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J-GLOBAL ID:201801018127914049   Update date: Oct. 30, 2024

Hajime Kobayashi

コバヤシ ハジメ | Hajime Kobayashi
Clips
Affiliation and department:
Homepage URL  (1): http://sites.google.com/site/hajimekobayashisys/home
Research field  (1): Applied microbiology
Research keywords  (6): 地下資源開発 ,  微生物共生 ,  バイオ電気化学的システム ,  エネルギー変換 ,  バイオテクノロジー ,  エネルギー・資源
Research theme for competitive and other funds  (7):
  • 2020 - 2025 Development of sporulation/germination-inspired method for reversible single cell encapsulation
  • 2021 - 2024 微生物トレーサ法を地下資源開発に適用する技術基盤の確立
  • 2017 - 2020 Analysis of establishment mechanism of catalytic microorganisms on the cathode surface and biocathode performance improvement by hybrid systems
  • 2017 - 2019 バイオ・ナノ粒子を利用した新規の石油増進回収技術BNP-EORの開発
  • 2014 - 2017 Construction of next-generation microbial-electrosynthesis systems which convert carbon dioxide into energy resources
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Papers (65):
  • Xiang Feng, Daichi Kazama, Kozo Sato, Hajime Kobayashi. Complete genome sequence of Mycolicibacterium mageritense strain H4_3_1 isolated from a hybrid biological-inorganic system reactor. Microbiology Resource Announcements. 2023. 12. 10
  • H. Kobayashi, A. Goto, X. Feng, K. Uruma, Y. Momoi, S. Watanabe, K. Sato, Y. Zhang, R. N. Horne, T. Shibuya, et al. Long-Term Microbial DNA-Based Monitoring of the Mature Sarukawa Oil Field in Japan. SPE Reservoir Evaluation and Engineering. 2023. 26. 3. 1110-1119
  • Xiang Feng, Sijia He, Taiki Sato, Takumi Kondo, Koyo Uema, Kozo Sato, Hajime Kobayashi. Enrichment of hydrogen-oxidizing bacteria using a hybrid biological-inorganic system. Journal of Bioscience and Bioengineering. 2023. 135. 3. 250-257
  • Xiang Feng, Daichi Kazama, Kozo Sato, Hajime Kobayashi. Complete genome sequence of an Achromobacter xylosoxidans strain H1_3_1 isolated from a hybrid biological-inorganic system reactor. Microbiology Resource Announcements. 2023. 12. 11
  • Xiang Feng, Daichi Kazama, Sijia He, Hideki Nakayama, Takeshi Hayashi, Tomochika Tokunaga, Kozo Sato, Hajime Kobayashi. Enrichment of halotolerant hydrogen-oxidizing bacteria and production of high-value-added chemical hydroxyectoine using a hybrid biological-inorganic system. Frontiers in Microbiology. 2023. 14
more...
MISC (38):
Patents (1):
  • 地中貯留二酸化炭素のメタン変換回収システム及び地中貯留二酸化炭素のメタン変換回収方法
Books (1):
  • Enzyme Technology and Application
    National Science and Technology Development Agency (NSTDA) printing 2012
Lectures and oral presentations  (16):
  • Experimental and mathematical analyses of bio-electrochemical conversion of carbon dioxide to methane
    (13th International Conference on Greenhouse Gas Control Technologies Conference (GHGT-13) 2016)
  • Electrochemical conversion of carbon dioxide into methane by using indigenous microbes in subsurface oil reservoir
    (2016)
  • 地下高温高圧条件下で微生物はCO<SUB>2</SUB>をメタンに変換できるのか?
    (石油学会 年会・秋季大会講演要旨集 2016)
  • Possibility of bioelectrochemical conversion of carbon dioxide into methane in depleted oil fields
    (2015)
  • 微生物はCO<SUB>2</SUB>をメタンに変換できるのか(CCSUの可能性)?
    (石油学会 年会・秋季大会講演要旨集 2015)
more...
Education (3):
  • 1999 - 2004 Osaka University Graduate School of Engineering
  • 1997 - 1999 Osaka University Graduate School of Engineering
  • 1993 - 1997 Osaka University School of Engineering
Work history (4):
  • 2013/03 - 現在 The University of Tokyo The Graduate School of Engineering
  • 2008/09 - 2013/02 The University of Tokyo The Graduate School of Engineering
  • 2004/09 - 2008/09 マサチューセッツ工科大 生物学部 ポスドク
  • 2000/07 - 2004/08 ジュネーブ大学 博士助手
Committee career (2):
  • 2018/09 - 現在 石油技術協会 会誌編集委員会 編集委員
  • 2020/06 - 2022/06 石油技術協会 第85期・第86期 会誌編集委員会 副委員長
Association Membership(s) (2):
石油技術協会 ,  日本微生物生態学会
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