Rchr
J-GLOBAL ID:201301081620590291
Update date: Oct. 30, 2024
Kakihana Yuriko
カキハナ ユリコ | Kakihana Yuriko
Affiliation and department:
Job title:
Researcher
Research field (1):
Polymer materials
Research theme for competitive and other funds (5):
- 2022 - 2025 高出力・高効率を有する塩分濃度差エネルギー変換セル用新規イオン交換膜の創製
- 2021 - 2024 Development of a novel high-efficiency, high-stability energy conversion system for salinity gradient power generation
- 2015 - 2018 相分離イオンチャネル構造を有する中空糸型イオン交換膜の開発
- 2013 - 2016 Development of a monolithic power generation cell for reverse electrodialysis systems
- 2012 - 2015 究極の分離膜としての無欠陥超薄膜創製を目指した可溶性2次元ポリマー1分子膜の合成
Papers (50):
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Yu Sugimoto, Ryo Ujike, Minato Higa, Yuriko Kakihana, Mitsuru Higa. Power Generation Performance of Reverse Electrodialysis (RED) Using Various Ion Exchange Membranes and Power Output Prediction for a Large RED Stack. Membranes. 2022. 12. 11. 12111141-1141
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Mari Sugioka, Naoko Yoshida, Taiki Yamane, Yuriko Kakihana, Mitsuru Higa, Takahiro Matsumura, Mitsuhiro Sakoda, Kazuki Iida. Long-term evaluation of an air-cathode microbial fuel cell with an anion exchange membrane in a 226L wastewater treatment reactor. Environmental Research. 2021. In press. 112416
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Diyana Kamarudin, N. Awanis Hashim, Boon Hoong Ong, Yuriko Kakihana, Mitsuru Higa, Hideto Matsuyama. Multiple effect of thermal treatment approach on PVDF membranes: Permeability enhancement and silver nanoparticles immobilization. Journal of Environmental Chemical Engineering. 2021. 9. 4
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Yuriko Kakihana, N. Awanis Hashim, Taiko Mizuno, Marika Anno, Mitsuru Higa. Ionic transport properties of cation-exchange membranes prepared from poly(Vinyl alcohol-b-sodium styrene sulfonate). Membranes. 2021. 11. 6
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Tasuma Suzuki, Yuriko Kakihana, Mitsuru Higa. Recovery of Salinity Gradient Energy by Reverse Electrodialysis( RED): Principle, Recent Developments, and Challenges for Commercialization. Salt and Seawater Science & Technology. 2021. 1. 46-60
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MISC (50):
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土井正一, 安川政宏, 垣花百合子, 比嘉充. A study on the degradation of ion exchange membranes used in commercial electro dialysis plants. 日本膜学会年会講演要旨集(CD-ROM). 2022. 44th
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比嘉充, 比嘉充, 堀憲次, 遠藤宣隆, 遠藤宣隆, 安川政宏, 安川政宏, 垣花百合子, 垣花百合子. Development of Desalination System Using Salinity Gradient Energy. ソルト・サイエンス研究財団助成研究報告集 1 理工学編. 2021. 2019
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氏家瞭, 川畑良拓, 垣花百合子, 垣花百合子, 安川政宏, 安川政宏, 比嘉充, 比嘉充. 逆電気透析(RED)発電における新規イオン交換膜を用いた小型スタックでの発電特性評価. 日本海水学会誌. 2020. 74. 3
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比嘉充, 比嘉充, 川畑良拓, 氏家瞭, MEHDIZADEH Soroush, 安川政宏, 安川政宏, 垣花百合子, 垣花百合子. 大型スタックを用いた逆電気透析(RED)発電システムにおける発電特性評価と塩分濃度差エネルギー変換効率の解析. 日本海水学会誌. 2020. 74. 3
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遠藤宣隆, 鈴木祐麻, 通阪栄一, 安川政宏, 垣花百合子, 比嘉充, 井上善之, 熊越瑛, 碓井次郎, 桑嶋知哉. 海水と下水の濃度差エネルギーを用いた逆電気透析-微生物電解水素生成装置の開発. 下水道研究発表会講演集. 2020. 57th
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Patents (2):
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細胞培養用中空糸モジュールおよび細胞培養方法
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移植用部材および移植用部材の製造方法
Lectures and oral presentations (11):
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脂肪族ポリケトンを支持膜とするTFC型中空糸正浸透膜の開発
(膜シンポジウム2015 2015)
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Preparation and characterization of DF poly tetrafluoroethylene-co-vinylalcohol blend membranes with superior antifouling properties
(The 12th International Conference on Membrane Science and Technology (MST2015) 2015)
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Experimental and computational studies on hydrophilic modification of PVC membranes by blending an amphiphilic diblock copolymer
(膜シンポジウム2015 2015)
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TFC型中空糸正浸透膜の作製およびその透水性能の評価
(化学工学会第47回秋季大会 2015)
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Preparation of PVDF Blend Membrane with Superior Antifouling Properties Using a Fluorinated Amphiphilic Copolymer via Nonsolvent Induced Phase Separation (NIPS) Method
(The 9th Conference of Aseanian Membrane Society (AMS9) 2015)
more...
Education (1):
- - 2007 北陸先端科学技術大学院大学 材料科学研究科博士後期課程単位修得退学
Professional career (1):
Work history (6):
Awards (6):
- 2019/06 - The Society of Sea Water Science, Japan 第70年会 技術交流ポスターセッション黒潮賞 逆電気透析(RED)技術を用いたエネルギー変換
- 2019/03 - 日本海水学会若手会 第10回学生研究発表会 優秀発表賞 Power generation performance of A 299 Cell Pair Pilot-Scale RED Stack with The Highest Gross Power Density in The World
- 2018/11 - Japanese Society of Radiation Chemistry 第17回放射線プロセスシンポジウム ポスターセッション優秀賞 放射線グラフト陽・陰イオン交換膜を用いた逆電気透析装置の発電性能
- 2018/06 - The Fiber Society OUTSTANDING POSTER Effect of spacer Geometry on Reverse Electrodialysis (RED) Resistance
- 2018/06 - The Society of Sea Water Science, Japan 学生優秀賞 濃縮海水を用いた逆電気透析発システムにおける運転条件の検討
- 2017/11 - Institute of Ocean Energy, Saga University (IOES) The 4th Program of International Platform on Ocean Energy for Young Researcher 2017 Best presentation award Reverse Electrodialysis (RED) power generation by mixing sea water and river water
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