회전형 광전기 화학 반응기
    52.
    发明授权
    회전형 광전기 화학 반응기 有权
    旋转式光电化学反应器

    公开(公告)号:KR101759982B1

    公开(公告)日:2017-07-31

    申请号:KR1020150147179

    申请日:2015-10-22

    Abstract: 본발명은회전형광전기화학반응기에관한것으로서, 더욱상세하게는전기에너지를이용하여광화학반응이효과적으로이루어지게하고, 광화학반응에영향을미치는요소를최적화하여오염물질분해능을향상시킨회전형광전기화학반응기에관한것이다.

    Abstract translation: 本发明旋转荧光电动涉及一种化学反应器,并且更具体地,使用所述电能和光化学反应有效地旋转而改进的污染物分辨率化学反应器的荧光电力来执行,通过优化影响光化学反应的因素 Lt。

    티타늄 지지체에 자체성장한 나노튜브 TiO2 광촉매를 이용한 평판형 수처리 장치
    53.
    发明公开
    티타늄 지지체에 자체성장한 나노튜브 TiO2 광촉매를 이용한 평판형 수처리 장치 无效
    平板式光电设备,采用自制的纳米TIO2在钛箔和基片上

    公开(公告)号:KR1020140119334A

    公开(公告)日:2014-10-10

    申请号:KR1020130034058

    申请日:2013-03-29

    Abstract: The present invention relates to a flat type water treatment apparatus using a self-grown nanotubular TiO_2 photocatalyst on a titanium substrate. The present invention has the purpose of providing a flat type water treatment apparatus using a self-grown nanotubular TiO_2 photocatalyst on a titanium substrate, which enables an excellent photochemical reaction within a reactor in media with a titania (TiO_2) photocatalyst having a self-grown nanotubular structure on the surface of a planar or mesh type titanium (Ti) substrate through anodization and heat treatment. In order to achieve the purpose, the flat type water treatment apparatus using a self-grown nanotubular TiO_2 photocatalyst on a titanium substrate according to the present invention comprises a photo-reactor having a plate form having a space therein, and having an outlet tube and an inlet tube connected to the body, and a transparent window for transmitting UV on one side thereof; a photocatalyst prepared within the photo-reactor in the state that an integrated nanotubular titiania has been formed on the surface of a metal substrate by anodization; a water tank accommodating hexavalent chrome necessary to the reaction of the photocatalyst and an aqueous solution capable of controlling the hydrogen ion concentration, and connected to the photo-reactor in media with the outlet tube and the inlet tube; and a light source irradiating UV on the photo-reactor so as to react the photocatalyst therein and UV to reduce the hexavalent chrome.

    Abstract translation: 本发明涉及在钛基板上使用自生长纳米管TiO_2光催化剂的扁平型水处理装置。 本发明的目的是提供一种在钛基底上使用自生长的纳米管TiO_2光催化剂的扁平型水处理装置,其能够在具有自生长的二氧化钛(TiO 2)光催化剂的介质中的反应器内实现优异的光化学反应 通过阳极氧化和热处理在平面或网状钛(Ti)衬底的表面上形成纳米管结构。 为了达到上述目的,本发明的在钛基板上使用自生长纳米管TiO_2光催化剂的扁平型水处理装置,具有板状空间的光反应器,具有出口管和 连接到主体的入口管,以及用于在其一侧上透射UV的透明窗口; 在通过阳极氧化在金属基板的表面上形成集成的纳米管状钛的状态下在光反应器内制备的光催化剂; 容纳六价铬的水箱,用于光催化剂的反应和能够控制氢离子浓度的水溶液,并在出口管和入口管的介质中连接到光反应器; 以及在光反应器上照射UV以使其中的光催化剂反应的光源和UV以减少六价铬。

    티타늄 지지체에 고정화된 나노튜브형 광촉매가 자체 회전하는 수처리장치
    54.
    发明公开
    티타늄 지지체에 고정화된 나노튜브형 광촉매가 자체 회전하는 수처리장치 有权
    通过固定纳米管TIO2在TI衬底上自旋光化学水处理设备

    公开(公告)号:KR1020140048371A

    公开(公告)日:2014-04-24

    申请号:KR1020120112721

    申请日:2012-10-11

    CPC classification number: C02F1/32 C02F1/50 C02F2201/002 C02F2305/10

    Abstract: The present invention relates to a water treatment device in which a nanotube type catalyst fixed to a titanium support rotates alone. The purpose of the present invention is to provide a water treatment device in which a nanotube type catalyst fixed to a titanium support rotates alone so that excellent photochemical reaction is performed in a reactor by using, as a medium, a nanotube structured titania (TiO_2) optical catalyst, which is autonomously grown on the surface of a mesh type titanium (Ti) support through anodizing and heat treatment, so as to overcome the weaknesses of a particle type optical catalyst reacting system. The water treatment device in which a nanotube type catalyst fixed to a titanium support rotates alone according to the present invention comprises: an optical reactor of which the top and bottom sides of one side surface connect with an outlet pipe path and an inlet pipe path, respectively, and which includes a housing having a cylindrical shape of which the top part is opened; an optical catalyst installed inside the housing to be able to rotate with a rotation means as a medium and in which a nanotube titania is formed, which is obtained as the surface of a mesh type metal titanium support is anodized and integrated; a water tank in which hexavalent chromium and aqueous solution having an adjusted concentration of hydrogen ions, which are needed to react the optical catalyst, are stored and which connects with the housing through the outlet pipe path and the inlet pipe path; and a light source part irradiating ultraviolet rays to the side of the optical reactor so that the ultraviolet rays react with the optical catalyst and the hexavalent chromium is reduced.

    Abstract translation: 本发明涉及一种水处理装置,其中固定在钛支架上的纳米管型催化剂单独旋转。 本发明的目的是提供一种水处理装置,其中固定在钛载体上的纳米管型催化剂单独旋转,从而通过使用纳米管结构的二氧化钛(TiO_2)作为介质,在反应器中进行优异的光化学反应, 光学催化剂,其通过阳极氧化和热处理自发生长在网状钛(Ti)载体的表面上,以克服粒子型光催化剂反应体系的弱点。 根据本发明,固定在钛载体上的纳米管型催化剂单独旋转的水处理装置包括:一个侧面的顶面和底面与出口管路连接的光反应器和入口管路, 并且其包括具有顶部部分打开的圆柱形状的壳体; 安装在壳体内的光学催化剂能够以作为介质的旋转装置旋转,并且其中形成有作为网状金属钛载体的表面的纳米管二氧化钛被阳极氧化并整合; 储存需要与光催化剂反应所需的具有调节浓度的氢离子的六价铬和水溶液的水箱,并通过出口管路和入口管道与壳体连接; 以及向光反应器侧照射紫外线的光源部,使得紫外线与光学催化剂反应,并且六价铬被还原。

    컴팩트 개질 반응기용 금속구조체촉매의 제조방법과 그 금속구조체촉매, 금속구조체촉매 모듈
    57.
    发明授权
    컴팩트 개질 반응기용 금속구조체촉매의 제조방법과 그 금속구조체촉매, 금속구조체촉매 모듈 有权
    金属结构催化剂,金属结构催化剂模块及其制备方法,可用于紧凑型重整器

    公开(公告)号:KR101019234B1

    公开(公告)日:2011-03-04

    申请号:KR1020090032204

    申请日:2009-04-14

    Abstract: 본 발명은 컴팩트 개질 반응기용 금속구조체촉매의 제조방법과 그 금속구조체촉매, 금속구조체촉매 모듈에 관한 것으로, 그 목적은 금속지지체 표면에 산화물층 형성시 전기화학적 표면처리단계와 열처리단계를 거쳐 균일한 금속 산화물층을 형성하는 금속구조체촉매의 제조방법과 그 금속구조체촉매와 금속구조체촉매가 불규칙하게 적층하여 반응가스와의 접촉면적을 증가시킨 금속구조체촉매 모듈을 제공하는 데 있다.
    본 발명의 구성은 금속지지체의 표면 오염물을 제거하고 세척하는 단계와; 세척 후 금속지지체 표면을 전해질내에서 인가전압과 전해질의 농도를 조절하여 금속산화물층을 형성시키는 전기화학적 표면처리 단계와; 금속지지체에 형성된 무정형의 금속산화물층을 결정화하거나 합금 중 특정 금속성분의 금속산화물층만을 형성하기 위해 산화분위기하의 가열로에서 열처리하는 단계를 거쳐 금속구조체를 제조하는 단계와; 이후 금속구조체 표면에 촉매를 담지하는 단계;를 포함하여 구성된 컴팩트 개질 반응기용 금속구조체촉매의 제조방법과 그 금속구조체촉매, 금속구조체촉매 모듈을 특징으로 한다.
    금속구조체, 금속촉매구조체촉매, 금속구조체촉매모듈, 전기화학적처리, 열처리, 컴팩트 개질 반응기

    피셔-트롭쉬 액화공정용 합성가스 제조를 위한 촉매층 및그 제조방법, 이 촉매층을 이용한 개질장치
    59.
    发明公开
    피셔-트롭쉬 액화공정용 합성가스 제조를 위한 촉매층 및그 제조방법, 이 촉매층을 이용한 개질장치 有权
    催化剂层及其制备方法用于合成气(H2 / CO&efdot; 2)用于FISCHER-TROPSCH工艺和使用该装置的装置

    公开(公告)号:KR1020090116928A

    公开(公告)日:2009-11-12

    申请号:KR1020080042748

    申请日:2008-05-08

    Abstract: PURPOSE: A catalyst layer for manufacturing synthetic gas for a Fisher-Tropsch liquefaction process, a manufacturing method thereof, and a reforming device using the same are provided to form to the catalyst layer on the surface of a metal supporting structure. CONSTITUTION: A catalyst layer for manufacturing synthetic gas for a Fisher-Tropsch liquefaction process includes a reforming device case(1), a heat insulating material(13), a coil-typed starting device(12), a power supplier(5), the catalyst layer(14), and a plurality of thermocouples(T1,T2,T3). The reforming device case includes an inlet and an outlet. The heat insulating material is installed at an inner circumference of the reforming device case. The power supplier permits power through a welding rod(11) connected to the coil-typed starting device. The thermocouple measures the temperature of a rear-end part of the catalyst layer and a front-end part of the coil-typed starting device etc.

    Abstract translation: 目的:提供一种用于制造Fisher-Tropsch液化工艺的合成气体的催化剂层,其制造方法和使用其的重整装置,以形成金属支撑结构的表面上的催化剂层。 构成:用于制造Fisher-Tropsch液化工艺的合成气体的催化剂层包括重整装置壳体(1),绝热材料(13),线圈型起动装置(12),电力供应器(5) 催化剂层(14)和多个热电偶(T1,T2,T3)。 重整装置壳体包括入口和出口。 隔热材料安装在重整装置壳体的内周。 电源通过连接到线圈式起动装置的焊条(11)来允许电力。 热电偶测量催化剂层的后端部分的温度和线圈式启动装置的前端部分等。

    튜브형 티타니아 광어노드와 엔자임 활용 평판형수조제조장치
    60.
    发明公开
    튜브형 티타니아 광어노드와 엔자임 활용 평판형수조제조장치 有权
    通过使用阴极管TIO2电极制造氢化氢的平面型装置

    公开(公告)号:KR1020090116314A

    公开(公告)日:2009-11-11

    申请号:KR1020080042176

    申请日:2008-05-07

    Abstract: PURPOSE: A flat-like apparatus for producing enzymatic hydrogen using anodized tubular TiO2 electrode is provided to maximize hydrogen generation efficiency using solar cell and nano filter membrane. CONSTITUTION: A flat-like apparatus for producing enzymatic hydrogen comprises an optical anode(22), anode electrolytic solution(7), cathode(11), cathode electrolytic solution(8), nano filter membrane(4), and solar cell(5). The optical anode is laminated on a titanium(Ti) supporter. The optical anode oxidizes optical catalyst titania(TiO2) and laminates the same as a form of tubes. The optical anode is dipped in an anode electrolytic solution. An enzyme is fixed to the cathode. The enzyme reduces protons into hydrogen. The cathode is dipped in the cathode electrolytic solution. The nano filter membrane connects the anode electrolytic solution to cathode electrolytic solution.

    Abstract translation: 目的:提供使用阳极氧化管状TiO 2电极生产酶氢的扁平状设备,以使用太阳能电池和纳米过滤膜来最大化氢的产生效率。 构成:用于生产酶氢的扁平状装置包括光阳极(22),阳极电解液(7),阴极(11),阴极电解液(8),纳滤膜(4)和太阳能电池 )。 光学阳极层压在钛(Ti)支撑体上。 光学阳极将光学催化剂二氧化钛(TiO 2)氧化并与一种管形式相同地层压。 光阳极浸入阳极电解液中。 酶固定在阴极上。 酶将质子还原成氢。 将阴极浸入阴极电解液中。 纳米过滤膜将阳极电解液与阴极电解液连接。

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