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    • 3. 发明专利
    • Method for zinc supply to reactor
    • 锌供应给反应器的方法
    • JP2007033352A
    • 2007-02-08
    • JP2005219994
    • 2005-07-29
    • Hitachi Ltd株式会社日立製作所
    • AIZAWA MOTOHIROHOSOKAWA HIDEYUKIISHIDA KAZUNARI
    • G21D3/08G21C19/307G21D1/00G21D1/02
    • Y02E30/40
    • PROBLEM TO BE SOLVED: To provide a method for zinc supply to a reactor capable of drastically reducing additional placing cost of zinc supply facility for suppressing adhesion of radioactive materials on inner surface of piping and component containing radioactive materials, operation and maintenance cost and management cost.
      SOLUTION: This method for zinc supply is for a boiling water reactor power plant having a boiling water reactor 1, steam turbines 3 and 4 for driving a generator with the steam, a condenser 5 for cooling the steam having driven the steam turbine 4 returning to water, a condensate filter 7 for purifying the condensate water, a condensate demineralizer 8 and supply water heaters 10 and 12 for heating purified water and returning to the reactor. The zinc concentration in the condensate filter 7 outlet water is raised by precoating particles containing zinc in the filtering surface of processed water inlet side of the condensate filter 7. Part of condensate water flow passing the condensate filter 7 is bypassed with a condensate filter bypass valve and a bypass pipe 25, iron concentration in condensate filter 7 outlet water is increased and zinc is supplied to the reactor 1.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够大大降低锌供应设备的附加放置成本的锌供应方法,用于抑制放射性物质在管道内部表面和含有放射性物质的成分的附着,操作和维护成本 和管理成本。 解决方案:这种锌供应方法是用于具有沸水反应器1,用于驱动具有蒸汽的发电机的蒸汽轮机3和4的沸水反应堆发电厂,用于冷却已经驱动汽轮机的蒸汽的冷凝器5 4返回水中,用于净化冷凝水的冷凝水过滤器7,冷凝水脱盐机8和用于加热净化水并返回到反应器的供水热水器10和12。 冷凝水过滤器7出水中的锌浓度通过在冷凝水过滤器7的处理水入口侧的过滤表面中预涂涂覆锌的颗粒来提高。通过冷凝物过滤器7的冷凝水流的一部分用冷凝器过滤器旁通阀旁路 和旁通管25,冷凝过滤器7出口水中的铁浓度增加,并且向反应器1供应锌。版权所有(C)2007,JPO&INPIT
    • 9. 发明专利
    • Natural circulation type boiling water reactor and its handling method
    • 自然循环型锅炉水反应器及其处理方法
    • JP2007232421A
    • 2007-09-13
    • JP2006051501
    • 2006-02-28
    • Hitachi Ltd株式会社日立製作所
    • WATANABE ATSUSHIWADA YOICHINAGASE MAKOTOISHIDA KAZUNARIHOSOKAWA HIDEYUKIHIROKAWA FUMIHITOTSUBAKI MASAAKITAKAHASHI SHIRO
    • G21C5/00G21C15/02
    • G21C1/084G21C15/00G21Y2002/402G21Y2004/30Y02E30/31
    • PROBLEM TO BE SOLVED: To provide a natural circulation type boiling water reactor equipped with a chimney easily dismountable from a reactor pressure vessel, capable of reducing welded zones compared with the chimney of a conventional natural circulation type boiling water reactor.
      SOLUTION: In this natural circulation type boiling water reactor 1, a plurality of square tubes 11b constitute the chimney 11. Namely, each of the plurality of square tubes 11b partitions each passage of a coolant over the core. Therefore, in the chimney 11 of the natural circulation type boiling water reactor 1, welded zones can be reduced, because each edge of four corners is not required to be welded in each passage, differently from the case wherein a coolant passage is partitioned by a plate material welded integrally such as a grid-like passage bulkhead in the conventional natural circulation type boiling water reactor.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种具有烟囱的自然循环型沸水反应器,该反应堆容易从反应堆压力容器中拆卸,与传统的自然循环型沸水反应器的烟囱相比,能够减少焊接区域。 解决方案:在这种自然循环型沸水反应器1中,多个方管11b构成烟囱11.即,多个方管11b中的每一个分别在芯上通过冷却剂。 因此,在自然循环式沸水堆1的烟囱11中,由于在每个通路中不需要焊接四个角的每个边缘,所以可以减少焊接区域,其中冷却剂通道被 在常规的自然循环型沸水反应堆中整体焊接如栅格状通道隔板的板材。 版权所有(C)2007,JPO&INPIT
    • 10. 发明专利
    • Deposition suppression method of radionuclide
    • 放射性核素沉积抑制方法
    • JP2007218898A
    • 2007-08-30
    • JP2006337012
    • 2006-12-14
    • Hitachi Ltd株式会社日立製作所
    • HOSOKAWA HIDEYUKINAGASE MAKOTOMORISAWA SATOSHISAKASHITA MOTOAKIYOKOTA KATSUO
    • G21D3/08G21D1/00
    • Y02E30/40
    • PROBLEM TO BE SOLVED: To provide an deposition suppression method of radionuclide capable of improving safety and preventing unexpected extension of the shutdown period of a nuclear power plant. SOLUTION: In a manufacturing plant 17 which is a non-radiation controlled area, formic acid aqueous solution containing Fe (II) ions is produced by dissolving metal iron in the formic acid aqueous solution in a chemicals tank 45. While this aqueous solution is produced, nitrogen is supplied into the chemicals tank 45 from a nitrogen supply device 71, and is discharged from a discharge line 74, thereby reducing the dissolved oxygen concentration in the aqueous solution. The chemicals tank 45 sealed by filling the formic acid aqueous solution containing Fe (II) ions and nitrogen is conveyed from the manufacturing plant 17 into a reactor building 15 which is a radiation controlled area. The chemicals tank 45 is mounted to a film forming device 30 connected to reactor water recirculation piping 22. The formic acid aqueous solution containing Fe (II) ions is supplied from the chemicals tank 45 into the reactor water recirculation piping 22 to form a ferrite film on the inner surface of the reactor water recirculation piping 22. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种放射性核素的沉积抑制方法,其能够提高核电站的安全性并防止意外延长关闭期。 解决方案:在作为非辐射控制区域的制造设备17中,通过将金属铁溶解在化学品罐45中的甲酸水溶液中来生产含有Fe(II)离子的甲酸水溶液。虽然该水性 生成溶液,氮从氮供给装置71供给到化学品箱45中,从排出管74排出,从而降低水溶液中的溶解氧浓度。 通过填充含有Fe(II)离子和氮的甲酸水溶液而密封的化学品箱45从制造厂17输送到作为辐射控制区域的反应堆建筑物15。 化学品箱45安装在与反应器水再循环管道22连接的成膜装置30.含有Fe(II)离子的甲酸水溶液从化学品罐45供给到反应器水循环管道22中以形成铁氧体膜 在反应堆水循环管道22的内表面上。版权所有(C)2007,JPO&INPIT