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    • 7. 发明授权
    • Material for hydrogen absorption and desorption
    • 用于吸氢和解吸的材料
    • US4446121A
    • 1984-05-01
    • US370997
    • 1982-04-22
    • Takaharu GamoYoshio MoriwakiToshio Yamashita
    • Takaharu GamoYoshio MoriwakiToshio Yamashita
    • C01B3/00C01B6/24
    • C01B3/0031Y02E60/327Y02P20/129Y02P20/134Y10S420/90
    • An economical metallic material for absorption and desorption of hydrogen comprising an alloy having the general formula represented by AB.sub.x, wherein A is Ca or a metallic material which is an alloy including Ca, B is Ni or a metallic material which is an alloy including Ni, and x is in the range of 3.8-6.3, and exhibiting a hydrogen dissociation equilibrium pressure (or plateau pressure, pressure of the plateau region of hydrogen dissociation pressure-hydride composition isotherm) below 1 atm at normal temperatures.The material of the invention very easily absorbs large amounts of hydrogen and efficiently releases it at other predetermined temperatures, pressure and electrochemical conditions, whereby it is able to store hydrogen safely, usefully and economically. It is also suitable for use especially as media for thermal energy storage such as solar energy, waste heat from the electric power generators, and iron foundries, as the alloy of this invention has a plateau pressure below 1 atm at room temperature and of several atmospheres at 35.degree.-100.degree. C.
    • 一种用于吸收和解吸氢的经济金属材料,包括具有由ABx表示的通式的合金,其中A为Ca或作为包含Ca,B的合金的金属材料为Ni或金属材料,其为包含Ni, x在3.8-6.3的范围内,并且在正常温度下表现出低于1atm的氢解离平衡压力(或平台压力,氢解离压 - 氢化物组成等温线的平台区的压力)。 本发明的材料非常容易地吸收大量的氢并且在其它预定的温度,压力和电化学条件下有效地将其释放,由此能够安全,有用和经济地储存氢。 特别是作为太阳能,来自发电机的废热和铁铸造的热能储存介质,特别是作为本发明的合金,在室温和几个大气压下的平台压力低于1atm 在35°-100℃
    • 8. 发明授权
    • Material for hydrogen absorption and desorption
    • 用于吸氢和解吸的材料
    • US4358432A
    • 1982-11-09
    • US819510
    • 1977-07-26
    • Takaharu GamoYoshio MoriwakiToshio Yamashita
    • Takaharu GamoYoshio MoriwakiToshio Yamashita
    • C01B3/00C01B6/24
    • C01B3/0031Y02E60/327Y02P20/129Y02P20/134Y10S420/90
    • An economical metallic material for absorption and desorption of hydrogen comprising an alloy having the general formula represented by AB.sub.x, wherein A is Ca or a metallic material which is an alloy including Ca, B is Ni or a metallic material which is an alloy including Ni, and x is in the range of 3.8-6.3, and exhibiting a hydrogen dissociation equilibrium pressure (or plateau pressure, pressure of the plateau region of hydrogen dissociation pressure-hydride composition isotherm) below 1 atm at normal temperatures.The material of the invention very easily absorbs large amounts of hydrogen and efficiently releases it at other predetermined temperatures, pressure and electrochemical conditions, whereby it is able to store hydrogen safely, usefully and economically. It is also suitable for use especially as media for thermal energy storage such as solar energy, waste heat from the electric power generators, and iron foundries, as the alloy of this invention has a plateau pressure below 1 atm at room temperature and of several atmospheres at 35.degree.-100.degree. C.
    • 一种用于吸收和解吸氢的经济金属材料,包括具有由ABx表示的通式的合金,其中A为Ca或作为包含Ca,B的合金的金属材料为Ni或金属材料,其为包含Ni, x在3.8-6.3的范围内,并且在正常温度下表现出低于1atm的氢解离平衡压力(或平台压力,氢解离压 - 氢化物组成等温线的平台区的压力)。 本发明的材料非常容易地吸收大量的氢并且在其它预定的温度,压力和电化学条件下有效地将其释放,由此能够安全,有用和经济地储存氢。 特别是作为太阳能,来自发电机的废热和铁铸造的热能储存介质,特别是作为本发明的合金,在室温和几个大气压下的平台压力低于1atm 在35°-100℃
    • 9. 发明授权
    • Method of producing hydrogen-storing alloy and electrode making use of
the alloy
    • 使用该合金制备储氢合金和电极的方法
    • US5281390A
    • 1994-01-25
    • US870224
    • 1992-04-20
    • Takaharu GamoYoshio MoriwakiTsutomu IwakiAkemi Shintani
    • Takaharu GamoYoshio MoriwakiTsutomu IwakiAkemi Shintani
    • C01B3/00C22C1/02H01M4/38C22C16/00C22C30/00
    • C01B3/0031C22C1/02H01M4/383Y02E60/327Y10S420/90
    • In the method of the present invention for producing a hydrogen-storing alloy, part or whole of single substance of Zr as a starting material is replaced with a ferrozirconium or a zircalloy. This method enables production of a hydrogen-storing alloy at reduced material and production costs and with high efficiency and safety of work. The alloy produced by this method has high homogeneity with no segregation. It is thus possible to obtain a hydrogen-storing alloy superior in hydrogen-storing characteristics such as hydrogen storage capacity, reaction speed, and electrode reaction efficiency in an electrolyte. It is also possible to obtain, by using this alloy, a nickel-hydrogen storage battery having a large storage capacity and capable of performing quick charging and discharging, while exhibiting longer life and higher economy.
    • PCT No.PCT / JP89 / 01319 Sec。 371日期1990年8月2日第 102(e)1990年8月2日PCT PCT 1989年12月28日PCT公布。 公开号WO90 / 07585 日本1990年7月12日。在本发明的制备储氢合金的方法中,作为起始原料的Zr的单一物质的一部分或全部被铁氟化锆或锆合金代替。 该方法能够以减少的材料和生产成本以及高效率和安全的工作生产储氢合金。 通过该方法制造的合金具有高均匀性,没有偏析。 因此,可以获得在电解液中的储氢能力,反应速度,电极反应效率等储氢特性优异的储氢合金。 通过使用这种合金,也可以获得具有大存储容量并能够进行快速充放电的镍氢蓄电池,同时具有更长的寿命和更高的经济性。