KOMETANI Noritsugu

写真a

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Title

Professor

Laboratory location

Sugimoto Campus

Degree 【 display / non-display

  • Kyoto University -  Doctor of Science

Research Areas 【 display / non-display

Physical Chemistry, Industrial Physical Chemistry, Reaction engineering/Process system

Research Career 【 display / non-display

  • Photocatalysis in high-temperature high-pressure water

    (Individual) Project Year :

    2005.04
     
     

    Keyword in research subject:  photocatalyst, supercritical water, subcritical water

  • Oraganic/inorganic composite nanoparticles

    (Individual)

    Keyword in research subject:  nanoparticle, metal

  • Study on J - Aggregates of cyanine dyes

    (Collaboration in Organization)

    Keyword in research subject:  J - Aggregate, Cyanine dye

  • Fabrication of nanoparticles in the supercritical fluid

    (Collaboration in Organization)

    Keyword in research subject:  supercritical fluid, nanoparticle

Association Memberships 【 display / non-display

  • THE CHEMICAL SOCIETY OF JAPAN

Current Career 【 display / non-display

  • Osaka City University   Graduate School of Engineering   Applied Chemistry and Bioengineering Course   Professor  

Career 【 display / non-display

  • 1997
     
     

    Osaka City University  

Graduate School 【 display / non-display

  •  
    -
    1997

    Kyoto University  Graduate School, Division of Natural Science 

Graduating School 【 display / non-display

  •  
    -
    1992

    Kyoto University   Faculty of Science  

 

Published Papers 【 display / non-display

  • Enhancement of Hydrothermal Oxidation of Chlorobenzene by the Fenton-type Reaction Using Cu(II)-grafted Tungsten Trioxide Catalyst

    Yasuaki Sumiyoshi

    Chemistry Letters  42 ( 8 ) 804 - 806 2013.08

  • Photocatalytic Activity of TiO2 Nanoparticles in Hydrothermal and Supercritical Water

    J. Chem. Eng. Jpn.  40 ( 6 ) 463 - 467 2007

  • Enhanced decomposition of toxic pollutants by underwater pulsed discharge in the presence of hydrogen peroxide and microbubbles

    Matsuura Risako, Kometani Noritsugu, Horibe Hideo, Shirafuji Tatsuru

    JAPANESE JOURNAL OF APPLIED PHYSICS  61 ( SA )  2022.01  [Refereed]

    DOI

  • Treatment of Wastewater Containing Persistent Organic Pollutants by Catalytic Hydrothermal Oxidation Method

    Noritsugu Kometani

    Catalysts and Catalysis  62 ( 3 )  2020  [Refereed]  [Invited]

  • 難分解性有機汚染物質を含む汚染水の触媒促進水熱酸化処理

    米谷 紀嗣

    触媒  62 ( 3 )  2020  [Refereed]

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Books etc 【 display / non-display

  • ベーシック物理化学

    原 公彦, 米谷 紀嗣, 藤村 陽 (Part: Single Work )

    化学同人  2008

    CiNii

  • ベーシック物理化学

    原 公彦, 米谷 紀嗣, 藤村 陽 (Part: Single Work )

    化学同人  2008

Review Papers (Misc) 【 display / non-display

  • Hydrothermal Synthesis of Metal Nanoparticles

    Jasco report Special Issue of Supercritical Fluids  11   11 - 16 2012

  • 金属ナノ粒子の水熱合成

    米谷 紀嗣

    Jasco report 超臨界最新技術特集  11   11 - 16 2012  [Refereed]  [Invited]

  • 高温高圧水中の酸化チタンの光触媒活性 ―室温に匹敵する作用発揮―

    Y. Yonezawa

    セラミックス  42 ( 9 ) 684 - 685 2007  [Refereed]  [Invited]

  • 極短パルスレーザー分光を用いた高圧流体の研究

    米谷紀嗣, 原公彦

    材料  55 ( 3 ) 248 - 253 2006  [Refereed]  [Invited]

    DOI J-GLOBAL

  • 極短パルスレーザー分光法による超臨界流体中のダイナミクス

    米谷紀嗣, 星原悠司, MARONCELLI Mark

    高圧力の科学と技術  16 ( 2 ) 113 - 119 2006  [Refereed]  [Invited]

    DOI J-GLOBAL

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Conference Activities & Talks 【 display / non-display

  • Enhanced decomposition of toxic pollutants by underwater pulsed discharge in the presence of hydrogen peroxide or microbubbles

    R. Matsuura, N. Kometani, H. Horibe, T. Shirafuji

    ISPlasma2021/IC-PLANTS2021  2021.03 

  • 金属担持酸化チタンを用いたセルロースの光触媒ガス化

    米谷紀嗣,青木優武

    化学工学会第84年会  2019.03 

  • メチルセルロース及びヒドロキシプロピルメチルセルロース水溶液でのゾル-ゲル相転移における圧力・濃度効果

    上田真久,米谷紀嗣

    第59回高圧討論会  2018.11 

  • フェントン水熱酸化法による難分解性有機物質の分解処理のベンチスケール試験

    鳥井晃平,米谷紀嗣

    第59回高圧討論会  2018.11 

  • 金属担持二酸化チタンによるセルロースを犠牲剤に用いた光触媒水素発生

    青木優武,米谷紀嗣

    第8回CSJ化学フェスタ  2018.10 

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Other educational activity and Special note 【 display / non-display

  • Contribution to FD activities

    (2021)

  • Contribution to FD activities

    (2020)

  • Contribution to FD activities

    (2019)

  • Class teacher

    (2019)

  • Contribution to FD activities

    (2018)

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Educational activity record 【 display / non-display

  • Academic year : 2012

     View Details

    Number of instructed the graduation thesis
    4
    Number of graduation thesis reviews
    7
    Number of instructed the Master course
    5
    Number of instructed the Doctoral course
    1
    Number of master's thesis reviews (chief)
    3
    Number of master's thesis reviews (vice-chief)
    3
    Number of doctoral thesis reviews (chief)
    0
    Number of doctoral thesis reviews (vice-chief)
    0
 

Theme of Possible Research Exchange 【 display / non-display

  • Chemical reactions in the supercritical fluid

    Research theme : We have investigated the photochemical reactions in the supercritical fluid. The influence of the solvent on the chemical reaction can be examined by means of in situ spectroscopic measurements in the supercritical fluid.

    Type of research exchange : Technical consultation

    Keyword : supercritical fluid, chemical reaction, spectroscopy

     View Details

    Application fields / methods etc : The supercirical carbon dioxide and the supercritical water have attracted attentions as clean solvents replacing the conventional toxic organic solvents. We aim to establish the new application of the supercritical fluid.