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    • 1. 发明专利
    • Hydrogen production device
    • 氢生产设备
    • JP2008195585A
    • 2008-08-28
    • JP2007034340
    • 2007-02-15
    • Toshiba Corp株式会社東芝
    • NISHIKAWA JUNMARUKI SHINICHIROISOGAWA KATSUSHIFUJIKI KENJIKUSHIMA KAZUOFUKUSHIMA KIMICHIKAYAMADA KAZUYAYOKOYAMA SHIGEKI
    • C01B3/32H01M8/06
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To provide a hydrogen production device which effectively utilizes exhaust gas and exhaust heat generated upon hydrogen production to improve the heat efficiency of the whole device, and also can recover excess raw materials to reduce raw materials used for hydrogen production. SOLUTION: The hydrogen production device 1 comprises: a hydrogen generating apparatus 2 where hydrogen is generated by the steam reforming of oxygen-containing hydrocarbon; a residual raw material recovering apparatus 3 where residual raw materials c included in a hydrogen-containing process fluid a fed by the hydrogen generating apparatus 2 are separated and recovered; a hydrogen refining apparatus 4 where product hydrogen d is produced from the hydrogen-containing process fluid a 2 fed from the residual raw material recovering apparatus 3; and a heat reutilizing means where exhaust heat and exhaust gas generated upon the production of the product hydrogen d are utilized as a heat source for at least one apparatus selected from the hydrogen generating apparatus 2, the residual raw material recovering apparatus 3 and the hydrogen refining apparatus 4. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种有效利用废气和氢气产生的废热的氢气生产装置,以提高整个装置的热效率,并且还可以回收多余的原料以减少用于氢的原料 生产。 解决方案:氢气制备装置1包括:氢气发生装置2,其中通过含氧烃的蒸汽重整产生氢; 残留原料回收装置3,其中分离回收由氢生成装置2供给的含氢处理流体a中所含的残留原料c; 从残留原料回收装置3供给的含氢处理流体a 2 产生氢气d的氢精制装置4; 以及在生产氢气d时产生的废热和废气用作用于选自氢生成装置2,残余原料回收装置3和氢精炼中的至少一种装置的热源的热再循环装置 设备4.版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Nuclear reactor building and construction method for the same
    • 核反应堆建筑及其构造方法
    • JP2010160061A
    • 2010-07-22
    • JP2009002588
    • 2009-01-08
    • Toshiba Corp株式会社東芝
    • YOKOYAMA SHIGEKIUKAI MAKOTOTAKAHASHI MUNETAKAHIRAI HIDEOMIYAGAWA TAKUYATANABE MASASHI
    • G21C1/00G21C13/00G21C11/02
    • G21C13/02Y02E30/40
    • PROBLEM TO BE SOLVED: To provide a nuclear reactor building and a construction method for the same avoiding interference between a containment vessel penetrating part of a containment vessel made of steel and a building module having a steel plate concrete structure and shortening the construction period.
      SOLUTION: The nuclear reactor building 2 stores a containment vessel 1 having a plurality of containment vessel penetrating parts 3 therearound and has a steel plate concrete structure including a biological shielding wall 4 installed in the outside of the containment vessel. The containment vessel includes a plurality of blocks horizontally divided, and each block has one or a plurality of the containment vessel penetrating parts 3 on the same horizontal plane. The nuclear reactor building 2 including the biological shielding wall 4 includes a plurality of modules divided by the horizontal plane.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种核反应堆建筑物及其构造方法,以避免与钢板混凝土结构的建筑模块和具有钢板混凝土结构的建筑模块之间的干扰, 期。 解决方案:核反应堆2存储具有多个安全壳穿透部分3的安全壳1,并且具有包括安装在安全壳外部的生物屏蔽壁4的钢板混凝土结构。 容纳容器包括水平分割的多个块,每个块在同一水平面上具有一个或多个容纳容器穿透部3。 包括生物屏蔽壁4的核反应堆2包括被水平面划分的多个模块。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Sloshing overflow suppression device and fuel storage pool using it
    • 滑动溢流抑制装置和燃料储存池使用它
    • JP2009121925A
    • 2009-06-04
    • JP2007295746
    • 2007-11-14
    • Toshiba Corp株式会社東芝
    • UKAI MAKOTOYOKOYAMA SHIGEKIHIRAO TSUYOSHINAGASHIMA YOSHINORITANAKA SHIGEAKIHATANO SHUNICHITAKAGI KAORU
    • G21C19/07
    • PROBLEM TO BE SOLVED: To suppress overflow of liquid from an opening caused by rocking, while securing visibility of an inner part of the level of the liquid stored in a container having an opening formed on the upper surface.
      SOLUTION: This sloshing overflow suppression device for suppressing overflow from the opening 31 caused by rocking of the liquid such as water 33 stored in the container such as a fuel storage pool 30 having the opening formed on the upper surface is equipped with a plurality of linear bodies 11 crossing the opening 31 under the water level; and a wave prevention plate 21 mounted rotatably on the linear bodies 11, and extending vertically downward longer than an interval between adjacent linear bodies 11.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了抑制由摆动引起的开口的液体的溢出,同时确保存储在形成有上表面的开口的容器中的液面的内部的可见度。 解决方案:用于抑制储存在诸如具有形成在上表面上的开口的燃料储存池30的容器中的诸如水33的液体的摇摆引起的来自开口31的溢流的这种晃荡溢流抑制装置装备有 多个直线体11在水位下与开口31交叉; 以及可旋转地安装在直线体11上并相对于相邻直线体11之间的间隔向下垂直延伸的防波板21.版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Nuclear power facility and static cooling system pool
    • 核动力设施和静态冷却系统池
    • JP2009074980A
    • 2009-04-09
    • JP2007245179
    • 2007-09-21
    • Toshiba Corp株式会社東芝
    • YOKOYAMA SHIGEKI
    • G21C15/18G21C9/004
    • Y02E30/40
    • PROBLEM TO BE SOLVED: To seek reduction in the capacity and volume of a water pool outside of a nuclear reactor containment vessel without deteriorating cooling capacity in a static cooling system in the event of accident in a nuclear reactor.
      SOLUTION: The nuclear power facility includes: a nuclear reactor containment vessel 2 equipped with an upper end slab located at upper perimeter of a nuclear reactor pressure vessel 3 to contain the nuclear reactor pressure vessel 3; an isolation condenser pool 9b and a static containment vessel cooling system pool 11d including primary water-reservoir sections 109b, 111d located at outside of the nuclear reactor containment vessel 2 and positioned above the upper end slab 13, and pits 12b, 12d connected with the primary water-reservoir sections 109b, 111d and located at lateral of the upper end slab 13; and an isolation condenser 8 and a static containment vessel cooling system condenser 10 which is located at a position equal to or below the upper end slab 13 within the pits 12b, 12d and which remove decay heat in the event of accident in the nuclear reactor containment vessel.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:在核反应堆发生事故时,要求减少核反应堆安全壳外的水池的容量和容积,而不会降低静态冷却系统的冷却能力。 解决方案:核电设施包括:装备有位于核反应堆压力容器3的上周边的上端板的核反应堆安全壳2,以容纳核反应堆压力容器3; 隔离冷凝器池9b和静态容纳容器冷却系统池11d,其包括位于核反应堆安全壳2的外部并位于上端板13上方的主要蓄水部分109b,111d以及与上端板13连接的凹坑12b,12d 主蓄水部分109b,111d并位于上端板13的侧面; 隔离冷凝器8和静止容器冷却系统冷凝器10,其位于等于或低于凹坑12b,12d内的上端板13的位置,并且在核反应堆容纳物中发生事故时消除腐蚀热 船只。 版权所有(C)2009,JPO&INPIT