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    • 1. 发明授权
    • Device for recovering feedstock liquid, device for supplying a feedstock liquid, device for solidifying the surfaces of drops, and apparatus for producing ammonium diuranate particles
    • 用于回收原料液的装置,用于供给原料液的装置,用于固化液滴表面的装置,以及用于生产氢氧化二铵颗粒的装置
    • US07811526B2
    • 2010-10-12
    • US10575661
    • 2004-10-15
    • Kazutoshi OkuboMasashi TakahashiTomoo TakayamaKazuhisa NishimuraMasaki Honda
    • Kazutoshi OkuboMasashi TakahashiTomoo TakayamaKazuhisa NishimuraMasaki Honda
    • G21C1/00G21C21/02G21C3/62C01G43/00
    • G21C21/02B01J2/06B05B1/14B05B17/0607C01G43/00C01G43/01C01P2004/32G21C3/64G21Y2002/302G21Y2004/30G21Y2004/40Y02E30/38Y10T137/8158
    • This invention provides a dripping nozzle device to produce ADU particles with good sphericity, a device for recovering a feedstock liquid to prepare a uniform feedstock liquid, a device for supplying a feedstock liquid to form drops with a uniform volume, a device for solidifying the surfaces of drops so that the drops will not deform easily when they fall onto and hit the surface of an aqueous ammonia solution, a device for circulating an aqueous ammonia solution so that the uranyl nitrate in the drops can be changed to ammonium diuranate completely, to such an extent that uranyl nitrate in the center of each drop is changed to ammonium diuranate, and an apparatus for producing ammonium diuranate particles with good sphericity. The dripping nozzle device is provided with a single vibrator to vibrate nozzles simultaneously. The device for recovering a feedstock liquid recovers the feedstock liquid remaining in the nozzles and mixes it with a fresh feedstock liquid. The device for supplying a feedstock liquid is provided with a light irradiator for irradiating falling drops with light. The device for solidifying the surfaces of drops sprays ammonia gas over each of the paths along which the drops dripping from the nozzles fall. The device for circulating an aqueous ammonia solution enables drops to flow upward in the aqueous ammonia solution in the aqueous ammonia solution reservoir. The apparatus for producing ammonium diuranate utilizes these devices.
    • 本发明提供了一种产生具有良好球形度的ADU颗粒的滴水喷嘴装置,用于回收原料液体以制备均匀原料液体的装置,用于供应原料液体以形成具有均匀体积的液滴的装置,用于固化表面的装置 的液滴,使得当滴落到氨水溶液的表面上时,液滴不会容易变形,使氨水溶液循环的装置使得液滴中的铀酰硝酸盐可以完全变成二氢化铵铵, 每滴中心的硝酸铀酸盐变化为二氢化铀的程度,以及具有良好球形度的二异氰酸铵颗粒的装置。 滴水喷嘴装置设有单个振动器以同时振动喷嘴。 用于回收原料液体的装置回收残留在喷嘴中的原料液体并将其与新鲜原料液体混合。 用于供给原料液体的装置设置有用于用光照射落下的液滴的光照射器。 用于固化液滴表面的装置将氨气喷射到从喷嘴滴落的液滴落下的每个路径上。 用于使氨水溶液循环的装置使得液滴在氨水溶液储存器中的氨水溶液中向上流动。 用于生产氢化二铵的装置利用这些装置。
    • 2. 发明申请
    • Dripping nozzle device, device for recovering feedstock liquid, device for supplying a feedstock liquid, device for solidifying the surfaces of drops, device for circulation aqueous ammonia solution, and apparatus for droducing ammonium diuranate particles
    • 滴水喷嘴装置,用于回收原料液的装置,用于供给原料液体的装置,用于固化液滴表面的装置,用于循环氨水溶液的装置,以及用于产生碘化尿素颗粒的装置
    • US20070056637A1
    • 2007-03-15
    • US10575661
    • 2004-10-15
    • Kazutoshi OkuboMasashi TakahashiTomoo TakayamaKazuhisa NishimuraMasaki Honda
    • Kazutoshi OkuboMasashi TakahashiTomoo TakayamaKazuhisa NishimuraMasaki Honda
    • B05B1/00B01J19/00
    • G21C21/02B01J2/06B05B1/14B05B17/0607C01G43/00C01G43/01C01P2004/32G21C3/64G21Y2002/302G21Y2004/30G21Y2004/40Y02E30/38Y10T137/8158
    • This invention provides a dripping nozzle device to produce ADU particles with good sphericity, a device for recovering a feedstock liquid to prepare a uniform feedstock liquid, a device for supplying a feedstock liquid to form drops with a uniform volume, a device for solidifying the surfaces of drops so that the drops will not deform easily when they fall onto and hit the surface of an aqueous ammonia solution, a device for circulating an aqueous ammonia solution so that the uranyl nitrate in the drops can be changed to ammonium diuranate completely, to such an extent that uranyl nitrate in the center of each drop is changed to ammonium diuranate, and an apparatus for producing ammonium diuranate particles with good sphericity. The dripping nozzle device is provided with a single vibrator to vibrate nozzles simultaneously. The device for recovering a feedstock liquid recovers the feedstock liquid remaining in the nozzles and mixes it with a fresh feedstock liquid. The device for supplying a feedstock liquid is provided with a light irradiator for irradiating falling drops with light. The device for solidifying the surfaces of drops sprays ammonia gas over each of the paths along which the drops dripping from the nozzles fall. The device for circulating an aqueous ammonia solution enables drops to flow upward in the aqueous ammonia solution in the aqueous ammonia solution reservoir. The apparatus for producing ammonium diuranate utilizes these devices.
    • 本发明提供了一种产生具有良好球形度的ADU颗粒的滴水喷嘴装置,用于回收原料液体以制备均匀原料液体的装置,用于供应原料液体以形成具有均匀体积的液滴的装置,用于固化表面的装置 的液滴,使得当滴落到氨水溶液的表面上时,液滴不会容易变形,使氨水溶液循环的装置使得液滴中的铀酰硝酸盐可以完全变成二氢化铵铵, 每滴中心的硝酸铀酸盐变化为二氢化铀的程度,以及具有良好球形度的二异氰酸铵颗粒的装置。 滴水喷嘴装置设有单个振动器以同时振动喷嘴。 用于回收原料液体的装置回收残留在喷嘴中的原料液体并将其与新鲜原料液体混合。 用于供给原料液体的装置设置有用于用光照射落下的液滴的光照射器。 用于固化液滴表面的装置将氨气喷射到从喷嘴滴落的液滴落下的每个路径上。 用于使氨水溶液循环的装置使得液滴在氨水溶液储存器中的氨水溶液中向上流动。 用于生产氢化二铵的装置利用这些装置。
    • 3. 发明申请
    • Apparatus For Manufacturing Coated Fuel Particles For High-Temperature Gas-Cooled Reactor
    • 用于制造高温气冷反应堆的涂覆燃料颗粒的装置
    • US20080035056A1
    • 2008-02-14
    • US11587178
    • 2005-04-20
    • Kazutoshi OkuboMasaki HondaAtsushi YasudaTomoo Takayama
    • Kazutoshi OkuboMasaki HondaAtsushi YasudaTomoo Takayama
    • C23C16/00
    • G21C21/02C23C16/4417C23C16/442G21C3/62G21C3/626Y02E30/33Y02E30/38
    • [PROBLEMS] To provide an apparatus for manufacturing high quality coated fuel particles by optimizing the design of gas inlet channels and nozzle openings so as to stabilize and uniformize the feeding of a coating material mixed gas into a reaction vessel. [MEANS FOR SOLVING PROBLEMS] The apparatus comprises a fluidized-bed reaction vessel having a gas inlet nozzle at the bottom of the vessel for forming a multilayered coating on each of the surfaces of UO2 fuel kernels by introducing a coating material mixed gas containing a coating gas and a fluidizing gas from the gas inlet nozzle to the interior thereof under a heated environment while the fuel kernels are fluidized. The gas inlet nozzle comprises a dish-shaped nozzle body fitted into the bottom of the reaction vessel to constitute at least a part of the bottom centre part of the vessel, a plurality of nozzle openings disposed on the nozzle body at positions allocated along a plurality of circular zones which are concentric with each other around the centre axis of said bottom of the reaction vessel, one or more gas inlet channels passing through the nozzle body and communicating with the nozzle openings from the bottom surface side of the vessel, and one or more gas inlet pipes communicating with the one or more gas inlet channels and supplying the coating material mixed gas to the channels from a gas feed system disposed on the outside of the reaction vessel.
    • [问题]提供一种通过优化气体入口通道和喷嘴开口的设计来制造高质量涂层燃料颗粒的装置,以便使涂料混合气体进料到反应容器中稳定和均匀化。 解决问题的手段该设备包括流化床反应容器,其在容器的底部具有气体入口喷嘴,用于通过引入在UO 2燃料颗粒的每个表面上形成多层涂层 在燃料粒子流化的同时,在加热环境下将含有来自气体入口喷嘴的涂覆气体和流化气体的混合气体混合到其内部。 气体入口喷嘴包括装配到反应容器底部的碟形喷嘴体,以构成容器的底部中心部分的至少一部分;多个喷嘴开口,其设置在沿着多个分配的位置处的喷嘴体上 围绕反应容器的底部的中心轴线彼此同心的圆形区域,一个或多个气体入口通道,其通过喷嘴体并与容器的底面侧的喷嘴开口连通,以及一个或多个 更多的气体入口管与一个或多个气体入口通道连通并且从设置在反应容器的外部的气体供给系统将涂料混合气体供应到通道。
    • 7. 发明申请
    • Method for Checking for Leakage from Tubular Batteries
    • 检查管状电池泄漏的方法
    • US20080137807A1
    • 2008-06-12
    • US11722930
    • 2005-11-24
    • Hironori YukisadaTakahito TakahashiMasao NakamuraKazutoshi OkuboMasaya Nakata
    • Hironori YukisadaTakahito TakahashiMasao NakamuraKazutoshi OkuboMasaya Nakata
    • G01N23/223
    • G01N23/223G01M3/38G01N2223/076H01M2/022H01M10/4228H01M10/4285
    • In a method for checking for leakage from tubular batteries, when tubular batteries (Ba) are fed with their respective axial centers aligned in parallel to each other to pass through a leakage check mechanism (12), a sealed end face (33) of the tubular batteries (Ba) is irradiated with an X-ray (34). A fluorescent X-ray (40) coming out of the sealed end face (33) is incident upon a detector (39) through a detection window (35). In accordance with the result of analysis on whether the incident fluorescent X-ray (40) contains a fluorescent X-ray (40) associated with an electrolyte component, it is determined whether leakage has occurred from the tubular batteries (Ba). A length (L1, L3, L5) of the detection window (35) in a direction of feed of the tubular batteries (Ba) is set to be less than a spacing (C1, C2) between the tubular batteries (Ba). A length (L2, L4, L6) of the detection window (35) in an orientation orthogonal to the direction of feed is set to be greater than an outer size (R1, R2) of the cross-sectional shape of the tubular batteries (Ba) in an orientation orthogonal to their axial center. It is thus possible to highly accurately determine occurrence of leakage from a tubular battery at high speeds by X-ray fluorescence analysis.
    • 在一种用于检查管状电池泄漏的方法中,当管状电池(Ba)被供给彼此相对的轴向中心以彼此平行排列以通过泄漏检查机构(12)时,密封的端面(33) 管状电池(Ba)被X射线照射(34)。 从密封端面(33)出来的荧光X射线(40)通过检测窗(35)入射到检测器(39)上。 根据对入射荧光X射线(40)是否含有与电解质成分有关的荧光X射线(40)的分析结果,判断是否发生了管状电池(Ba)的泄漏。 在管状电池(Ba)的供给方向上的检测窗口(35)的长度(L 1,L 3,L 5)被设定为小于管状电池之间的间隔(C 1,C 2) (Ba)。 在与进给方向正交的方向上的检测窗口(35)的长度(L 2,L 4,L 6)被设定为大于横截面形状的外部尺寸(R 1,R 2) 的管状电池(Ba)的方向与其轴心正交。 因此,可以通过X射线荧光分析来高精度地确定管状电池的高速泄漏的发生。