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    • 5. 发明公开
    • MICROBIAL FUEL CELL SYSTEM
    • 微生物燃料电池系统
    • EP3246291A1
    • 2017-11-22
    • EP16737210.1
    • 2016-01-14
    • Panasonic Corporation
    • SUZUKI, YuyaUSUI, HiroakiKITADE, YuukiYOSHIKAWA, NaokiKAMAI, Ryo
    • C02F3/00C02F3/30H01M8/16H01M4/90H01M4/86H01M4/96
    • H01M8/16C02F3/005C02F3/102C02F3/301C02F2001/46142C02F2001/46152C02F2001/46166C02F2101/30C02F2201/46115C02F2303/10H01M4/8657H01M4/96H01M8/0234Y02E60/527Y02W10/30
    • A microbial fuel cell system (100) includes a supply-drain compartment (6) having a supply port (61) and a drain port (62) of an electrolytic solution (2). The microbial fuel cell system further includes one or more power generation cassettes (10) provided in the supply-drain compartment and each including a microbial fuel cell (1) including: a positive electrode (4) including a first water-repellent layer (41) in contact with a gas phase and a gas diffusion layer (42) attached to the first water-repellent layer; and a negative electrode (3) holding anaerobic microorganisms. The microbial fuel cell system includes one or more purifying cassettes (20) provided in the supply-drain compartment and each including a second water-repellent layer (11) in contact with the gas phase. The power generation cassettes are arranged in the supply-drain compartment on the upstream side in a direction in which the electrolytic solution flows from the supply port toward the drain port, and the purifying cassettes are arranged on the downstream side of the power generation cassettes.
    • 微生物燃料电池系统(100)包括具有电解质溶液(2)的供应端口(61)和排放端口(62)的供应 - 排放室(6)。 微生物燃料电池系统还包括一个或多个设置在供应 - 排水室中并且各自包括微生物燃料电池(1)的发电盒(10),所述微生物燃料电池包括:包括第一防水层(41)的正极(4) )与气相和附着于第一防水层的气体扩散层(42)接触; 和保持厌氧微生物的负极(3)。 微生物燃料电池系统包括一个或多个提供在供应 - 排水室中的纯化盒(20),每个净化盒包括与气相接触的第二防水层(11)。 发电盒配置在电解液从供给口朝向排水口的方向的上游侧的供给排水室内,净化盒配置在发电盒的下游侧。
    • 10. 发明公开
    • TUBULAR ELECTRODE ASSEMBLY, USE OF SUCH ASSEMBLY, MICROBIAL FUEL CELL COMPRISING SUCH ASSEMBLY AND PROCESS FOR CONVERTING LIGHT ENERGY INTO ELECTRICITY
    • 管状电极布置,使用这样的安排,微生物燃料电池这样的安排和方法的光能在电转换
    • EP3167506A1
    • 2017-05-17
    • EP15730865.1
    • 2015-05-26
    • Plant-e Knowledge B.V.
    • DE JAGER, PimSTRIK, David Petrus Bonifacius Theodorus BernardusBUISMAN, Cees Jan NicoHELDER, Marjolein
    • H01M8/16H01M8/00
    • H01M8/16H01M8/004Y02E60/527
    • The invention related to a tubular electrode assembly for use in a fuel cell comprising: -a central inner tubular air supply space; -an annular cathode surrounding the tubular air supply space; -an annular anode surrounding the cathode; -an oxygen-permeable layer that is impermeable for water between the tubular air supply space and the cathode; -an electrically-insulating, ion-permeable layer between the cathode and the anode; and -a first current collector attached to the anode and a second current collector attached to the cathode, wherein the first and the second current collectors are suitable for electrically connecting the anode with the cathode via an external electrically conductive path, wherein the central inner tubular air supply space is provided with an inlet for air that prevents water from entering the tubular air supply space. The invention further relates to use of such assembly in a fuel cell, to a microbial fuel comprising such assembly and to a process for converting light energy into electricity using such microbial fuel cell that makes use of organisms capable of photosynthesis.
    • 涉及一种管状电极组件,其用于在燃料电池中,其包括使用本发明:-a中央内部管状空气供应空间; -an环形设计阴极包围管状空气供应空间; -an环形设计阳极围绕阴极; -an透氧层确实是不可渗透的用于管状空气供应空间和阴极之间的水; -an电绝缘,所述阴极和阳极之间的离子渗透层; 和 - 一个第一电流收集附着到所述阳极和第二集电器连接至正极,worin第一和第二电流收集器适用于电与阴极经由外部导电路径上连接阳极,worin中央内部管状 空气供给空间被在入口,用于从空气进入管状空气供应空间确实防止水提供。 本发明还涉及使用在燃料电池中搜索组件,涉及一种微生物燃料包括寻求组件和一种用于将光能转换成使用微生物燃料电池搜索电力那样利用能够进行光合作用的有机体。