合(関西)  ニュース(6:00、8:45)  2007.11

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