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    • 3. 发明授权
    • Process for electrolyzing aqueous solution of alkali metal chloride
    • 电解碱金属氯化物水溶液的方法
    • US4411749A
    • 1983-10-25
    • US294786
    • 1981-08-20
    • Kimihiko SatoYasuo SajimaMakoto NakaoTakeshi Morimoto
    • Kimihiko SatoYasuo SajimaMakoto NakaoTakeshi Morimoto
    • C25B1/46C25B9/00C25B9/08C25B9/18C25B9/20C25B13/00C25B1/34
    • C25B1/46C25B13/00C25B9/20
    • A process for electrolyzing an aqueous solution of an alkali metal chloride by feeding said aqueous solution of an alkali metal chloride into the central space of a hollow quadrilateral frame holding an anode therein, defining an anode compartment, and feeding water or a dilute aqueous solution of an alkali metal hydroxide into the central space of a hollow quadrilateral frame holding a cathode therein, defining a cathode compartment, said anode compartment and said cathode compartment being separated by a cation exchange membrane, in a filter-press type electrolytic cell wherein:(a) each hollow quadrilateral frame is provided with an inlet passage to the central space of said frame for the introduction of an electrolyte and an outlet passage from the central space of said frame for removal of an electrolyzed product;(b) an anode or a cathode is held in each said frame and electrically connected to a power source or an adjacent counter electrode, each said anode or cathode being respectively made of a metal plate having at the central part thereof notched rectangular portions being alternatively bent to project in parallel to said metal plate and displaced therefrom, said notched rectangular portions being defined by adjacent longitudinal parallel cuts through said metal plate; and(c) a gas and liquid permeable non-electrode porous layer made of inorganic particles is formed on the cation exchange membrane in a thickness thinner than that of the membrane on at least one surface of said membrane, wherein said at least one surface of the cation exchange membrane having the porous layer thereon is separated from the anode or cathode facing said porous layer.
    • 一种碱金属氯化物水溶液的电解方法,该方法是将碱金属氯化物水溶液进料到中空的四边形框架的中心空间中,该空心四边形框架中含有阳极,限定阳极室,并将水或稀释的水溶液 碱金属氢氧化物进入中空四边形框架的中央空间,其中阴极室,阳极室和所述阴极室由阳离子交换膜隔开,在压滤型电解池中,其中:(a )每个空心四边形框架设置有通向所述框架的中心空间的入口通道,用于从所述框架的中心空间引入电解质和出口通道,以便去除电解产品; (b)阳极或阴极保持在每个所述框架中并电连接到电源或相邻对置电极,每个所述阳极或阴极分别由金属板制成,其中心部分具有切口的矩形部分 弯曲成平行于所述金属板突出并从其移位,所述切口的矩形部分由穿过所述金属板的相邻纵向平行切口限定; 和(c)在所述阳离子交换膜上形成的气体和液体可透过的无机颗粒制成的非电极多孔层的厚度比所述膜的至少一个表面上薄膜的厚度薄,其中所述至少一个表面 其上具有多孔层的阳离子交换膜与面向所述多孔层的阳极或阴极分离。
    • 5. 发明授权
    • Electrolytic cell
    • 电解池
    • US4069129A
    • 1978-01-17
    • US677257
    • 1976-04-15
    • Kimihiko SatoYasuo SajimaToshihiko KunoHarumi Ohbe
    • Kimihiko SatoYasuo SajimaToshihiko KunoHarumi Ohbe
    • C25B9/00C25B1/46C25B9/08C25B9/18C25B9/20C25B1/16C25B1/26
    • C25B9/20C25B1/46
    • A filter-press type electrolytic cell comprising alternatively arranged frames and diaphragms fastened together to form alternating anolyte compartments and catholyte compartments, wherein said frames comprise two oppositely disposed hollow members one of which has an inlet and the other an outlet for the flow of electrolyte solutions said inlet or outlet being on the outside surface thereof and each of said members having holes on the inside surface thereof which surfaces face each other, whereby the appropriate electrolyte is passed from said member having said inlet into the anolyte or catholyte compartment formed in the frame and the electrolyzed product is discharged from said anolyte or catholyte compartment into said member having said outlet.
    • 一种压滤式电解槽,包括交替布置的框架和隔膜,其紧固在一起以形成交替的阳极电解液室和阴极电解液室,其中所述框架包括两个相对设置的中空构件,其中一个具有入口,另一个具有用于电解液流动的出口 所述入口或出口在其外表面上,并且每个所述构件在其内表面上具有表面彼此面对的孔,由此适当的电解质从具有所述入口的所述构件通过形成在框架中的阳极电解液或阴极电解液室 并且电解产物从所述阳极电解液或阴极电解液室排放到具有所述出口的所述构件中。
    • 9. 发明申请
    • SOLID-STATE IMAGING DEVICE AND IMAGING APPARATUS
    • 固态成像装置和成像装置
    • US20100265372A1
    • 2010-10-21
    • US12760237
    • 2010-04-14
    • Kimihiko Sato
    • Kimihiko Sato
    • H04N5/335
    • H04N5/335H01L27/14605H01L27/14632H01L27/14636H04N5/374
    • A solid-state imaging device includes: a semiconductor substrate; photoelectric conversion units formed in array on the semiconductor substrate and forming a light receiving unit; and wiring sections formed in positions among the photoelectric conversion units. The wiring sections include wiring bodies formed by superimposing wiring layers on the light receiving unit and including a bottom wiring body on the semiconductor substrate side, a top wiring body on an uppermost side, and an intermediate wiring body between the bottom wiring body and the top wiring body, and contacts connecting the wiring bodies in order of vertical overlap, and in at least one of the wiring sections, the wiring bodies other than the bottom wiring body are superimposed while being shifted from a position right above the bottom wiring body, and amounts of shift of the intermediate wiring body and the contacts connected to the intermediate wiring body are the same.
    • 固体摄像器件包括:半导体衬底; 光电转换单元阵列形成在半导体衬底上并形成光接收单元; 以及形成在光电转换单元之间的位置的布线部。 布线部分包括通过在光接收单元上叠加布线层而形成的布线体,并且在半导体基板一侧包括底部布线体,最上侧的顶部布线体以及底部布线体和顶部之间的中间布线体 布线体和沿着垂直重叠的顺序连接布线体的触点,并且在至少一个布线部中,除了底布线体以外的布线体重叠,同时从底布线体的正上方位置移位, 中间布线体和连接到中间布线体的触点的移动量相同。