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    • 2. 发明授权
    • Catalytic hydrogen peroxide decomposer in water-cooled reactors
    • 水冷反应器中催化过氧化氢分解器
    • US06259758B1
    • 2001-07-10
    • US09259645
    • 1999-02-26
    • Young Jin KimLeonard William NiedrachGeorge Charles SogoianRobert Lee Cowan, II
    • Young Jin KimLeonard William NiedrachGeorge Charles SogoianRobert Lee Cowan, II
    • G21C900
    • G21C17/0225G21Y2002/103
    • A metal cooling tube of a water-cooled nuclear reactor, having an inner surface thereof exposed to an aqueous cooling medium containing hydrogen peroxide. The cooling tube has its inner surface coated with matter selected from the group consisting of the element manganese, molybdenum, zinc, copper, cadmium for absorbing such hydrogen peroxide and then affecting decomposition of the hydrogen peroxide in the aqueous medium. In preferred embodiment such coating is manganese and oxides thereof. A method for lowering the electrochemical corrosion potential of a metal allow cooling tube exposed to an aqueous medium in a water-cooled nuclear reactor is also disclosed. Such method comprises the step of coating an inner surface of such tube with matter selected from the group of elements comprising manganese, molybdenum, zinc, copper, cadmium, so as to permit absorption and hydrogen peroxide in such aqueous medium and effect decomposition of hydrogen peroxide in such aqueous medium.
    • 水冷核反应堆的金属冷却管,其内表面暴露于含有过氧化氢的含水冷却介质中。 冷却管的内表面涂有选自元素锰,钼,锌,铜,镉的物质,用于吸收这种过氧化氢,然后影响水介质中过氧化氢的分解。 在优选的实施方案中,这种涂层是锰及其氧化物。 还公开了一种用于降低金属的电化学腐蚀电位的方法,允许在水冷核反应堆中暴露于水性介质的冷却管。 这种方法包括用选自锰,钼,锌,铜,镉的元素组的物质涂覆这种管的内表面的步骤,以便允许在这种水性介质中吸收和过氧化氢并且实现过氧化氢的分解 在这种水性介质中。
    • 6. 发明授权
    • Internal passive water recombiner/hydrogen peroxide decomposer for a
boiling water reactor
    • 用于沸水反应器的内部被动水重组器/过氧化氢分解器
    • US5287392A
    • 1994-02-15
    • US981667
    • 1992-11-25
    • Robert Lee Cowan IIRobert J. LawJames E. CharnleyRobert J. Brandon
    • Robert Lee Cowan IIRobert J. LawJames E. CharnleyRobert J. Brandon
    • G21D1/00B01J35/04G21C17/022G21C19/317G21D3/08
    • G21C17/0225B01J35/04G21C19/317G21Y2002/501G21Y2004/30
    • An internal passive catalytic device operating in the water phase of a boiling water reactor vessel downstream of the steam/water separator location. The device consists of catalytic material arranged and situated such that all (except perhaps a small leakage flow) water phase exiting the water/steam separator device flows over the surface of the catalytic material. The catalytic surfaces decompose dissolved hydrogen peroxide into water and oxygen. When the substrate of the catalytic material is plated or alloyed with a water recombination catalyst such as a noble metal, the catalytic surfaces also catalyze the recombination of dissolved hydrogen and oxygen molecules into water. The passive catalytic device is constructed to ensure that the pressure drop of the reactor water across the device is very small. The device includes a stainless steel flow-through housing packed with catalytic material, which could take the form of tangled wire or strips, crimped ribbon, porous sintered metal composite or any other structure having a high surface area-to-volume ratio.
    • 在蒸汽/水分离器位置下游的沸水反应器容器的水相中操作的内部被动催化装置。 该装置由布置和定位的催化材料组成,使得离开水/蒸汽分离器装置的所有(除了可能是小的泄漏流)水相流过催化材料的表面。 催化表面将溶解的过氧化氢分解成水和氧气。 当催化材料的基底与诸如贵金属的水复合催化剂电镀或合金化时,催化表面还催化溶解的氢和氧分子与水的重组。 被动催化装置被构造成确保反应堆水穿过装置的压降非常小。 该装置包括填充有催化材料的不锈钢流通壳体,其可以采取缠结线或条带,卷曲带,多孔烧结金属复合材料或具有高表面积 - 体积比的任何其它结构的形式。