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    • 1. 发明申请
    • WATER ELECTROLYSIS SYSTEM
    • 水电解系统
    • US20120103796A1
    • 2012-05-03
    • US13239834
    • 2011-09-22
    • Kenji TARUYAKoji NakazawaHisashi NagaokaDaisuke Kurashina
    • Kenji TARUYAKoji NakazawaHisashi NagaokaDaisuke Kurashina
    • C25B1/08
    • C25B1/12Y02E60/366
    • A water electrolysis system includes a high-pressure water electrolysis apparatus and a gas-liquid separation device. The gas-liquid separation device includes a block member which includes a gas-liquid separation opening and a water-level detection opening. The gas-liquid separation opening and the water-level detection opening extend substantially vertically and includes respective bottom portions which integrally communicate with a discharge pipe. The discharge pipe is disposed at a lower side portion of the block member. The water-level detection opening includes a top portion and a top water-level detection section. The block member further includes an inlet hole in which the hydrogen is introduced from the high-pressure water electrolysis device. The inlet hole is disposed at an upper side portion of the block member. The inlet hole is positioned above the top water-level detection section of the water-level detection opening.
    • 水电解系统包括高压水电解装置和气液分离装置。 气液分离装置包括具有气液分离开口和水位检测用开口部的块部件。 气液分离开口和水位检测开口大致垂直地延伸,并且包括与排出管一体地连通的相应底部。 排出管设置在块体的下侧部。 水位检测开口包括顶部和顶部水位检测部。 块构件还包括从高压水电解装置引入氢的入口孔。 入口孔设置在块构件的上侧部分。 入口孔位于水位检测开口的顶部水位检测部分的上方。
    • 2. 发明授权
    • Water electrolysis system
    • 水电解系统
    • US08663436B2
    • 2014-03-04
    • US13239834
    • 2011-09-22
    • Kenji TaruyaKoji NakazawaHisashi NagaokaDaisuke Kurashina
    • Kenji TaruyaKoji NakazawaHisashi NagaokaDaisuke Kurashina
    • C25B15/00C25B9/00C25B1/04
    • C25B1/12Y02E60/366
    • A water electrolysis system includes a high-pressure water electrolysis apparatus and a gas-liquid separation device. The gas-liquid separation device includes a block member which includes a gas-liquid separation opening and a water-level detection opening. The gas-liquid separation opening and the water-level detection opening extend substantially vertically and includes respective bottom portions which integrally communicate with a discharge pipe. The discharge pipe is disposed at a lower side portion of the block member. The water-level detection opening includes a top portion and a top water-level detection section. The block member further includes an inlet hole in which the hydrogen is introduced from the high-pressure water electrolysis device. The inlet hole is disposed at an upper side portion of the block member. The inlet hole is positioned above the top water-level detection section of the water-level detection opening.
    • 水电解系统包括高压水电解装置和气液分离装置。 气液分离装置包括具有气液分离开口和水位检测用开口部的块部件。 气液分离开口和水位检测开口大致垂直地延伸,并且包括与排出管一体地连通的相应底部。 排出管设置在块体的下侧部。 水位检测开口包括顶部和顶部水位检测部。 块构件还包括从高压水电解装置引入氢的入口孔。 入口孔设置在块构件的上侧部分。 入口孔位于水位检测开口的顶部水位检测部分的上方。
    • 5. 发明授权
    • Method for operating water electrolysis system
    • 操作水电解系统的方法
    • US08685223B2
    • 2014-04-01
    • US13007675
    • 2011-01-17
    • Daisuke KurashinaKenji TaruyaJun Takeuchi
    • Daisuke KurashinaKenji TaruyaJun Takeuchi
    • C25B15/08C25B1/04
    • C25B1/12C25B15/02Y02E60/366
    • A method for operating a water electrolysis system includes determining whether or not a water electrolysis apparatus is shut down. The water electrolysis system includes the water electrolysis apparatus, a water circulation apparatus, and a gas-liquid separation apparatus. The water electrolysis apparatus includes power feeders provided on an anode side and a cathode side of an electrolyte membrane. The water electrolysis apparatus generates oxygen on the anode side and generates hydrogen on the cathode side at a higher pressure than a pressure of the oxygen by electrolysis of water. Pressure on the cathode side is released when it is determined that the water electrolysis apparatus is shut down. The water circulation apparatus is operated until a concentration of hydrogen remaining on the anode side is a specified value or less under a condition in which a release of pressure on the cathode side is completed.
    • 一种操作水电解系统的方法,包括确定水电解装置是否关闭。 水电解系统包括水电解装置,水循环装置和气液分离装置。 水电解装置包括设置在电解质膜的阳极侧和阴极侧的供电装置。 水电解装置在阳极侧产生氧气,通过电解水,在比氧气压力高的压力下在阴极侧产生氢气。 当确定水电解装置关闭时,阴极侧的压力被释放。 运行水循环装置直到在阴极侧的压力释放完成的条件下,残留在阳极侧的氢浓度为规定值以下。
    • 6. 发明申请
    • METHOD FOR OPERATING WATER ELECTROLYSIS SYSTEM
    • 水电解系统操作方法
    • US20110180416A1
    • 2011-07-28
    • US13007675
    • 2011-01-17
    • Daisuke KurashinaKenji TaruyaJun Takeuchi
    • Daisuke KurashinaKenji TaruyaJun Takeuchi
    • C25B15/02C25B1/12
    • C25B1/12C25B15/02Y02E60/366
    • A method for operating a water electrolysis system includes determining whether or not a water electrolysis apparatus is shut down. The water electrolysis system includes the water electrolysis apparatus, a water circulation apparatus, and a gas-liquid separation apparatus. The water electrolysis apparatus includes power feeders provided on an anode side and a cathode side of an electrolyte membrane. The water electrolysis apparatus generates oxygen on the anode side and generates hydrogen on the cathode side at a higher pressure than a pressure of the oxygen by electrolysis of water. Pressure on the cathode side is released when it is determined that the water electrolysis apparatus is shut down. The water circulation apparatus is operated until a concentration of hydrogen remaining on the anode side is a specified value or less under a condition in which a release of pressure on the cathode side is completed.
    • 一种操作水电解系统的方法,包括确定水电解装置是否关闭。 水电解系统包括水电解装置,水循环装置和气液分离装置。 水电解装置包括设置在电解质膜的阳极侧和阴极侧的供电装置。 水电解装置在阳极侧产生氧气,通过电解水,在比氧气压力高的压力下在阴极侧产生氢气。 当确定水电解装置关闭时,阴极侧的压力被释放。 运行水循环装置直到在阴极侧的压力释放完成的条件下,残留在阳极侧的氢浓度为规定值以下。
    • 8. 发明申请
    • MOTORCYCLE PNEUMATIC TIRE
    • 摩托车气胎
    • US20140116591A1
    • 2014-05-01
    • US14128274
    • 2012-06-22
    • Daisuke Kurashina
    • Daisuke Kurashina
    • B60C11/03
    • B60C11/03B60C11/0302B60C2011/0365B60C2011/0372B60C2011/0374B60C2200/10
    • A motorcycle pneumatic tire including a ring-shaped tread portion 10. A steeply-inclined groove 1a having an inclination angle θc of larger than 0° and not larger than 35° with respect to the circumferential direction is provided on, when the width of the tread portion 10 is set to Tw, the whole or a part of regions from a tire equator CL to lengths of ¼ Tw in the width direction in a V shape centering on the tire equator; and a mildly-inclined groove 1b having an inclination angle θs of 45° to 90° with respect to the circumferential direction is provided on the whole or a part of regions from the outside end portion of the steeply-inclined groove 1a in the tire width direction to a tread end portion discontinuously with the steeply-inclined groove 1a.
    • 包括环形胎面部分10的摩托车充气轮胎。当宽度方向上的宽度大于0°且不大于35°的倾斜角度大于等于或等于35°的倾斜角度α时, 胎面部10的轮胎赤道以V形为基准,将从轮胎赤道线CL到宽度方向的长度为¼Tt的全部或一部分设定为Tw, 并且在陡峭倾斜槽1a的外端部的全部或一部分区域中设置有相对于圆周方向具有45°至90°的倾斜角度的温和倾斜槽1b, 胎面端部的轮胎宽度方向与陡倾斜槽1a不连续。