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    • 7. 发明授权
    • Method of suppressing deposition of radioactive isotope
    • 抑制放射性同位素沉积的方法
    • US08259894B2
    • 2012-09-04
    • US11768437
    • 2007-06-26
    • Hideyuki HosokawaMakoto NagaseSatoshi MorisawaMotoaki SakashitaKatsuo Yokota
    • Hideyuki HosokawaMakoto NagaseSatoshi MorisawaMotoaki SakashitaKatsuo Yokota
    • G21C9/00
    • G21C19/307G21Y2002/103G21Y2004/40
    • A formic acid aqueous solution that contains Fe (II) ions is produced by dissolving metal iron in a formic acid aqueous solution. Nitrogen is supplied from a nitrogen supply device to a chemical liquid tank and then discharged from a discharge line to reduce the dissolved oxygen concentration in the aqueous solution. The chemical liquid tank is filled with the formic acid aqueous solution sealed with nitrogen, and transferred from a factory to a nuclear reactor building designated as radiation-controlled areas. Inside the nuclear reactor building, the chemical liquid tank is installed in a film deposition apparatus connected to a reactor water recirculation pipeline. The formic acid aqueous is supplied from the chemical liquid tank to the inside of the reactor water recirculation pipeline, and then a ferrite film is formed on the inner surface of the reactor water recirculation pipeline.
    • 含有Fe(II)离子的甲酸水溶液是通过将金属铁溶解在甲酸水溶液中制成的。 氮气从氮气供给装置供给到药液罐,然后从排出管路排出,以降低水溶液中的溶解氧浓度。 化学液体罐用氮气密封的甲酸水溶液填充,并从工厂转移到指定为辐射控制区的核反应堆。 在核反应堆建筑物内部,化学液体罐安装在连接到反应堆水再循环管道的成膜装置中。 甲酸水溶液从化学液体罐供应到反应器水循环管道的内部,然后在反应器水循环管道的内表面上形成铁氧体膜。
    • 9. 发明授权
    • Suppression method for corrosion of carbon steel member
    • 碳钢构件腐蚀抑制方法
    • US08652271B2
    • 2014-02-18
    • US12849484
    • 2010-08-03
    • Tsuyoshi ItoHideyuki HosokawaYukio HiramaMotoaki SakashitaMakoto Nagase
    • Tsuyoshi ItoHideyuki HosokawaYukio HiramaMotoaki SakashitaMakoto Nagase
    • G21C15/00C23C8/18G21C9/00
    • C23C30/005C23C18/1651C23C18/1692C23C18/32C23C18/52G21C17/0225G21C19/28
    • A bath containing nickel ions and formic acid is injected into a film-forming aqueous solution flowing in a circulation pipe connected to feed water pipe made of carbon steel in a BWR plant. This film-forming aqueous solution is supplied into the feed water pipe through the circulation pipe, and then, a nickel metal film is formed on an inner surface of the feed water pipe. After the nickel metal film is formed, a film-forming aqueous solution containing iron (II) ions, formic acid, nickel ions, hydrogen peroxide, and hydrazine is supplied to the feed water pipe. A nickel ferrite film is formed on the surface of the nickel metal film in the feed water pipe. Then, the nickel ferrite film is come into contact with water containing dissolved-oxygen at 150° C. or above to transform the nickel metal film into a nickel ferrite film. A thick nickel ferrite film is formed on the inner surface of the feed water pipe. Corrosion of the carbon steel member composing the plant can further reduce.
    • 将含有镍离子和甲酸的浴注入与在BWR工厂中由碳钢制的供水管连接的循环管中流动的成膜水溶液中。 该成膜水溶液通过循环管供给到给水管中,然后在给水管的内表面上形成镍金属膜。 在形成镍金属膜之后,向给水管供给含有铁(II)离子,甲酸,镍离子,过氧化氢和肼的成膜水溶液。 在供水管中的镍金属膜的表面上形成镍铁氧体膜。 然后,将镍铁氧体膜与150℃以上的含有溶解氧的水接触,将镍金属膜转变成镍铁氧体膜。 在供水管的内表面上形成厚镍铁氧体膜。 构成植物的碳钢构件的腐蚀可以进一步降低。