商品情報にスキップ
1 1

NaBH4とH2Oから水素を生成する燃料電池発電システムの水溶液濃度の推定法

NaBH4とH2Oから水素を生成する燃料電池発電システムの水溶液濃度の推定法

通常価格 ¥770 JPY
通常価格 セール価格 ¥770 JPY
セール 売り切れ
税込

カテゴリ: 論文誌(論文単位)

グループ名: 【D】産業応用部門

発行日: 2021/06/01

タイトル(英語): Method to Estimate the Aqueous Concentration of Sodium Borohydride in Sodium Tetrahydroborate Power Systems

著者名: 田村 憧平(東京理科大学),大野 貴信(東京理科大学),星 伸一(東京理科大学)

著者名(英語): Shohei Tamura (Tokyo University of Science), Takanobu Ohno (Tokyo University of Science), Nobukazu Hoshi (Tokyo University of Science)

キーワード: 水素,燃料電池,オブザーバ,化学工学  hydrogen,fuel cell,observer,chemical engineering

要約(英語): Hydrogen generation systems using powdery sodium borohydride (NaBH4) have been attracting attention owing to their higher energy density and lower infrastructure costs than current mainstream high-pressure hydrogen tank systems. In order for a NaBH4 hydrogen generation system to produce the desired amount of hydrogen, the concentration of the fuel solution must be properly controlled. However, it is difficult to directly measure the mass of water and NaBH4, the values of which are needed to derive the fuel concentration. This paper proposes a fuel concentration estimation method using a state observer from measurable parameters such as hydrogen pressure and discharged hydrogen flow rate. In this paper, it is shown that a NaBH4 hydrogen generation system with an output delay can be represented with a state-space model. A state observer for estimating the concentration of the aqueous solution is designed based on the state-space model. In order to verify the effectiveness of the proposed estimation method, experiments are conducted to estimate the fuel concentration when the fuel input rate is changed and when the fuel concentration is changed during the process of hydrogen generation. As a result, the maximum relative error of the concentration is less than 8.70%, and the validity of the estimation method is clarified when the fuel input rate and the fuel concentration are changed.

本誌: 電気学会論文誌D(産業応用部門誌) Vol.141 No.6 (2021)

本誌掲載ページ: 496-502 p

原稿種別: 論文/日本語

電子版へのリンク: https://www.jstage.jst.go.jp/article/ieejias/141/6/141_496/_article/-char/ja/

販売タイプ
書籍サイズ
ページ数
詳細を表示する