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    • 3. 发明申请
    • SOLAR-CELL-INTEGRATED GAS PRODUCTION DEVICE
    • 太阳能电池一体化气体生产装置
    • US20130068296A1
    • 2013-03-21
    • US13698774
    • 2011-04-07
    • Akihito YoshidaMasaki KagaShunsuke Sata
    • Akihito YoshidaMasaki KagaShunsuke Sata
    • H01L31/04
    • C25B9/00C01B3/042C01B13/0207C25B1/00C25B1/003H01L31/048H01L31/075H02J1/10Y02E10/548Y02E10/549Y02E60/364Y02E60/366Y02P70/521Y10S136/293
    • The present invention provides a solar-cell-integrated gas production device that can generate a first gas and a second gas by utilizing an electromotive force of a solar cell, and that can supply power to an external circuit by utilizing the same solar cell.The solar-cell-integrated gas production device according to the present invention comprises: a photoelectric conversion part having a light acceptance surface and its back surface; a first electrolysis electrode provided on the back surface of the photoelectric conversion part so as to be capable of being immersed into an electrolytic solution; a second electrolysis electrode provided on the back surface of the photoelectric conversion part so as to be capable of being immersed into the electrolytic solution; and a changeover part, wherein the first electrolysis electrode and the second electrolysis electrode are provided to be capable of electrolyzing the electrolytic solution to generate a first gas and a second gas by utilizing an electromotive force generated by irradiating the photoelectric conversion part with light, and the changeover part makes a changeover between a circuit that outputs the electromotive force, generated by irradiating the photoelectric conversion part outputs the electromotive force, generated by irradiating the photoelectric conversion part with light, to the first electrolysis electrode and the second electrolysis electrode.
    • 本发明提供一种能够通过利用太阳能电池的电动势产生第一气体和第二气体的太阳能电池集成气体制造装置,其能够通过利用同一太阳能电池向外部电路供电。 根据本发明的太阳能电池集成气体制造装置包括:具有光接收面及其背面的光电转换部; 第一电解电极,设置在光电转换部的背面,以便能够浸入电解液中; 第二电解电极,设置在光电转换部的背面,以便能够浸入电解液中; 以及切换部,其中所述第一电解电极和所述第二电解电极被设置为能够通过利用通过用光照射所述光电转换部分而产生的电动势来电解所述电解液以产生第一气体和第二气体,以及 转换部分将通过照射光电转换部分产生的电动势的电路输出通过光电转换部分照射光产生的电动势之间的转换到第一电解电极和第二电解电极。
    • 4. 发明申请
    • HYDROGEN PRODUCTION DEVICE AND METHOD FOR PRODUCING HYDROGEN
    • 氢生产装置​​和生产氢的方法
    • US20110214996A1
    • 2011-09-08
    • US12995551
    • 2010-06-25
    • Akihito YoshidaShunsuke SataMasaki Kaga
    • Akihito YoshidaShunsuke SataMasaki Kaga
    • C25B1/02C25B9/08C25B9/00
    • C01B3/04C01B13/0203C25B1/003Y02E60/364Y02E60/366
    • There is provided a hydrogen production device high in light use efficiency and capable of producing hydrogen with high efficiency.The hydrogen production device according to the present invention includes a photoelectric conversion part having a light acceptance surface and a back surface, a first gas generation part provided on the back surface, and a second gas generation part provided on the back surface, in which one of the first gas generation part and the second gas generation part is a hydrogen generation part to generate H2 from an electrolytic solution, another one thereof is an oxygen generation part to generate O2 from the electrolytic solution, the first gas generation part is electrically connected to the back surface, and the second gas generation part is electrically connected to the light acceptance surface via a first conductive part.
    • 提供了一种使用效率高,能够高效生产氢的氢制造装置。 根据本发明的制氢装置包括具有光接收表面和后表面的光电转换部分,设置在背面上的第一气体产生部分和设置在背面上的第二气体产生部分,其中一个 所述第一气体产生部分和所述第二气体产生部分是从电解液产生H 2的氢产生部分,其中另一个是从所述电解液产生O 2的氧气产生部分,所述第一气体产生部分电连接到 后表面和第二气体产生部分经由第一导电部分电连接到光接收表面。
    • 5. 发明申请
    • HYDROGEN PRODUCTION DEVICE AND METHOD FOR PRODUCING HYDROGEN
    • 氢生产装置​​和生产氢的方法
    • US20130180862A1
    • 2013-07-18
    • US13876033
    • 2011-08-09
    • Akihito YoshidaShunsuke SataMasaki Kaga
    • Akihito YoshidaShunsuke SataMasaki Kaga
    • C25B1/04
    • C25B1/04C01B3/042C01B13/0207C25B1/003H01L31/048Y02E10/50Y02E60/364Y02E60/366
    • A hydrogen production device of the present invention includes a photoelectric conversion portion having a light-receiving surface and a back surface, a first electrolysis electrode provided on the back surface, and a second electrolysis electrode provided on the back surface. As a result of reception of light by the photoelectric conversion portion, a potential difference is generated between a first area on the back surface and a second area on the back surface, the first area becomes electrically connected to the first electrolysis electrode, and the second area becomes electrically connected to the second electrolysis electrode. When the first electrolysis electrode and the second electrolysis electrode contact an electrolyte solution, the first electrolysis electrode forms a hydrogen generation portion that generates H2 from the electrolyte solution using an electromotive force generated as a result of reception of light by the photoelectric conversion portion and the second electrolysis electrode forms an oxygen generation portion that generates O2 from the electrolyte solution using the electromotive force.
    • 本发明的氢制造装置包括具有受光面和背面的光电转换部,设置在背面的第一电解电极和设置在背面的第二电解电极。 作为由光电转换部接收光的结果,在背面的第一区域和背面的第二区域之间产生电位差,第一区域与第一电解电极电连接,第二区域 区域与第二电解电极电连接。 当第一电解电极和第二电解电极接触电解质溶液时,第一电解电极形成氢生成部分,其使用由光电转换部分接收光而产生的电动势从电解液产生H 2, 第二电解电极形成使用电动势从电解液产生O 2的氧气产生部分。
    • 7. 发明授权
    • Hydrogen production device and method for producing hydrogen
    • 氢气生产装置及其制氢方法
    • US09447508B2
    • 2016-09-20
    • US13876033
    • 2011-08-09
    • Akihito YoshidaShunsuke SataMasaki Kaga
    • Akihito YoshidaShunsuke SataMasaki Kaga
    • C25B1/04C25B1/00H01L31/048C01B3/04C01B13/02
    • C25B1/04C01B3/042C01B13/0207C25B1/003H01L31/048Y02E10/50Y02E60/364Y02E60/366
    • A hydrogen production device of the present invention includes a photoelectric conversion portion having a light-receiving surface and a back surface, a first electrolysis electrode provided on the back surface, and a second electrolysis electrode provided on the back surface. As a result of reception of light by the photoelectric conversion portion, a potential difference is generated between a first area on the back surface and a second area on the back surface, the first area becomes electrically connected to the first electrolysis electrode, and the second area becomes electrically connected to the second electrolysis electrode. When the first electrolysis electrode and the second electrolysis electrode contact an electrolyte solution, the first electrolysis electrode forms a hydrogen generation portion that generates H2 from the electrolyte solution using an electromotive force generated as a result of reception of light by the photoelectric conversion portion and the second electrolysis electrode forms an oxygen generation portion that generates O2 from the electrolyte solution using the electromotive force.
    • 本发明的氢制造装置包括具有受光面和背面的光电转换部,设置在背面的第一电解电极和设置在背面的第二电解电极。 作为由光电转换部接收光的结果,在背面的第一区域和背面的第二区域之间产生电位差,第一区域与第一电解电极电连接,第二区域 区域与第二电解电极电连接。 当第一电解电极和第二电解电极接触电解质溶液时,第一电解电极形成氢生成部分,其使用由光电转换部分接收光而产生的电动势从电解液产生H 2, 第二电解电极形成使用电动势从电解液产生O 2的氧气产生部分。
    • 8. 发明授权
    • Solar-cell-integrated gas production device
    • 太阳能电池一体化天然气生产装置
    • US09029691B2
    • 2015-05-12
    • US13698774
    • 2011-04-07
    • Akihito YoshidaMasaki KagaShunsuke Sata
    • Akihito YoshidaMasaki KagaShunsuke Sata
    • H01L31/04C25B9/00C01B13/02C25B1/00H01L31/048H01L31/075C01B3/04H02J1/10
    • C25B9/00C01B3/042C01B13/0207C25B1/00C25B1/003H01L31/048H01L31/075H02J1/10Y02E10/548Y02E10/549Y02E60/364Y02E60/366Y02P70/521Y10S136/293
    • The present invention provides a solar-cell-integrated gas production device that can generate a first gas and a second gas by utilizing an electromotive force of a solar cell, and that can supply power to an external circuit by utilizing the same solar cell. The solar-cell-integrated gas production device according to the present invention comprises: a photoelectric conversion part having a light acceptance surface and its back surface; a first electrolysis electrode provided on the back surface of the photoelectric conversion part so as to be capable of being immersed into an electrolytic solution; a second electrolysis electrode provided on the back surface of the photoelectric conversion part so as to be capable of being immersed into the electrolytic solution; and a changeover part, wherein the first electrolysis electrode and the second electrolysis electrode are provided to be capable of electrolyzing the electrolytic solution to generate a first gas and a second gas by utilizing an electromotive force generated by irradiating the photoelectric conversion part with light, and the changeover part makes a changeover between a circuit that outputs the electromotive force, generated by irradiating the photoelectric conversion part outputs the electromotive force, generated by irradiating the photoelectric conversion part with light, to the first electrolysis electrode and the second electrolysis electrode.
    • 本发明提供一种能够通过利用太阳能电池的电动势产生第一气体和第二气体的太阳能电池集成气体制造装置,其能够通过利用同一太阳能电池向外部电路供电。 根据本发明的太阳能电池集成气体制造装置包括:具有光接收面及其背面的光电转换部; 第一电解电极,设置在光电转换部的背面,以便能够浸入电解液中; 第二电解电极,设置在光电转换部的背面,以便能够浸入电解液中; 以及切换部,其中所述第一电解电极和所述第二电解电极被设置为能够通过利用通过用光照射所述光电转换部分而产生的电动势来电解所述电解液以产生第一气体和第二气体,以及 转换部分将通过照射光电转换部分产生的电动势的电路输出通过光电转换部分照射光产生的电动势之间的转换到第一电解电极和第二电解电极。
    • 9. 发明授权
    • Hydrogen production device and method for producing hydrogen
    • 氢气生产装置及其制氢方法
    • US08632663B2
    • 2014-01-21
    • US12995551
    • 2010-06-25
    • Akihito YoshidaShunsuke SataMasaki Kaga
    • Akihito YoshidaShunsuke SataMasaki Kaga
    • C25B9/06C25B1/04
    • C01B3/04C01B13/0203C25B1/003Y02E60/364Y02E60/366
    • There is provided a hydrogen production device high in light use efficiency and capable of producing hydrogen with high efficiency.The hydrogen production device according to the present invention includes a photoelectric conversion part having a light acceptance surface and a back surface, a first gas generation part provided on the back surface, and a second gas generation part provided on the back surface, in which one of the first gas generation part and the second gas generation part is a hydrogen generation part to generate H2 from an electrolytic solution, another one thereof is an oxygen generation part to generate O2 from the electrolytic solution, the first gas generation part is electrically connected to the back surface, and the second gas generation part is electrically connected to the light acceptance surface via a first conductive part.
    • 提供了一种使用效率高,能够高效生产氢的氢制造装置。 根据本发明的制氢装置包括具有光接收表面和后表面的光电转换部分,设置在背面上的第一气体产生部分和设置在背面上的第二气体产生部分,其中一个 所述第一气体产生部分和所述第二气体产生部分是从电解液产生H 2的氢产生部分,其中另一个是从所述电解液产生O 2的氧气产生部分,所述第一气体产生部分电连接到 后表面和第二气体产生部分经由第一导电部分电连接到光接收表面。
    • 10. 发明申请
    • HYDROGEN PRODUCTION DEVICE AND METHOD FOR PRODUCING HYDROGEN
    • 氢生产装置​​和生产氢的方法
    • US20130015076A1
    • 2013-01-17
    • US13577505
    • 2010-12-20
    • Akihito YoshidaShunsuke SataMasaki Kaga
    • Akihito YoshidaShunsuke SataMasaki Kaga
    • C25B9/00C25B1/02
    • C25B1/02C01B3/04C01B13/0207C25B1/003H01L31/046H01L31/0465H01L31/0682H01L31/076Y02E10/547Y02E10/548Y02E60/364Y02P20/133
    • There is provided a hydrogen production device which is high in the light use efficiency and can produce hydrogen with high efficiency without decreasing the hydrogen generation rate.The hydrogen production device according to the present invention comprises: a photoelectric conversion part having a light acceptance surface and a back surface; a first gas generation part and a second gas generation part provided on the back surface, wherein one of the first gas generation part and the second gas generation part is a hydrogen generation part to generate H2 from an electrolytic solution, and the other thereof is an oxygen generation part to generate O2 from the electrolytic solution, and at least one of the first gas generation part and the second gas generation part is plural, and the photoelectric conversion part is electrically connected to the first gas generation part and the second gas generation part so that an electromotive force generated by a light acceptance of the photoelectric conversion part is supplied to the first gas generation part and the second gas generation part.
    • 提供了一种氢利用效率高的氢制造装置,能够在不降低氢生成率的情况下高效率地生成氢。 根据本发明的制氢装置包括:具有光接收面和背面的光电转换部; 第一气体产生部分和设置在背面上的第二气体产生部分,其中第一气体产生部分和第二气体产生部分之一是氢生成部分,以从电解液中产生H 2,另一个是 氧气产生部分,从电解液中产生O 2,并且第一气体产生部分和第二气体产生部分中的至少一个是多个,并且光电转换部分电连接到第一气体产生部分和第二气体产生部分 使得通过光电转换部的光接收而产生的电动势被供给到第一气体生成部和第二气体生成部。