Research field (5):
Chemical reaction and process system engineering
, Energy chemistry
, Catalytic processes and resource chemistry
, Composite materials and interfaces
, Basic physical chemistry
Research keywords (7):
CO2 utilization
, Electrolytic synthesis
, 太陽電池
, エネルギーシステム
, 環境触媒
, 触媒燃焼
, 燃料電池
Research theme for competitive and other funds (22):
2020 - 2023 Electrochemical Promotion of Ammonia Synthesis in Electrolysis Cells with High Conversion Efficiency
2017 - 2020 Li recovery with pseudocapacitive electrode in fluidized bed cell
2016 - 2019 Development of metal phosphides as a novel anode material and application to intermediate-temperature fuel cells
2013 - 2016 Study on reaction site formation at the interface of metal and mixed ionic and electronic conductive oxides and their application to electrochemical devices
2010 - 2012 High performance inorganic hollow fiber membranes for hydrogen production with reaction-generated separation driving force
2010 - 2012 Novel composite electrolytes using hetero-interfacial effect and their application to electrochemical devices
2007 - 2009 Hydrogen production and separation processes employing proton conductor and water-gas shift reaction catalyst
2007 - 2008 固体酸化物形燃料電池における高温反応場形成の科学
2005 - 2006 固体酸化物形燃料電池における高温反応場界面形成の科学
2004 - 2005 Basic Sorption-Desorption Characteristics of NOx and SOx by Mixed Oxide Sorbents
2003 - 2004 複素インピーダンス解析に基づく色素増感太陽電池構成成分の評価方法の確立
2002 - 2004 中温作動燃料電池のための無機酸素酸塩電解質の開発と発電特性
2002 - 2004 固体高分子形燃料電池用耐CO披毒SnO2担持貴金属系アノード電極の開発
2002 - 2004 化学物質およびエネルギー同時生産のための固体酸化物燃料電池型反応器の開発
2002 - 2004 Mechanism of carbon nanotube formation on metal supported on zirconia-based fine particles
2001 - 2003 Efficient and Flexible SOFC System
1999 - 2003 超小型ガスタービン・高度分散エネルギーシステム
1999 - 2001 Fuel Reforming and CO Removal for Transportable Hydrogen Production Systems
1998 - 2000 Development of new sorbent material for reversible removal of air pollutants using catalytic reactions
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Papers (235):
Shohei Tada, Tomona Jinushizono, Kenya Ishikawa, Shinta Miyazaki, Takashi Toyao, Ken-ichi Shimizu, Masahiko Nishijima, Noriko Yamauchi, Yoshio Kobayashi, Ryuji Kikuchi. Low-Temperature CO2 Methanation over Ru Nanoparticles Supported on Monoclinic Zirconia. Energy & Fuels. 2024
Shohei Tada, Kazumasa Oshima, Tastuya Joutsuka, Masahiko Nishijima, Ryuji Kikuchi, Tetsuo Honma. High-pressure <i>in situ</i> X-ray absorption fine structure measurements for hydrogenation of CO<sub>2</sub> to methanol over Zn-doped ZrO<sub>2</sub>. Catalysis Science & Technology. 2024
Shohei Tada, Hiroka Kinoshita, Duanxing Li, Masahiko Nishijima, Harune Yamaguchi, Ryuji Kikcuhi, Noriko Yamauchi, Yoshio Kobayashi, Kenta Iyoki. Optimal mixing method of ZnZrO and MOR-type zeolite to prepare a bifunctional catalyst for CO2 hydrogenation to lower olefins. Advanced Powder Technology. 2023
Naoya Fujiwara, Shohei Tada, Ryuji Kikuchi. Direct conversion of carbon dioxide and steam into hydrocarbons and oxygenates using solid acid electrolysis cells. iScience. 2022. 105381-105381
Yao Yuan, Naoya Fujiwara, Shohei Tada, Ryuji Kikuchi. An in situ DRIFTS study on nitrogen electrochemical reduction over an Fe/BaZr0.8Y0.2O3-δ-Ru catalyst at 220 °C in an electrolysis cell using a CsH2PO4/SiP2O7 electrolyte. RSC Advances. 2022. 12. 14. 8474-8476
1990 - 1992 The University of Tokyo The Faculty of Engineering
1988 - 1990 The University of Tokyo
Professional career (1):
博士(工学) (東京大学)
Work history (8):
2022/04 - 現在 北海道大学大学院工学研究院 応用化学部門 教授
2008/04 - 2022/03 東京大学大学院工学系研究科 化学システム工学専攻 准教授
2007/04 - 2008/03 京都大学大学院工学研究科 物質エネルギー化学専攻 准教授
2003/12 - 2007/03 京都大学大学院工学研究科 物質エネルギー化学専攻 助教授
2001/10 - 2003/11 京都大学大学院工学研究科 物質エネルギー化学専攻 助手
2000/04 - 2001/09 Kyushu University Interdisciplinary Faculty of Engineering Sciences
1998/10 - 2000/03 東京大学大学院工学系研究科 化学システム工学専攻 博士研究員
1997/04 - 1998/09 スイス連邦工科大学チューリッヒ校 プロセス工学専攻 博士研究員
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Awards (5):
2022/05 - 石油学会 論文賞 Y. Kobayashi, M. Sohmiya, S. Tada, R. Kikuchi, “Low-Temperature Synthesis of Single Phase Intermetallic NiZn Nanopowder in a Molten LiCl-KCl with a CaH2 as a Reducing Agent”, Journal of the Japan Petroleum Institute, 63(6), 380-387 (2020).
2015/09 - 化学工学会 論文賞 R. Kikuchi, M. Yokoyama, S. Tada, A. Takagaki, T. Sugawara, S. T. Oyama, “Novel Nickel Catalysts based on spinel-type mixed oxides”, J. Chem. Eng. Japan, 47, 530-535 (2014)