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    • 2. 发明公开
    • 다층형 동공 전극 및 이의 제조방법
    • 多层电极及其制备方法
    • KR1020110029542A
    • 2011-03-23
    • KR1020090087256
    • 2009-09-15
    • (주)엘켐텍문상봉
    • 문상봉이태임정영김은수류택형최윤기
    • C25B11/06C25B11/00
    • C25B11/0489C25B1/08C25B11/0405H01M8/186
    • PURPOSE: A multi-layered hollow electrode and a manufacturing method thereof are provided to enable high current density operation and to improve durability and electrode reaction efficiency. CONSTITUTION: A multi-layered hollow electrode comprises a first (Ti,Nb)O2 hollow electrode and a second (Ti,Nb)O2 hollow electrode. The first (Ti,Nb)O2 hollow electrode comprises a first electrocatalyst. The second (Ti,Nb)O2 hollow electrode comprises a second electrocatalyst. The second (Ti,Nb)O2 hollow electrode is located at the top of the first (Ti,Nb)O2 hollow electrode. The size of the first (Ti,Nb)O2 hollow electrode is different from the size of the second (Ti,Nb)O2 hollow electrode.
    • 目的:提供一种多层中空电极及其制造方法,可实现高电流密度的操作,提高耐久性和电极反应效率。 构成:多层中空电极包括第一(Ti,Nb)O 2中空电极和第二(Ti,Nb)O 2中空电极。 第一(Ti,Nb)O 2中空电极包括第一电极催化剂。 第二(Ti,Nb)O 2中空电极包括第二电极催化剂。 第二(Ti,Nb)O2中空电极位于第一(Ti,Nb)O2中空电极的顶部。 第一(Ti,Nb)O2中空电极的尺寸与第二(Ti,Nb)O 2中空电极的尺寸不同。
    • 4. 发明公开
    • 살균제 발생장치
    • 产生消毒剂的单位
    • KR1020120016165A
    • 2012-02-22
    • KR1020120003999
    • 2012-01-12
    • (주)엘켐텍문상봉
    • 문상봉이태임정영김은수류택형최윤기
    • C25B1/04C25B3/06A61L2/03A61L101/08
    • Y02E60/366C25B9/063C25B1/265C25B11/0473
    • PURPOSE: A germicide generating apparatus is provided to effectively increase the electrolysis efficiency of an electrolytic cell and restrict a current leakage. CONSTITUTION: A germicide generating apparatus comprises an electrolyte inlet unit(410), a germicide discharge unit(430), an electrolytic cell(420), first and second joint parts, and an external power supply connection terminal(450). The electrolytic cell is located between the electrolyte inlet unit and the germicide discharge unit. The first joint part connects the electrolyte inlet unit and the electrolytic cell. The second joint part connects the germicide discharge unit and the electrolytic cell. The electrolytic cell comprises an anode terminal electrode, a cathode terminal electrode, and a plurality of bipolar electrodes that are located between the anode and cathode terminal electrodes. The electrodes include a central portion made of conductive active catalyst and an outer portion made of a non-conductive material.
    • 目的:提供一种杀菌剂生成装置,有效提高电解槽的电解效率,限制电流泄漏。 构成:杀菌剂发生装置包括电解质入口单元(410),杀菌剂排放单元(430),电解槽(420),第一和第二接头部分以及外部电源连接端子(450)。 电解池位于电解质入口单元和杀菌剂排放单元之间。 第一接头部分连接电解质入口单元和电解槽。 第二接头部分连接杀菌剂排出单元和电解槽。 电解槽包括阳极端子电极,阴极端子电极和位于阳极和阴极端子电极之间的多个双极电极。 电极包括由导电活性催化剂制成的中心部分和由非导电材料制成的外部部分。
    • 6. 发明公开
    • 3차원 다공성 복극 전극 및 이를 구비한 전기살균 필터와 이를 이용한 수처리 방법
    • 多孔三维双极电极,具有多孔三维双极电极的电解液,以及使用具有多孔三维双极电极的电解液的水处理方法
    • KR1020120002189A
    • 2012-01-05
    • KR1020100062953
    • 2010-06-30
    • (주)엘켐텍문상봉
    • 문상봉이태임정영최윤기손미숙강인철김은수신광섭
    • C02F1/467C02F11/02
    • C02F1/467C02F11/02Y02W10/20
    • PURPOSE: A three dimensional bipolar electrode, an electric sterilizing filter including the same, and a water treating method using the same are provided to secure the durability of the electrode and to minimize energy required for eliminating microorganisms. CONSTITUTION: A three dimensional bipolar electrode is composed of a three dimension porous main material and an electro-catalytic layer. The main material is based on a metal. The electro-catalytic layer is coated to the main material. A method for manufacturing the main material is a metal wire compressing process or a metal powder and binder mixture shaping and sintering process. A electric sterilizing filter(100) includes a flow pipe(110), electric supplying electrodes(120, 130), a porous bipolar electrode(140), spacers(150), and a direct current power supplier(160). The electric supplying electrodes are installed in the flow pipe. The porous bipolar electrode is arranged between the electrodes. The spacers adjust gaps between the electrodes. The direct current power supplier supplies a direct current to the electric supplying electrodes.
    • 目的:提供一种三维双极性电极,包括该电极的电动灭菌过滤器和使用其的水处理方法,以确保电极的耐久性并最小化消除微生物所需的能量。 构成:三维双极电极由三维多孔主材料和电催化层组成。 主要材料基于金属。 电催化层被涂覆到主要材料上。 制造主要材料的方法是金属丝压制方法或金属粉末和粘合剂混合物的成形和烧结工艺。 电消毒过滤器(100)包括流管(110),供电电极(120,130),多孔双极电极(140),间隔件(150)和直流电源(160)。 供电电极安装在流管中。 多孔双极电极配置在电极之间。 间隔物调节电极之间的间隙。 直流电源向供电电极提供直流电流。
    • 9. 发明公开
    • 막-전극-급전체 접합체 및 이의 제조방법
    • 膜电极电流分布器组件及其制备方法
    • KR1020110047676A
    • 2011-05-09
    • KR1020090104396
    • 2009-10-30
    • (주)엘켐텍문상봉
    • 문상봉이태임정영김은수류택형최윤기
    • C25B9/10C25B1/02C25B1/04
    • Y02E60/366C25B9/10C25B1/10C25B13/02
    • PURPOSE: A membrane-electrode-current distributing assembly and a manufacturing method thereof are provided to enhance output performance and solve a problem due to local current concentration since contact resistance between components in an electrolysis cell is minimized. CONSTITUTION: A membrane-electrode-current distributing assembly comprises porous reinforcing membrane, an ion exchanging membrane, a first current distributing plate, a second current distributing plate, a first electrode and a second electrode. The ion exchanging membrane is installed on the porous reinforcing membrane. The first and second current distributing plates are installed on both sides of the porous reinforcing membrane. The first and second electrodes are installed on both sides of the ion exchanging membrane. The ion exchanging membrane is located in the inside and on the surface of the porous reinforcing membrane and integrates the porous reinforcing membrane, the ion exchanging membrane, the first and second current distributing plates and the fist and second electrodes.
    • 目的:提供一种膜 - 电极 - 电流分配组件及其制造方法,以提高输出性能并解决由于局部电流集中的问题,这是因为电解槽中组分之间的接触电阻最小化。 构成:膜 - 电极 - 电流分布组件包括多孔增强膜,离子交换膜,第一电流分布板,第二电流分布板,第一电极和第二电极。 离子交换膜安装在多孔增强膜上。 第一和第二电流分布板安装在多孔增强膜的两侧。 第一和第二电极安装在离子交换膜的两侧。 离子交换膜位于多孔增强膜的内部和表面,并且整合有多孔增强膜,离子交换膜,第一和第二电流分布板以及第一和第二电极。