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    • 1. 发明授权
    • Method of purifying the raw brine used in alkali salt electrolysis
    • 碱盐电解中使用的原料盐水的净化方法
    • US4060465A
    • 1977-11-29
    • US639409
    • 1975-12-10
    • Noriyuki YokotaShingo TokudaYoshiro ItoKenji Itaya
    • Noriyuki YokotaShingo TokudaYoshiro ItoKenji Itaya
    • C01D3/14C25B15/08C25B1/00C25B1/26
    • C01D3/145C25B15/08
    • A method of purifying the raw brine used in the electrolysis of the aqueous NaCl or KCl solution by removing the Mg and Ca ions from said brine, which comprises contacting said brine with a member selected from the group consisting ofA. the chelate-forming water-insoluble resins capable of forming an intramolecular complex with the Mg and Ca ions said resins being selected from the class consisting of the styrene-butadiene copolymer resins containing the group .ltoreq.N--CH.sub.2 COOH, the epichlorohydrin polymer resins containing the group >N--CH.sub.2 COOH, the N-phenyl glycine-glycidyl methacrylate copolymer resins containing the group >N--CH.sub.2 COOH and the styrene-divinylbenzene copolymer resins containing the group >N--CH.sub.2 COOH; andB. the water-insoluble adsorbent solids adsorptively supporting a chelate-forming compound selected from the group consisting of the aminoacetic acids containing at least one >N--CH.sub.2 COOH in their molecular structure and the oligomers and the alkali metal salts thereof.
    • 一种通过从所述盐水中除去Mg和Ca离子来净化用于电解NaCl水溶液或KCl溶液的原料盐水的方法,该方法包括使所述盐水与选自下组的组分接触:成型水 可用于形成具有Mg和Ca离子的分子内复合物的不溶性树脂,所述树脂选自包含基团N-CH 2 COOH的苯乙烯 - 丁二烯共聚物树脂,含有基团> N- CH2COOH,含有基团> N-CH2COOH的N-苯基甘氨酸 - 甲基丙烯酸缩水甘油酯共聚物树脂和含有基团> N-CH 2 COOH的苯乙烯 - 二乙烯基苯共聚物树脂; B.水不溶性吸附剂固体特别支持从其分子结构中含有至少一个> N-CH 2 COOH的氨基酸组成的组中选择的形成烯烃的化合物及其低聚物及其碱金属盐。
    • 2. 发明授权
    • Method of purifying the raw brine used in alkali salt electrolysis
    • 碱盐电解中使用的原料盐水的净化方法
    • US4119508A
    • 1978-10-10
    • US805160
    • 1977-06-09
    • Noriyuki YokotaShingo TokudaYoshiro ItoKenji Itaya
    • Noriyuki YokotaShingo TokudaYoshiro ItoKenji Itaya
    • C01D3/14C25B15/08C25B1/00C25B1/26
    • C25B15/08C01D3/145
    • A method of purifying the raw brine used in the elecrolysis of the aqueous NaCl or KCl solution by removing the Mg and Ca ions from said brine, which comprises contacting said brine with a member selected from the group consisting of(a) the chelate-forming water-insoluble resins capable of forming an intramolecular complex with the Mg and Ca ions, said resins being selected from the class consisting of the styrene-butadiene copolymer resins containing the group >N--CH.sub.2 COOH, the epichlorohydrin polymer resins containing the group >N--CH.sub.2 COOH, the N-phenyl glycine-glycidyl methacrylate copolymer resins containing the group >N--CH.sub.2 COCH and the styrene-divinylbenzene copolymer resins containing the group >N--CH.sub.2 COOH; and(b) the water-insoluble adsorbent solids adsorptively supporting a chelate-forming compound selected from the group consisting of the aminoacetic acids containing at least one >N--CH.sub.2 COOH in their molecular structure and the oligomers and the alkali metal salts thereof.
    • 通过从所述盐水中除去Mg和Ca离子来净化用于电解NaCl水溶液或KCl溶液的原盐水的方法,该方法包括使所述盐水与选自以下的成员接触:(A)成型 能够与Mg和Ca离子形成分子内复合物的水不溶性树脂,所述树脂选自包含基团> N-CH 2 COOH的苯乙烯 - 丁二烯共聚物树脂,含有基团> N- CH 2 COOH,含有基团> N-CH 2 COCH的N-苯基甘氨酸 - 甲基丙烯酸缩水甘油酯共聚物树脂和含有基团> N-CH 2 COOH的苯乙烯 - 二乙烯基苯共聚物树脂; 和(B)水不溶性吸附剂固体,其特征在于支持从其分子结构中含有至少一种> N-CH 2 COOH的氨基酸组成的组中选择的形成烯烃的化合物及其低聚物及其碱金属盐。
    • 3. 发明申请
    • ARC TUBE AND METHOD OF PHOSPHOR COATING
    • 弧管和磷光涂层的方法
    • US20090134771A1
    • 2009-05-28
    • US12064291
    • 2006-11-01
    • Kenji ItayaToyokazu AmanoJunichi Takahashi
    • Kenji ItayaToyokazu AmanoJunichi Takahashi
    • H01J1/62B05D5/06
    • H01J61/327H01J9/223
    • A method of uniformly applying a phosphor onto the internal surface of a glass tube of spiral configuration having opening at its both ends. After an injection process is performed while glass tube (11) is held with openings (24,25) facing upward, the glass tube is turned upside down and held such that the openings are positioned in the inferior region. While rotating the glass tube around pivot axis (A), the phosphor suspension is caused to flow out. The glass tube is turned upside down once more and held to cause the openings to position in the superior region for a given period of time with the result that the phosphor suspension is caused to flow to uniformize the thickness thereof. Further once more the glass tube is turned upside down to cause the openings to position in the inferior region. In that state, a preliminary drying process is performed.
    • 将荧光体均匀地施加到在其两端具有开口的螺旋构造的玻璃管的内表面上的方法。 在玻璃管(11)保持开口(24,25)朝上的同时进行注射处理之后,将玻璃管上下颠倒并保持使得开口位于下部区域。 在围绕枢转轴线(A)旋转玻璃管时,使荧光体悬浮液流出。 将玻璃管再次翻转并保持使开口在上部位置定位一段时间,结果使荧光体悬浮液流动以使其厚度均匀。 此外,再次将玻璃管倒置以使开口位于下部区域中。 在该状态下,进行预干燥处理。
    • 8. 发明授权
    • Fluorescent lamp with improved productivity, and manufacturing method for the fluorescent lamp
    • 提高生产率的荧光灯和荧光灯的制造方法
    • US06583543B1
    • 2003-06-24
    • US09802658
    • 2001-03-09
    • Kenji ItayaTakeshi Matsumura
    • Kenji ItayaTakeshi Matsumura
    • H01J548
    • H01J9/247F21V7/00F21Y2103/37H01J5/48H01J61/025H01J61/325H01J61/327
    • An arc tube is a connected bulb composed of three U-shaped bulbs that are set annularly on a holder and connected by a bridge connector to include a serpentine discharge path. Electrodes are provided at both ends of the connected bulb. A reflector is set in a space enclosed by the three U-shaped bulbs, with a predetermined positional relation with the holder. The reflector has a reflecting part which reflects light emitted from the arc tube, and a fixing part positioned at the end of the reflecting part. The holder has an insertion hole which allows the reflecting part to pass through but not the fixing part. The reflector is mounted to the holder by inserting the reflecting part into the insertion hole from the side of the holder opposite to the arc tube, and passing the reflecting part through the insertion hole to the other side.
    • 电弧管是由三个U形灯泡组成的连接灯泡,该U形灯泡环形地设置在保持器上并且通过桥接器连接以包括蛇形排出路径。 电极设在连接灯泡的两端。 反射器设置在由三个U形灯泡围成的空间中,与保持器具有预定的位置关系。 反射器具有反射从电弧管发出的光的反射部和位于反射部的端部的固定部。 保持器具有允许反射部分通过而不是固定部分的插入孔。 通过将反射部从保持件与电弧管相对的一侧插入到插入孔中,并将反射部通过插入孔向另一侧安装到保持器。