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    • 1. 发明专利
    • Method and device for producing gaseous hydrogen
    • 用于生产气化氢的方法和装置
    • JP2005054266A
    • 2005-03-03
    • JP2004054950
    • 2004-02-27
    • Harada HiroshiHiroshima ShigetakaMasateru IrieIrie ReikoShiyunkei IrieIrie YuushinNomura HiroshiSakai HideoTomita MamoruTsuboi Takashi俊慶 入江入江 勇臣政輝 入江入江 礼子原田 博坪井 隆史富田 守廣嶋 成隆酒井 英男野村 博
    • IRIE MASATERUIRIE SHIYUNKEI
    • C01B3/56C25B1/02C25B11/04C25B15/08H01M8/00
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To provide a method and a device for producing gaseous hydrogen capable of affording hydrogen without utilizing direct reaction between iron and sulfuric acid and also without using raw materials requiring a high cost such as gas. SOLUTION: The gaseous hydrogen production device is provided with: an electrolytic cell 1 having a positive electrode 2 and a negative electrode 3; pumps 8 and 10 feeding and exhausting an acid liquid 5 to the electrolytic cell 1; a gas removal apparatus 14 removing impurity gas included in gaseous hydrogen collected on the upper part of the electrolytic cell 1; a porous ceramic filter 15 allowing hydrogen molecules to permeate; and a hydrogen storage part 16 collecting hydrogen refined by the porous ceramic filter 15. An iron material 6 is immersed into the acid liquid 5 stored inside the electrolytic cell 1, further, gaseous hydrogen is produced by electrolysis, impurity gas in the produced gaseous hydrogen is removed by the gas removal apparatus 14, and only hydrogen molecules are permeated with the porous ceramic filter 15 to obtain high purity gaseous hydrogen. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种生产能够提供氢气的氢气的方法和装置,而不需要使用铁和硫酸之间的直接反应,并且也不需要使用高成本的原料如气体。 气体制氢装置具备:具有正极2和负极3的电解槽1; 泵8和10将酸性液体5进料和排出到电解池1; 去除收集在电解槽1上部的气态氢气中的杂质气体的气体去除装置14; 允许氢分子渗透的多孔陶瓷过滤器15; 以及收集由多孔陶瓷过滤器15精炼的氢的氢存储部16.铁素6浸渍在储存在电解槽1内部的酸性液体5中,进一步通过电解产生气态氢气,生成的气态氢气中的杂质气体 被除气装置14除去,只有氢分子被多孔陶瓷过滤器15渗透以获得高纯度气态氢。 版权所有(C)2005,JPO&NCIPI
    • 2. 发明专利
    • Liquefied gas container
    • JP2004176798A
    • 2004-06-24
    • JP2002342845
    • 2002-11-26
    • Masateru Irie政輝 入江
    • IRIE MASATERU
    • F17C3/04
    • Y02E60/321
    • PROBLEM TO BE SOLVED: To provide a container for storing a liquefied gas which can withstand shocks and vibrations even under an extremely low temperature and also has high thermal insulation effects.
      SOLUTION: A heat insulating layer 3 is formed by winding a tubular or planar cold resistant material with a constitution that a cavity part is formed inside and the inside of the cavity part is vacuum or sealed with dry air. The heat insulating layer 3 is provided between an inner vessel 1 to store the liquefied gas and an outer vessel 2 to be exposed to the outside air in the liquefied gas container. Materials such as polyester elastomers, polyamide elastomers, and silicone rubber or a material which is formed by mixing carbon particles to the above materials can be used for the cold resistant material. By this constitution, the vacuum parts or the dry air in multiple layers have thermal insulation action and also the cold resistant material becomes a shock absorbing material. As a result, the liquefied gas container can withstand the shocks and the vibrations.
      COPYRIGHT: (C)2004,JPO