2025/05/27 更新

写真a

タニグチ シユンスケ
谷口 俊輔
TANIGUCHI SHUNSUKE
所属
次世代燃料電池産学連携研究センター 教授
職名
教授
連絡先
メールアドレス
電話番号
0928026777
プロフィール
固体酸化物形燃料電池(SOFC)、固体酸化物形水蒸気電解(SOEC)の耐久性向上に関する研究 SOFC/SOFCに適用する低コスト金属材料の研究 NEDOプロジェクト、企業共同研究

学位

  • 博士(工学) ( 2000年12月 )

経歴

  • 1990.4-2007.3 三洋電機 2007.4-2010.4 サムスンSDI   

    1990.4-2007.3 三洋電機 2007.4-2010.4 サムスンSDI

研究テーマ・研究キーワード

  • 研究テーマ: 固体酸化物形燃料電池(SOFC)、固体酸化物形水蒸気電解(SOEC)の耐久性向上に関する研究 SOFC/SOFCに適用する低コスト金属材料の研究 NEDOプロジェクト、企業共同研究

    研究キーワード: 固体酸化物形燃料電池

    研究期間: 2023年1月 - 2024年3月

論文

  • Influence of Current Load on the Grouwth of SrZrO3 at the GDC/YSZ Interface 招待 査読 国際誌

    Y. INOUE, J.-T CHOU, T. KAWABATA, J. MATSUDA, S. TANIGUCHI, K. SASAKI

    ECS Transactions, 91 (1), pp. 847-852 (2019)   2020年7月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

  • Semi-conductive α-Al2O3/Sr3Al2O6 Oxide Layer formed on Fe-Cr-Al Alloy 招待 査読 国際誌

    H.-C PHAM, S. TANIGUCHI, Y. INOUE, J.-T CHOU, K. SASAKI

    ECS Transactions, 91 (1), pp. 2299-2305 (2019)   2020年6月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

  • Redox stability of metal-supported fuel cells with nickel/gadolinium-doped ceria anode 査読

    Florian Thaler, David Udomsilp, Wolfgang Schafbauer, Cornelia Bischof, Yosuke Fukuyama, Yohei Miura, Mari Kawabuchi, Shunsuke Taniguchi, Satoshi Takemiya, Andreas Nenning, Alexander Karl Opitz, Martin Bram

    Journal of Power Sources   434   2019年9月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Metal-supported fuel cells (MSCs) are promising candidates for not only stationary but also mobile applications. Their appeal is in their potential to withstand reoxidation of the anode, which might occur by an interruption of the fuel supply or an emergency shutdown of the fuel cell system. A novel nickel/gadolinium-doped ceria anode (Ni/GDC) was recently introduced in a MSC concept of Plansee, almost doubling power density compared to cells with a nickel/yttria-doped zirconia (Ni/YSZ) anode. In this study, both cell concepts are compared concerning their ability to tolerate harsh redox cycles. Therefore, controlled redox cycles of the anodes were conducted at different temperatures. The response of the cell's power output to the redox cycling experiments was continuously recorded. In the case of MSCs with a Ni/YSZ anode, strong degradation occurs after redox cycling. In contrast, cells with a Ni/GDC anode exhibit significantly improved redox tolerance and cell performance improves with the number of redox cycles. For understanding this behavior, microstructural investigations of the Ni/GDC anode and the adjacent electrolyte were performed by FIB-SEM. The long-term redox behavior of MSCs with a Ni/GDC anode was also investigated by conducting more comprehensive redox cycles at 400 °C, 500 °C, and 600 °C.

    DOI: 10.1016/j.jpowsour.2019.226751

  • Oxidation-induced degradation and performance fluctuation of solid oxide fuel cell Ni anodes under simulated high fuel utilization conditions 査読

    Tatsuya Kawasaki, Junko Matsuda, Yuya Tachikawa, Stephen Matthew Lyth, Yusuke Shiratori, Shunsuke Taniguchi, Kazunari Sasaki

    International Journal of Hydrogen Energy   44 ( 18 )   9386 - 9399   2019年4月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    High fuel utilization (Uf) conditions in a small-scale electrolyte-supported solid oxide fuel cell (SOFC) with an Ni-ScSZ anode were approximated by adjusting the gas composition to correspond to that in the downstream region of an SOFC stack. At Uf = 80%, and with a cell voltage of 0.5 V, the ohmic resistance fluctuated slightly from the early stages of operation, and became much more significant after 80 h. High current density and large polarization were found to promote Ni agglomeration, leading to insufficient connectivity of the Ni nanoparticles. At Uf = 95%, and with a cell voltage of 0.6 V, fluctuations in the polarization were observed at a much earlier stage, which are attributed to the highly humidified fuel. In particular, significant degradation was observed when the compensated anode potential (which incorporates the anode ohmic losses) approached the Ni oxidation potential. Ohmic losses in the anode are considered to influence Ni oxidation by exposing Ni near the electrolyte to a more oxidizing atmosphere with the increase in oxygen ion transport. Stable operation is therefore possible under conditions in which the compensated anode potential does not approach the Ni oxidation potential, assuming a stable interconnected Ni network.

    DOI: 10.1016/j.ijhydene.2019.02.136

  • Mechanism of SrZrO3 formation at GDC/YSZ interface of SOFC cathode 査読

    Jyh Tyng Chou, Yuko Inoue, Tsutomu Kawabata, Junko Matsuda, Shunsuke Taniguchi, Kazunari Sasaki

    Journal of the Electrochemical Society   165 ( 11 )   F959 - F965   2018年1月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    SrZrO3 formation at the interface of gadolinia-doped ceria (GDC) interlayer and yttria-stabilized zirconia (YSZ) electrolyte is analyzed using high-resolution electron microscopy. SrZrO3 is dispersed in the inter-diffusion layer on the GDC side from the Ce/Zr border. Zr, which diffuses into the GDC grain, contributes to the formation of SrZrO3. The crystallographic relationship among the SrZrO3 grains and its neighboring GDC grains reveals that SrZrO3 is formed at the surface, at the grain boundary, and inside the grain, while maintaining a highly matched boundary with the adjacent GDC grain. The matching of the interface boundary is confirmed by the O-lattice theory, according to which the threshold Zr/Ce ratio is 13/34. If Zr/Ce ratio in the GDC grain is higher than the threshold, SrZrO3 may significantly grow into the grain. The conduction path for the oxygen ion is retained because the GDC grain containing Zr is split into the SrZrO3 grain and the less-Zr-containing GDC grain. If Zr/Ce ratio is lower than the threshold, SrZrO3 may be formed but will be limited by the amount of Zr diffusing from the adjacent region. Thus, the morphology of SrZrO3 is strongly affected by the state of GDC grains in the inter-diffusion layer.

    DOI: 10.1149/2.0551811jes

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講演・口頭発表等

  • Investigation of Fe-Cr-Al Alloy for Metal Supported SOFC 国際会議

    H.-C Pham, S. Taniguchi, Y. Inoue, J.-T Chou, J. Matsuda, K. Sasaki

    15th International Symposium on Solid Oxide Fuel Cells, SOFC 2017  2017年5月 

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    開催年月日: 2017年7月

    記述言語:英語  

    国名:アメリカ合衆国  

  • Influence of cathode polarization change on chromium deposited on electrolyte surface near cathode reaction sites of SOFC 国際会議

    Daiki Ishibashi, Eunjoo Park, Shunsuke Taniguchi, Yuko Inoue, Jyh Tyng Chou, Kazunari Sasaki

    14th International Symposium on Solid Oxide Fuel Cells, SOFC 2015; held as part of the Electrochemical Society, ECS Conference on Electrochemical Energy Conversion and Storage  2015年7月 

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    開催年月日: 2015年7月

    記述言語:英語  

    開催地:Glasgow   国名:グレートブリテン・北アイルランド連合王国(英国)  

    It has been clarified that Cr deposition occurs significantly on the electrolyte surface near cathode reaction sites as a consequence of cathode polarization. In this study, we investigated the influence of a change in the cathode polarization on the Cr deposited on the electrolyte surface by using NiO/YSZ or NiO/GDC as the cathode material. The deposited Cr segregated at the interface of NiO and YSZ in the case of the NiO/YSZ cathode after a decrease in the cathode polarization, which suggests nucleation under a cathode polarization of 200 mV and growth of Cr compounds after decreasing the cathode polarization. In contrast, the amount of deposited Cr decreased in the case of the NiO/GDC cathode after decreasing the cathode polarization.

  • Influence of Cathode Polarization Change on Chromium Deposited on Electrolyte Surface Near Cathode Reaction Sites of SOFC 国際会議

    Daiki Ishibashi, Eunjoo Park, Shunsuke Taniguchi, Yuko Inoue, Jyh-Tyng Chou, Kazunari Sasaki

    SOFC-14  2015年7月 

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    開催年月日: 2015年7月

    記述言語:英語  

    開催地:Glasgow   国名:グレートブリテン・北アイルランド連合王国(英国)  

    It has been clarified that Cr deposition occurs significantly on the electrolyte surface near cathode reaction sites as a consequence of cathode polarization. In this study, we investigated the influence of a change in the cathode polarization on the Cr deposited on the electrolyte surface by using NiO/YSZ or NiO/GDC as the cathode material. The deposited Cr segregated at the interface of NiO and YSZ in the case of the NiO/YSZ cathode after a decrease in the cathode polarization, which suggests nucleation under a cathode polarization of 200 mV and growth of Cr compounds after decreasing the cathode polarization. In contrast, the amount of deposited Cr decreased in the case of the NiO/GDC cathode after decreasing the cathode polarization.

  • Electrical and Oxidation Resistance of Surface Oxide of Porous Fe-Cr-Al Alloy for the Application of Metal Supported SOFCs 国際会議

    Hung-Cuong Pham, Shunsuke Taniguchi, Yuko Inoue, Jyh-Tyng Chou, Toru Izumi, Koji Matsuoka, Kazunari Sasaki

    SOFC-14  2015年7月 

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    開催年月日: 2015年7月

    記述言語:英語  

    開催地:Glasgow   国名:グレートブリテン・北アイルランド連合王国(英国)  

    We have investigated the property of Fe-Cr-Al-type stainless steel as a porous alloy substrate for metal-supported SOFCs especially on the cathode side. We confirmed not only good heat resistance but also low electrical resistance at the interface between the porous substrate and a La0.6Sr0.4Co0.2Fe0.8O3 (LSCF) coating at 700 °C in air. Long-term durability of the oxidation resistance of the LSCF-coated Fe-Cr-Al alloy at 700 °C was investigated by measuring the mass gain, surface oxide thickness, and electrical resistance at different temperatures from 700 to 900 °C.

  • Modification of Surface Oxide of Porous Fe-Cr-Al Alloy by Coating and Heat-Treatment for the Application of Metal Supported SOFCs 国際会議

    Hung-Cuong Pham, Shunsuke Taniguchi, Yuko Inoue, Jyh-Tyng Chou, Toru Izumi, Koji Matsuoka, Kazunari Sasaki

    SSI-20  2015年6月 

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    開催年月日: 2015年6月

    記述言語:英語  

    開催地:Colorado   国名:アメリカ合衆国  

    Fe-Cr-Al alloy was investigated for the porous support material of metal supported SOFCs on the cathode side. We found that surface oxide layer of the porous Fe-Cr-Al alloy shows low electrical resistance when the porous alloy was coated with La0.6Sr0.4Co0.2Fe0.8O3 (LSCF) first, and then heat-treated at 700 oC in air. Small amount of Sr included in the Al2O3-rich surface oxide layer may change microstructure and contribute to electronic conduction. In this study, we investigated effect of coating materials using La0.8Sr0.2MnO3 (LSM), LaNi0.6Fe0.4O3 (LNF), Pr0.8Sr0.2MnO3 (PrSM), Ba0.5Sr0.5Co0.8Fe0.2O3 (BSCF), Nd0.8Sr0.2MnO3 (NdSM), La0.8Ca0.2CrO3(LCC), or Li0.025Ni 0.975O (LNO). Relatively low contact resistances were obtained in all cases when these materials were coated on the porous alloy first, and then heat-treated at 700 oC in air. Morphology and crystal structure of the surface oxide layer of the alloy was analyzed by STEM-EDS and TEM in detail to clarify the cause of low electrical resistance.

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MISC

学術貢献活動

  • 学術論文の審査

    役割:査読

    2024年5月

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    種別:査読等 

    外国語雑誌 査読論文数:1

  • 学術論文等の審査

    役割:査読

    2023年

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    種別:査読等 

    外国語雑誌 査読論文数:2

  • 学術論文等の審査

    役割:査読

    2022年

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    種別:査読等 

    外国語雑誌 査読論文数:2

  • 学術論文等の審査

    役割:査読

    2021年

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    種別:査読等 

    外国語雑誌 査読論文数:4

  • 学術論文等の審査

    役割:査読

    2019年

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    種別:査読等 

    外国語雑誌 査読論文数:4

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共同研究・競争的資金等の研究課題

  • 燃料電池等利用の飛躍的拡大に向けた共通課題解決型産学官連携研究開発事業/共通課題解決型基盤技術開発/固体酸化物形燃料電池スタックの高度評価・解析技術の研究開発

    2020年8月 - 2025年3月

    受託研究

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    担当区分:研究分担者  資金種別:受託研究

  • 固体酸化物形燃料電池等実用化推進技術開発事業/固体酸化物形燃料電池の耐久性迅速評価方法に関する基礎研究/化学的解析による劣化機構解明

    2013年7月 - 2020年2月

    受託研究

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    担当区分:研究分担者  資金種別:その他産学連携による資金

  • 固体酸化物形燃料電池を用いた事業用発電システム要素技術開発(NEDO)/SOFCセルスタックの解体分析調査

    2012年9月 - 2015年2月

    受託研究

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    担当区分:研究分担者  資金種別:その他産学連携による資金

  • SOFCのクロム被毒劣化を解決する「電極反応場にクロムを固定化しない材料と運転」

    研究課題/領域番号:24560850  2012年 - 2014年

    日本学術振興会  科学研究費助成事業  基盤研究(C)

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    担当区分:研究代表者  資金種別:科研費

  • SOFC耐クロム被毒空気極の創製を目指した電極材料種による被毒劣化過程の研究

    研究課題/領域番号:22860048  2010年 - 2011年

    日本学術振興会  科学研究費助成事業  研究活動スタート支援

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    担当区分:研究代表者  資金種別:科研費

教育活動概要

  • 固体酸化物形燃料電池(SOFC)、高温水蒸気電解(SOEC)に関するNEDO受託研究や企業共同研究

学内運営に関わる各種委員・役職等

  • 2023年1月 - 2024年3月   センター 次世代燃料電池産学連携研究センター 副センター長

  • 2022年4月 - 2022年6月   センター 次世代燃料電池産学連携研究センター 副センター長

  • 2019年4月 - 2022年3月   センター 次世代燃料電池産学連携研究センター 副センター長

  • 2017年4月 - 2019年3月   センター 次世代燃料電池産学連携研究センター 副センター長

  • 2015年4月 - 2019年3月   センター 次世代燃料電池産学連携研究センター 副センター長 (運営委員)