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    • 4. 发明专利
    • High-concentration mineral liquid manufacturing method and manufacturing apparatus
    • 高浓度矿物液体制造方法及制造装置
    • JP2006142265A
    • 2006-06-08
    • JP2004339423
    • 2004-11-24
    • Asahi Glass Engineering Co LtdKochi PrefectureToray Ind Inc旭硝子エンジニアリング株式会社東レ株式会社高知県
    • HAMADA KAZUHIDESUMIDA TAKASHIKAWAKITA HIROHISAYAMAZAKI YOSHIBUMIYOSHIMURA ATSUSHIAOKI RYOSUKESUGAYA YOSHIOTODA HIROSHIYAMAMURA HIROYUKI
    • C02F1/469A23L1/304A23L2/38A23L2/52B01D61/02B01D61/44B01D61/58C02F1/44C05D3/00C05D5/00C05D11/00
    • Y02A20/131Y02A20/134
    • PROBLEM TO BE SOLVED: To provide a mineral liquid manufacturing method for obtaining, from sea water without heating it, mineral liquid having a sufficiently high concentration of mineral component such as magnesium and calcium and having a satisfactorily reduced sodium concentration. SOLUTION: The high-concentration mineral liquid manufacturing method comprises: a step (I) of separating sea water into concentrate (A1) and membrane permeate (A2) by treating sea water with a reverse osmosis membrane; a step (II) of obtaining concentrate (B1) in which cation concentration and monovalent anion concentration are high and bivalent or more anion concentration is low by treating the concentrate (A1) with an electrodialyzer constituted by disposing a pair of monovalent anion selective permeable anion exchange membrane and cation exchange membrane between anode and cathode; and a step (III) of obtaining concentrate (C1) as high-concentration mineral liquid in which bivalent or more cation concentration is high and monovalent cation concentration is low by treating the concentrate (B1) with an electrodialyzer constituted by disposing a pair of monovalent cation selective permeable cation exchange membrane and anion exchange membrane between anode and cathode. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种矿物液体制造方法,用于从海水中获得不加热矿物液体,其具有足够高浓度的矿物组分如镁和钙并且具有令人满意的降低的钠浓度的矿物液体。 解决方案:高浓度矿物液体制造方法包括:通过用反渗透膜处理海水将海水分离成浓缩物(A1)和膜渗透物(A2)的步骤(I); 通过用电渗析器处理浓缩物(A1),通过将一对阴离子选择性阴离子阴离子(1)配置成阴离子而形成浓缩物(B1)的步骤(II),其中阳离子浓度和一价阴离子浓度高,阴离子浓度低, 阳极和阴极之间的交换膜和阳离子交换膜; 以及通过用电渗析器处理浓缩物(B1)来获得浓缩物(C1)作为其中二价或更多的阳离子浓度高和一价阳离子浓度低的高浓度矿物液体的步骤(III),所述电渗析器通过设置一对一价 阳离子选择性渗透阳离子交换膜和阳极和阴极之间的阴离子交换膜。 版权所有(C)2006,JPO&NCIPI
    • 9. 发明专利
    • Method for producing ion exchange membrane
    • 生产离子交换膜的方法
    • JP2003012835A
    • 2003-01-15
    • JP2001201021
    • 2001-07-02
    • Asahi Glass Co Ltd旭硝子株式会社
    • SUGAYA YOSHIOAOKI RYOSUKEMATSUMURA YUKIOTODA HIROSHI
    • C08J5/22B01J39/20B01J47/12
    • PROBLEM TO BE SOLVED: To provide a method for producing a cation-exchange membrane excellent in ion selective permeability, mechanical strength, chemical resistance and heat resistance.
      SOLUTION: The method comprises a mixing of a monomer having an unsaturated bond of 100 pts.wt. which contains a monomer having a specific substituent such as haloalkylstyrene of 6 mass% or more and a thermoplastic polymer of 2-400 pts.wt. which has a part capable of reacting and binding with the specific substituent such as a haloalkyl group and an unsaturated bond rate in a principal chain of 3% or less, a polymerization of the monomer, a binding of a monomer-based polymer and the thermoplastic polymer and a sulfonation.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供一种离子选择渗透性,机械强度,耐化学性和耐热性优异的阳离子交换膜的制造方法。 解决方案:该方法包括混合具有100重量份不饱和键的单体 其含有具有特定取代基的单体,例如6质量%以上的卤代烷基苯乙烯和2-400重量份的热塑性聚合物。 其具有能够在3%以下的主链中与特定取代基如卤代烷基和不饱和键速率反应和结合的部分,单体的聚合,单体基聚合物与热塑性聚合物的结合 聚合物和磺化。