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    • 15. 发明公开
    • 실란계 화합물을 포함하는 탄화수소계 고분자막, 이의 제조방법, 이를 포함하는 막-전극 어셈블리 및 연료전지
    • 包含硅烷化合物的油墨膜,其制造方法,使用其的MEA和燃料电池
    • KR1020100055185A
    • 2010-05-26
    • KR1020080114142
    • 2008-11-17
    • 서강대학교산학협력단
    • 이희우길이진강정수김창겸
    • H01M4/86H01M4/88H01M4/92C08J5/22
    • PURPOSE: A hydrocarbon proton-conductive polymer membrane is provided to obtain excellent electrochemical, mechanical, and thermal properties and to have superior proton conductivity at a high temperature and a high pressure. CONSTITUTION: A hydrocarbon proton-conductive polymer membrane includes a hydrocarbon polymer having a cation exchanger and a silane compound having an amino group which is substituted to phosphoric acid. A method for manufacturing the hydrocarbon proton-conductive polymer membrane comprises the following steps: dissolving the hydrocarbon polymer having a cation exchanger and a silane compound in an organic solvent; forming a polymer membrane by drying a polymer solution after mixing the polymer solution in which the silane compound is dispersed; combining the silane compound and the cation exchanger by heating the polymer membrane; and giving ion conductivity by heating the polymer membrane in phosphoric acid solution.
    • 目的:提供碳氢化合物质子传导聚合物膜,以获得优异的电化学,机械和热性能,并在高温和高压下具有优异的质子传导性。 构成:烃质子传导性聚合物膜包括具有阳离子交换剂的烃聚合物和具有被磷酸取代的氨基的硅烷化合物。 制造烃质子传导性聚合物膜的方法包括以下步骤:将具有阳离子交换剂的烃聚合物和硅烷化合物溶解在有机溶剂中; 在混合其中分散有硅烷化合物的聚合物溶液之后,通过干燥聚合物溶液形成聚合物膜; 通过加热聚合物膜合并硅烷化合物和阳离子交换剂; 并通过在磷酸溶液中加热聚合物膜而产生离子传导性。
    • 16. 发明授权
    • 고농도 및 저농도 차아염소산나트륨수용액 동시 생성장치
    • 同时生产高浓度次氯酸钠水溶液和低浓度次氯酸钠水溶液的设备
    • KR101446571B1
    • 2014-10-07
    • KR1020130036801
    • 2013-04-04
    • (주) 아큐스서강대학교산학협력단
    • 이희우이태수정연철이희헌민승욱
    • C25B1/26C02F1/467
    • C25B1/265C02F1/46104C02F2201/005C02F2209/005C02F2209/02C02F2209/05C02F2209/29C25B15/02
    • The present invention relates to an apparatus for simultaneously manufacturing high-concentration aqueous solution of sodium hypochlorite and low-concentration aqueous solution of sodium hypochlorite, the apparatus comprising: an electrolytic cell having an anode chamber and a cathode chamber formed by a membrane inside, wherein the anode chamber receives salt water from a salt water tank and the cathode chamber receives water from a water tank for electrolysis; an anode water storage tank for storing anode water generated in the electrolytic cell; a sodium hydroxide aqueous solution storage tank for storing the aqueous solution of sodium hydroxide generated in the electrolytic cell; a high-concentration sodium hypochlorite generation tank connected to the anode water storage tank to receive chlorine gas from the anode water storage tank, connected to the sodium hydroxide aqueous solution storage tank to receive the aqueous solution of sodium hydroxide and thus generating the high-concentration aqueous solution of sodium hypochlorite by making the chlorine gas react with the aqueous solution of sodium hydroxide; a high-concentration sodium hypochlorite aqueous solution storage tank for storing the high-concentration aqueous solution of sodium hypochlorite generated in the high-concentration sodium hypochlorite generation tank and supplying the high-concentration aqueous solution of sodium hypochlorite to raw water; an auxiliary sodium hydroxide aqueous solution storage tank for storing the aqueous solution of sodium hydroxide with higher concentration than that of the aqueous solution of sodium hydroxide; and an auxiliary low-concentration sodium hypochlorite generation tank for receiving anode water from the anode water storage tank, receiving the high-concentration aqueous solution of sodium hydroxide from the auxiliary sodium hydroxide aqueous solution storage tank and thus generating low-concentration aqueous solution of sodium hypochlorite and supplying the low-concentration aqueous solution of sodium hypochlorite to the raw water.
    • 本发明涉及一种同时制造次氯酸钠高浓度水溶液和低浓度次氯酸钠水溶液的装置,该装置包括:具有由膜内部形成的阳极室和阴极室的电解槽,其中, 阳极室从盐水箱接收盐水,阴极室从水箱接收电解电解水; 用于储存在电解池中产生的阳极水的阳极储水箱; 用于储存在电解池中产生的氢氧化钠水溶液的氢氧化钠水溶液储存罐; 连接到阳极储水箱的高浓度次氯酸钠生成罐接收来自阳极储水箱的氯气,连接到氢氧化钠水溶液储罐以接收氢氧化钠水溶液,从而产生高浓度 通过使氯气与氢氧化钠水溶液反应,次氯酸钠水溶液; 高浓度次氯酸钠水溶液储罐,用于储存在高浓度次氯酸钠生成槽中产生的高浓度次氯酸钠水溶液,并将高浓度的次氯酸钠水溶液供应至原水; 用于储存比氢氧化钠水溶液浓度高的氢氧化钠水溶液的辅助氢氧化钠水溶液储存罐; 以及辅助低浓度次氯酸钠生成槽,用于从阳极储水箱接收阳极水,从辅助氢氧化钠水溶液储罐接收高浓度的氢氧化钠水溶液,从而产生低浓度的钠水溶液 次氯酸钠,并将低浓度的次氯酸钠水溶液供给原水。