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    • 1. 发明授权
    • Method for reducing carbon dioxide
    • 减少二氧化碳的方法
    • US08597488B2
    • 2013-12-03
    • US13485285
    • 2012-05-31
    • Masahiro DeguchiYuji ZenitaniReiko TaniguchiSatoshi Yotsuhashi
    • Masahiro DeguchiYuji ZenitaniReiko TaniguchiSatoshi Yotsuhashi
    • C25B3/00C25B1/00
    • C25B3/04B01J27/24
    • The method for reducing carbon dioxide of the present disclosure includes a step (a) and a step (b) as follows. A step (a) of preparing an electrochemical cell. The electrochemical cell comprises a working electrode, a counter electrode and a vessel. The vessel stores an electrolytic solution. The working electrode contains at least one nitride selected from the group consisting of titanium nitride, zirconium nitride, hafnium nitride, tantalum nitride, molybdenum nitride and iron nitride. The electrolytic solution contains carbon dioxide. The working electrode and the counter electrode are in contact with the electrolytic solution. A step (b) of applying a negative voltage and a positive voltage to the working electrode and the counter electrode, respectively, to reduce the carbon dioxide.
    • 本公开的减少二氧化碳的方法包括如下步骤(a)和步骤(b)。 制备电化学电池的步骤(a)。 电化学电池包括工作电极,对电极和容器。 容器存储电解液。 工作电极含有选自氮化钛,氮化锆,氮化铪,氮化钽,氮化钼和氮化铁中的至少一种氮化物。 电解液含有二氧化碳。 工作电极和对电极与电解液接触。 分别对工作电极和对电极施加负电压和正电压以减少二氧化碳的步骤(b)。
    • 2. 发明申请
    • METHOD FOR REDUCING CARBON DIOXIDE
    • 减少二氧化碳的方法
    • US20120234691A1
    • 2012-09-20
    • US13485285
    • 2012-05-31
    • Masahiro DeguchiYuji ZenitaniReiko TaniguchiSatoshi Yotsuhashi
    • Masahiro DeguchiYuji ZenitaniReiko TaniguchiSatoshi Yotsuhashi
    • C25B3/04
    • C25B3/04B01J27/24
    • The method for reducing carbon dioxide of the present disclosure includes a step (a) and a step (b) as follows. A step (a) of preparing an electrochemical cell. The electrochemical cell comprises a working electrode, a counter electrode and a vessel. The vessel stores an electrolytic solution. The working electrode contains at least one nitride selected from the group consisting of titanium nitride, zirconium nitride, hafnium nitride, tantalum nitride, molybdenum nitride and iron nitride. The electrolytic solution contains carbon dioxide. The working electrode and the counter electrode are in contact with the electrolytic solution. A step (b) of applying a negative voltage and a positive voltage to the working electrode and the counter electrode, respectively, to reduce the carbon dioxide.
    • 本公开的减少二氧化碳的方法包括如下步骤(a)和步骤(b)。 制备电化学电池的步骤(a)。 电化学电池包括工作电极,对电极和容器。 容器存储电解液。 工作电极含有选自氮化钛,氮化锆,氮化铪,氮化钽,氮化钼和氮化铁中的至少一种氮化物。 电解液含有二氧化碳。 工作电极和对电极与电解液接触。 分别对工作电极和对电极施加负电压和正电压以减少二氧化碳的步骤(b)。
    • 6. 发明授权
    • Method for reducing carbon dioxide
    • 减少二氧化碳的方法
    • US08414758B2
    • 2013-04-09
    • US13453669
    • 2012-04-23
    • Masahiro DeguchiSatoshi YotsuhashiYuka Yamada
    • Masahiro DeguchiSatoshi YotsuhashiYuka Yamada
    • C25B3/04H01M6/30H01M8/22
    • C25B1/003C25B1/00C25B3/04
    • A device for reducing carbon dioxide includes a cathode chamber including a cathode electrolyte solution and a cathode electrode, an anode chamber including an anode electrolyte solution and an anode electrode, and a solid electrolyte membrane. The anode electrode includes a nitride semiconductor region on which a metal layer is formed. The metal layer includes at least one of nickel and titanium. A method for reducing carbon dioxide by using a device for reducing carbon dioxide includes steps of providing carbon dioxide into the cathode solution, and irradiating at least part of the nitride semiconductor region and the metal layer with a light having a wavelength of 250 nanometers to 400 nanometers, thereby reducing the carbon dioxide contained in the cathode electrolyte solution.
    • 一种二氧化碳还原装置包括阴极室,包括阴极电解质溶液和阴极电极,阳极室包括阳极电解质溶液和阳极电极以及固体电解质膜。 阳极包括形成有金属层的氮化物半导体区域。 金属层包括镍和钛中的至少一种。 通过使用用于还原二氧化碳的装置来还原二氧化碳的方法包括向阴极溶液中提供二氧化碳的步骤,以及使用波长为250纳米至400埃的光照射至少部分氮化物半导体区域和金属层 纳米,从而减少阴极电解质溶液中所含的二氧化碳。