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    • 2. 发明专利
    • Rustproof multilayer film
    • RUSTPROOF多层膜
    • JP2013059864A
    • 2013-04-04
    • JP2011197955
    • 2011-09-12
    • Nakamoto Pakkusu Kk中本パックス株式会社Shinsei Pulp & Paper Co Ltd新生紙パルプ商事株式会社Chubu Kiresuto Kk中部キレスト株式会社
    • TAJIMA KOKIKATO KANJIKATO SHIGERUHAMAGUCHI HISAMITSU
    • B32B27/32C23F11/00
    • PROBLEM TO BE SOLVED: To provide a rustproof multilayer film which is obtained by using a volatile rustproof agent-kneaded film and used for rustproofing a metal product and the rustproof effect of which can be kept for a long period of time.SOLUTION: The rustproof multilayer film has a PVDC (polyvinylidene chloride)-coated O-NY (biaxially-oriented nylon) film, which is obtained by coating an O-NY film with PVDC, and the volatile rustproof agent-kneaded rustproof film. The rustproof film is layered on the PVDC-coated surface of the PVDC-coated O-NY film by a dry lamination method. The rustproof film is obtained by kneading a rustproof agent in a LDPE resin or a LLDPE resin and subjecting the obtained kneaded material to an inflation molding method. The adhesive to be used in the dry lamination method is a two-component curable adhesive comprising a polyether-based main agent and an isocyanate-based curing agent.
    • 要解决的问题:提供一种防锈多层膜,其通过使用挥发性防锈剂捏合膜获得并用于金属制品的防锈,并且其防锈效果可以长期保持。

      解决方案:防锈多层膜具有PVDC(聚偏二氯乙烯)涂层O-NY(双轴取向尼龙)膜,其通过用PVDC涂覆O-NY膜获得,并且挥发性防锈剂揉合防锈 电影。 通过干层压法将防锈膜层压在PVDC涂覆的O-NY膜的PVDC涂覆的表面上。 通过将LDPE树脂或LLDPE树脂中的防锈剂捏合并对所得捏合物进行吹塑成型,得到防锈膜。 用于干式层压法的粘合剂是包含聚醚基主剂和异氰酸酯基固化剂的双组分可固化粘合剂。 版权所有(C)2013,JPO&INPIT

    • 7. 发明专利
    • Method for removing arsenic from solution
    • 从解决方案中去除砷的方法
    • JP2005000747A
    • 2005-01-06
    • JP2003164746
    • 2003-06-10
    • Chubu Kiresuto KkKiresuto KkMaezawa Ind Incキレスト株式会社中部キレスト株式会社前澤工業株式会社
    • CHO AKIRAMIHARA MASATAKENANBU NOBUYOSHI
    • C02F1/28C02F1/42C02F1/62
    • PROBLEM TO BE SOLVED: To provide an arsenic removal method which can efficiently remove dissolved arsenic from a solution, facilitates treatment of an arsenic-containing product after the removal, and has an advantage on running cost.
      SOLUTION: The arsenic removal method comprises the adsorption process of bringing an arsenic-containing solution into contact with a chelating material to adsorb the arsenic in the solution on the chelating material, the elution process of bringing the chelating material on which the arsenic is adsorbed in the adsorption process to elute the arsenic into the eluate, the reaction process of adding a sulfur compound to the eluate in which the arsenic is dissolved in the elution process and reacting the arsenic with sulfur to convert the arsenic into a solid sulfide, and the separation process of separating the solid sulfide formed in the reaction process from the eluate.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供可以有效地从溶液中除去溶解的砷的砷去除方法,便于除去后的含砷产品的处理,并且具有运行成本的优点。 解决方案:除砷方法包括使含砷溶液与螯合材料接触以将溶液中的砷吸附在螯合材料上的吸附过程,使其上含有砷的螯合材料的洗脱过程 被吸附在吸附过程中,将砷洗脱到洗脱液中,反应过程是在洗脱过程中将砷化合物溶解在洗脱液中,并使砷与硫反应,将砷转化为固体硫化物, 以及将在反应过程中形成的固体硫化物与洗脱液分离的分离过程。 版权所有(C)2005,JPO&NCIPI
    • 10. 发明专利
    • METHOD FOR TREATING METAL OR METALLOID-CONTAINING WATER
    • JP2001179253A
    • 2001-07-03
    • JP36832399
    • 1999-12-24
    • KIRESUTO KKCHUBU KIRESUTO KK
    • NANBU NOBUYOSHIOZAKI MASATOSHIITO OSAMUDOI TAKAO
    • C02F1/28C02F1/42
    • PROBLEM TO BE SOLVED: To provide a method for simply and efficiently capturing a metal or metalloid contained in industrial wastewater to clean treated water and concentrating and recovering the metal or metalloid as a valuable component. SOLUTION: A method for treating an aqueous liquid containing a metal or metalloid includes a capturing process (1) for bringing a chelate forming fibers, wherein a functional group having chelate forming capacity of a metal or metalloid is introduced into fiber molecules, into contact with water to be treated containing a metal or metalloid to capture the metal or metalloid on the chelate forming fibers by chelating, a separation process (2) for separating the chelate forming fibers used in the chelating and capturing of the metal or metalloid in the capturing process (1), an elution process (3) for treating the chelate forming fibers obtained in the separation process (2) with an acid or alkali aqueous solution to elute the chelated and captured metal or metalloid from the chelate forming fibers and a process (4) for returning the chelate forming fibers from which the metal or metalloid is eluted to the capturing process to circulate and use the same.