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    • 2. 发明公开
    • CONTAINER WITH RING CARRIER FOR HANGING RING
    • BEHÄLTERMITRINGTRÄGERFÜRAUFHÄNGERING
    • EP2322444A2
    • 2011-05-18
    • EP09810149.6
    • 2009-08-14
    • Kim, Eun-Bae
    • Kim, Eun-Bae
    • B65D25/22B65D23/00
    • B65D23/003B65D51/242
    • Disclosed therein is a container having a ring-shaped carrier, which is disposed on the bottom, a side, or a lid of the container to allow a user to easily grasp the container or easily put a strap of a pocket or a backpack into the ring-shaped carrier, thereby allowing the user to easily carry or keep the container in safety. The container having the ring-shaped carrier includes a carrier joining part (21) disposed to the ring-shaped carrier (12) to the container (A), and the ring-shaped carrier (12) includes a joining portion (13) formed on a side thereof and fixed to the carrier joining part (21), and a ring hole (14) formed on the inner circumferential surface of the ring-shaped carrier (12), the ring hole (14) being a ring-shaped through hole.
    • 其中公开了一种具有环形载体的容器,该容器设置在容器的底部,侧面或盖子上,以允许使用者容易地抓住容器或容易地将口袋或背包的带子放入 环形载体,从而允许使用者容易地携带或保持容器的安全。 具有环状载体的容器包括设置在环状载体(12)与容器(A)之间的载体接合部分(21),环形载体(12)包括形成的接合部分(13) 在其一侧并固定到所述载体接合部分(21),以及形成在所述环形载体(12)的内周表面上的环形孔(14),所述环形孔(14)是环形通孔 孔。
    • 5. 发明申请
    • CONTAINER WITH RING CARRIER FOR HANGING RING
    • 集装箱用于挂环
    • WO2010024544A3
    • 2010-06-24
    • PCT/KR2009004551
    • 2009-08-14
    • KIM EUN-BAE
    • KIM EUN-BAE
    • B65D25/22B65D23/00
    • B65D23/003B65D51/242
    • The present invention relates to a container. More specifically, the present invention relates to a container with a ring carrier for hanging a ring, which is either provided at the lower part, upper part, or cap of the container. The ring carrier allows a user to easily hold the container and is conveniently inserted into the strips of a bag or a knapsack, so the container can be easily transported or stored. For this purpose, a container (A) with a ring carrier (12) according to the present invention comprises a carrier coupling unit (21) which is coupled with the ring carrier (12). A coupling unit (13) fixed to the carrier coupling unit (21) is formed at one side of the ring carrier (12) and a ring hole (14) is formed at the other side thereof.
    • 本发明涉及容器。 更具体地,本发明涉及一种具有用于悬挂环的环形载体的容器,其设置在容器的下部,上部或盖部。 环形载体允许使用者容易地容纳容器,并且方便地插入袋或背包的条中,因此容器可以容易地运输或储存。 为此,根据本发明的具有环形载体(12)的容器(A)包括与环形载体(12)耦合的载体耦合单元(21)。 固定在载体联接单元(21)上的联接单元(13)形成在环形载体(12)的一侧,并且在其另一侧形成环形孔(14)。
    • 7. 发明授权
    • Device for on-site measurement of concentration of uranium in high temperature molten salts
    • 用于现场测量高温熔盐中铀浓度的装置
    • US08493561B2
    • 2013-07-23
    • US12977530
    • 2010-12-23
    • Yong Joon ParkSang Eun BaeYoung-Hwan ChoKyuseok Song
    • Yong Joon ParkSang Eun BaeYoung-Hwan ChoKyuseok Song
    • G01J3/28
    • G01N21/31G01N21/0303G01N21/8507G01N2021/8528G01N2201/0846G21C17/06
    • A device for on-site measurement of concentration of uranium in high temperature molten salts is provided. More particularly, this device can be directly applied to a pyroprocess for reusing spent nuclear fuel and determine concentration of uranium 3+ and 4+ chemical species using ultraviolet-visible light absorption spectrometry. The device includes first and second optical waveguides submerged in molten salts including uranium through a port formed at an upper side of a pyrochemical process apparatus; a lengthwise driver installed at the port to be operated to adjust a distance between the optical waveguides; a light source for supplying light to the second optical waveguide as any one of the optical waveguides; and a spectrometer connected to the first optical waveguide as the other one of the optical waveguides to analyze the light emitted from the second optical waveguide and introduced through the first optical waveguide via the molten salts.
    • 提供了用于现场测量高温熔盐中铀浓度的装置。 更具体地,该装置可以直接应用于用于再利用废核燃料的焦点处理,并使用紫外 - 可见光吸收光谱法确定铀3+和4+化学物质的浓度。 该装置包括浸没在熔融盐中的第一和第二光波导,包括通过形成在焦化工艺装置上侧的端口的铀; 安装在要操作的端口处的纵向驱动器,以调节光波导之间的距离; 用于向所述第二光波导提供光作为任何一个所述光波导的光源; 以及连接到第一光波导的光谱仪,作为另一个光波导,用于分析从第二光波导发射并经由熔融盐引入第一光波导的光。