철계 촉매의 제조방법 및 이에 의해 제조된 철계 촉매
    51.
    发明公开
    철계 촉매의 제조방법 및 이에 의해 제조된 철계 촉매 有权
    制造基于铁的催化剂和由其制造的基于铁的催化剂的方法

    公开(公告)号:KR1020150014085A

    公开(公告)日:2015-02-06

    申请号:KR1020130089300

    申请日:2013-07-29

    Abstract: The present invention relates to a method for manufacturing an iron based catalyst comprising: a precipitate forming step of forming a precipitate by mixing a first solution in which a solution including at least one among iron ore fine particles, copper, cobalt, manganese, nickel, ruthenium, rhodium, rhenium, iridium, platinum or gold nitrate and an iron nitrate solution, at least one oxide among silicon oxide, aluminum oxide, zirconium oxide or chrome oxide or a precursor thereof and at least one second solution among an alkali metal carbonate aqueous solution, an alkaline-earth metal carbonate aqueous solution or an ammonia aqueous solution; and a plasticizing step of drying and plasticizing the precipitate. The present invention is able to manufacture the iron based catalyst which exhibits excellent performance while being environmentally friendly by reducing water consumption and pollutant emission since water and iron nitrate consumption is able to be reduced 20% or more as compared with a method for manufacturing an existing iron based catalyst.

    Abstract translation: 铁基催化剂的制造方法技术领域本发明涉及一种铁基催化剂的制造方法,其特征在于,包括:沉淀物形成工序,通过混合第一溶液来形成沉淀物,所述第一溶液中含有铁矿精细颗粒,铜,钴,锰,镍, 钌,铑,铼,铱,铂或金硝酸盐和硝酸铁溶液,氧化硅,氧化铝,氧化锆或氧化铬或其前体中的至少一种氧化物和碱金属碳酸盐水溶液中的至少一种第二溶液 溶液,碱土金属碳酸盐水溶液或氨水溶液; 和使沉淀物干燥和塑化的增塑步骤。 本发明能够通过减少耗水量和污染物排放而制造出表现出优异性能的铁基催化剂,因为与现有的制造方法相比,硝酸铁和硝酸盐的消耗能够降低20%以上 铁基催化剂。

    동시 용융함침에 의한 혼성 합금 촉매 담지체 제조 방법 및 그 혼성 합금 촉매 담지체
    53.
    发明授权
    동시 용융함침에 의한 혼성 합금 촉매 담지체 제조 방법 및 그 혼성 합금 촉매 담지체 有权
    混合金属催化剂载体的制备方法,使用混合金属盐的多熔体渗透方法及其混合和合金金属催化剂载体

    公开(公告)号:KR101404214B1

    公开(公告)日:2014-06-10

    申请号:KR1020110144339

    申请日:2011-12-28

    Abstract: 본 발명은 동시 용융함침에 의한 혼성 합금 촉매 담지체 제조 방법 및 그 합금 촉매 담지체에 관한 것으로, 그 목적은 담지 하고자 하는 금속염들을 기계적으로 동시 혼합 후, 혼합된 금속염을 녹여 다공성 지지체에 함침시켜 합금입자가 담지된 촉매 담지체들을 쉽고 빠르게 제조할 수 있는 동시 용융함침에 의한 혼성 합금 촉매 담지체 제조 방법 및 그 합금 촉매 담지체를 제공하는데 있다.
    본 발명의 구성은 a) 둘 이상의 금속염들과 다공성 지지체 간의 혼합단계와;
    b) 공동 용융함침에 의한 금속염들 간의 융합단계와;
    c) 고온 소성과정을 통해 다공성 지지체 내 금속염들을 합금화 시키는 단계;를 포함하는 동시 용융함침에 의한 혼성 합금 촉매 담지체 제조 방법 및 그 합금촉매 담지체를 발명의 특징으로 한다.

    동적 기체분배기 및 그를 적용한 기포탑 반응기
    54.
    发明授权
    동적 기체분배기 및 그를 적용한 기포탑 반응기 有权
    动态气体分布器和包括动态气体分布器的气泡柱

    公开(公告)号:KR101399403B1

    公开(公告)日:2014-05-27

    申请号:KR1020120094731

    申请日:2012-08-29

    Abstract: 본 발명은 동적 기체분배기 및 그를 적용한 기포탑 반응기에 관한 것으로, 합성가스의 기포입자를 균일하게 전환시킴은 물론, 기포입자의 후단에 생기는 웨이크(wake:교란된 공기의 흐름)에 의해 기포기둥이 발생되는 현상을 억제하여 반응기본체 내에서의 반응효율을 증진시키기 위한 것이다. 본 발명에 따른 기포탑 반응기는 반응기본체와 동적 기체분배기를 포함한다. 반응기본체는 촉매를 함유하는 슬러리가 저장되며, 촉매를 함유하는 슬러리가 유입되는 합성가스와 반응하여 합성연료를 생성한다. 그리고 동적 기체분배기는 반응기본체의 하부에 연통되게 배치되며, 유입관을 통해 공급되는 합성가스를 회전으로 분산시키고, 분산된 합성가스를 균일한 기포입자로 전환시켜 반응기본체의 내부로 공급한다.

    형상이 조절된 철 옥살레이트 수화물 입자 및 그 제조방법, 이 철 옥살레이트 수화물 입자를 이용하여 제조된 산화철/탄소 복합체 및 그 제조방법
    55.
    发明授权
    형상이 조절된 철 옥살레이트 수화물 입자 및 그 제조방법, 이 철 옥살레이트 수화물 입자를 이용하여 제조된 산화철/탄소 복합체 및 그 제조방법 有权
    含有控制形状的铁氧化物水合物颗粒及其制造方法,使用铁氧化物水合物颗粒制造的氧化铁/碳复合材料及其制造方法

    公开(公告)号:KR101356990B1

    公开(公告)日:2014-02-03

    申请号:KR1020130113708

    申请日:2013-09-25

    Abstract: The present invention relates to iron oxalate hydrate particles with controlled shapes and a manufacturing method thereof, iron oxide-carbon composites manufactured using the iron oxalate hydrate particles and a manufacturing method thereof, and the purpose thereof for manufacturing ferric oxalate particles with variously controlled shapes by conducting high temperature hydrolysis reaction of saccharides supplying carbon and the aqueous solution of a surfactant and water and providing oxidized iron/carbon composite therefrom. The present invention includes ferric hydroxide salt, a step of mixing the surfactant and saccharides with distilled water in a reactor; a step of forming iron oxalate particle with controlled shapes; a step of separating and washing it by putting distilled water or ethanol after reducing the temperature up to room temperature; a step of powderizing the iron oxalate particle; a step of high temperature sintering the iron oxalate particle under atmospheric condition or an inert gas atmosphere for hydrolysis to form oxidized iron particle among residual carbons. [Reference numerals] (S100) Step of mixing ferric hydroxide salt, a surfactant and saccharides with distilled water in a reactor; (S200) Step of forming iron oxalate particles with controlled shapes by decomposing ferric hydroxide salt through a hydrothermal reaction after temperature rising; (S300) Step of performing dispersing and washing by putting distilled water or ethanol after reducing the temperature up to room temperature; (S400) Step of performing centrifugation on the iron oxalate particles using a centrifuge; (S500) Step of powderizing the iron oxalate particles; (S600) Step of re-dispersing and washing using distilled water or ethanol after centrifugation; (S700) Step of high temperature sintering the iron oxalate particles with a controlled shape in a power condition under atmospheric condition or an inert gas atmosphere for hydrolysis to form oxidized iron particle among residual carbons

    Abstract translation: 本发明涉及具有受控形状的草酸铁水合物颗粒及其制造方法,使用草酸铁水合物颗粒制造的氧化铁 - 碳复合材料及其制造方法,以及其制备具有各种可控形状的草酸铁颗粒的目的通过 对供应碳的糖和表面活性剂和水的水溶液进行高温水解反应,并从中提供氧化的铁/碳复合物。 本发明包括氢氧化铁盐,在反应器中将表面活性剂和糖与蒸馏水混合的步骤; 形成受控形状的草酸铁颗粒的步骤; 通过在将温度降至室温后放入蒸馏水或乙醇分离和洗涤步骤; 粉化草酸铁颗粒的步骤; 在大气条件下高温烧结草酸铁颗粒或惰性气体气氛进行水解以在残留碳中形成氧化铁颗粒的步骤。 (附图标记)(S100)在反应器中将氢氧化铁盐,表面活性剂和糖类与蒸馏水混合的工序; (S200)通过在升温后通过水热反应分解氢氧化铁,形成具有受控形状的草酸铁颗粒的步骤; (S300)将温度降低至室温后,通过蒸馏水或乙醇进行分散洗涤的工序; (S400)使用离心机对草酸铁颗粒进行离心的步骤; (S500)将草酸铁粉末粉化的工序; (S600)离心后使用蒸馏水或乙醇进行再分散和洗涤的步骤; (S700)在大气条件下的电力条件下或者惰性气体气氛中高温烧结具有受控形状的草酸铁颗粒的步骤,以在残留的碳中形成氧化铁颗粒

    피셔-트롭쉬 합성 반응용 철/탄소 복합계 촉매의 제조 방법 및 그 촉매와, 제조 방법을 이용한 액체 탄화수소 제조 방법
    56.
    发明授权
    피셔-트롭쉬 합성 반응용 철/탄소 복합계 촉매의 제조 방법 및 그 촉매와, 제조 방법을 이용한 액체 탄화수소 제조 방법 有权
    用于高温FISCHER-TROPSCH合成反应的碳/碳纳米复合催化剂的制造方法,其中的碳/碳纳米复合催化剂及其使用的液体烃的制造方法

    公开(公告)号:KR101342514B1

    公开(公告)日:2013-12-17

    申请号:KR1020120068034

    申请日:2012-06-25

    Abstract: Disclosed are a production method of an Fe/carbon nanocomposite catalyst for the Fischer-tropsch synthesis which comprises the following steps: a mixing step of mixing an Fe metallic hydrate salt with porous carbon supporters; an impregnation step of melting and impregnating the mixture around a melting point of the Fe metallic hydrate salt, and impregnating the Fe metallic hydrate salt to the carbon supporters; a particle formation step of plasticizing the Fe metallic hydrate salt in the carbon supporters at high temperatures and under the carbon monoxide or hydrogen atmosphere, for forming metallic Fe carbide particles in the carbon supporters; and a drying step of passivating the Fe carbide particles with ethanol, and vacuum-drying the Fe carbide particles, the Fe/carbon nanocomposite catalyst produced by the same, and a production method of liquid hydrocarbon using the same. [Reference numerals] (AA) Iron hydrate salt;(BB) Porous carbon supporter;(CC) Low-temperature aging;(DD) Form amorphous Fe-C composites;(EE) High-temperature decomposition;(FF) Iron carbide / charcoal nanostructures;(S104) Fe-carbide catalyst activated outside reactor

    Abstract translation: 公开了用于费 - 托合成的Fe /碳纳米复合催化剂的制备方法,其包括以下步骤:将Fe金属盐水盐与多孔碳载体混合的混合步骤; 在Fe金属水合物盐的熔点附近熔融并浸渍混合物并将Fe金属盐水盐浸渍到碳载体上的浸渍步骤; 在高温和一氧化碳或氢气氛下,使碳载体中的Fe金属盐水化合物增塑,在碳载体中形成金属Fe碳化物颗粒的颗粒形成步骤; 以及用乙醇钝化Fe碳化物颗粒的干燥步骤,并且对Fe碳化物颗粒,由其制备的Fe /碳纳米复合催化剂进行真空干燥和使用其的液态烃的制备方法。 (AA)铁水合物盐;(BB)多孔碳载体;(CC)低温老化;(DD)形式无定形Fe-C复合材料;(EE)高温分解;(FF)碳化铁/ 木炭纳米结构;(S104)在反应器外活化的Fe-碳化物催化剂

    바이오메탄을 이용한 합성 연료 생산 장치 및 방법
    57.
    发明授权
    바이오메탄을 이용한 합성 연료 생산 장치 및 방법 有权
    用生物柴油生产合成燃料的装置及其方法

    公开(公告)号:KR101308405B1

    公开(公告)日:2013-09-16

    申请号:KR1020130023862

    申请日:2013-03-06

    CPC classification number: C10G2/34 B01D53/75 C10G2/331 C10J3/20 Y02E60/50

    Abstract: PURPOSE: A synthetic fuel production apparatus using biomethane and a method thereof are provided to be used for vehicles and power generation plants. CONSTITUTION: A biogas reservoir(1) collects biogas from a biogas generation place and stores the biogas. A biogas purifier(2) separates biomethane with high purity from the biogas. A steam methane reforming device(3) is composed of a modular metal structure catalyst which generates synthetic gas by reforming the biomethane and a modular heat exchange reactor with multiple pipes. The Fisher-Tropsch synthesis reactor(5) is composed of a modular metal structure catalyst which liquefies the biogas to generate synthetic fuel and a modular heat exchange reactor with multiple pipes. An electricity generating device for a fuel cell(6) generates electricity using hydrogen with high purity as a raw material. [Reference numerals] (AA) H_2/CO rate 3:1; (BB) H_2/CO rate 2:1

    Abstract translation: 目的:提供一种使用生物甲烷的合成燃料生产装置及其方法,用于车辆和发电厂。 构成:沼气池(1)从沼气发电场收集生物气,储存沼气。 沼气净化器(2)将沼气中的高纯度生物甲烷分离出来。 蒸汽甲烷重整装置(3)由通过重整生物甲烷生产合成气体的模块化金属结构催化剂和具有多个管道的模块化热交换反应器组成。 费托合成反应器(5)由将生物气液化以产生合成燃料的模块化金属结构催化剂和具有多个管道的模块式热交换反应器组成。 燃料电池(6)的发电装置以高纯度的氢为原料发电。 (标号)(AA)H_2 / CO率3:1; (BB)H_2 / CO率2:1

    가지형 금속실리케이트를 이용한 금속/실리카 촉매 담지체의 제조방법 및 그 금속/실리카 금속/실리카 촉매 담지체
    58.
    发明公开
    가지형 금속실리케이트를 이용한 금속/실리카 촉매 담지체의 제조방법 및 그 금속/실리카 금속/실리카 촉매 담지체 有权
    通过分支金属硅酸盐结构和金属/二氧化硅支持的催化剂制备金属/二氧化硅负载催化剂的制备方法

    公开(公告)号:KR1020130045024A

    公开(公告)日:2013-05-03

    申请号:KR1020110109441

    申请日:2011-10-25

    CPC classification number: B01J37/0219 B01J23/75 B01J35/023 B01J37/08 B01J37/18

    Abstract: PURPOSE: A metal and silica doped catalyst and a manufacturing method thereof are provided to uniformly dip metal particles with 20 wt% or higher concentration by developing pores and be thermally stable by not causing sintering between the metal particles at 700°C of high temperature heat treatment. CONSTITUTION: A manufacturing method of a metal and a silica doped catalyst comprises the following steps: manufacturing metal, metal oxide, or an alloy nano particles by decomposing organometallic compounds at high temperature by mixing with organic surfactant and organic solvent; coating the nano-particles with silica using micro emulsion; converting the metal and silica core-shell structure into the branched metal silicate structure using a high temperature hydrothermal reaction; and obtaining metal doped catalyst which is high deposited in silica by reducing and annealing the metal silicate structure under a high temperature hydrogen condition. The metal or metal oxide nano-particle and alloy nano-particle are manufactured in a non-aqueous system. [Reference numerals] (AA) Metal salt + organic surfactant; (BB) Thermal reduction or decomposition; (CC) Metal or metal oxide nanoparticles; (DD) Silica coating using microemulsion; (EE) Metal or metal oxide/silica core-shell nanoparticles; (FF) Hydrothermal reaction; (GG) Branch type metal silicate structure; (HH) High temperature plasticizing or reduction; (II) Metal/silica doped catalyst

    Abstract translation: 目的:提供一种金属和二氧化硅掺杂催化剂及其制造方法,通过显影孔均匀浸渍20重量%以上的金属颗粒,并通过在700℃的高温热不引起金属颗粒之间的烧结而热稳定 治疗。 构成:金属和二氧化硅掺杂催化剂的制造方法包括以下步骤:通过与有机表面活性剂和有机溶剂混合在高温下分解有机金属化合物来制造金属,金属氧化物或合金纳米颗粒; 使用微乳液用二氧化硅涂覆纳米颗粒; 使用高温水热反应将金属和二氧化硅核 - 壳结构转化成支链金属硅酸盐结构; 并通过在高温氢气条件下还原和退火金属硅酸盐结构,获得高度沉积在二氧化硅中的金属掺杂催化剂。 金属或金属氧化物纳米颗粒和合金纳米颗粒在非水系统中制造。 (AA)金属盐+有机表面活性剂; (BB)热还原或分解; (CC)金属或金属氧化物纳米粒子; (DD)使用微乳液的二氧化硅涂层; (EE)金属或金属氧化物/二氧化硅核 - 壳纳米粒子; (FF)水热反应; (GG)分支型金属硅酸盐结构; (HH)高温塑化或还原; (II)金属/二氧化硅掺杂催化剂

    자립형 셀프서스테이닝 방식의 열교환기타입 모듈형 리포머
    59.
    发明公开
    자립형 셀프서스테이닝 방식의 열교환기타입 모듈형 리포머 审中-实审
    自维持自热换热器其他口模块化改造器

    公开(公告)号:KR1020170137497A

    公开(公告)日:2017-12-13

    申请号:KR1020160069729

    申请日:2016-06-03

    Abstract: 본발명은반응열을공급하기위한열교환기타입의반응열공급기와격오지나심해환경에서의가스를활용한수소생산을위하여고흡열반응을위한열을흡수하기위한촉매층에충전된메탈폼으로설계된수소를생산할수 있는수소생산량변동이가능한자립형셀프서스테이닝방식의열교환기타입의모듈형리포머에관한것으로본 발명은추가적인외부열원공급없이연속적이고안정적으로높은흡열반응을위한반응열을안정적으로공급할수 있어촉매층의반응온도를안정적으로유지할수 있는효과를갖는다.

    Abstract translation: 本发明可以与用于生产利用eseoui气体深海环境氢气,反应热供给的热交换的其它口ohjina的用于反应的供热以产生氢气的尺寸被设计为填充在催化剂床,以吸收热量用于吸热反应的金属泡沫, 本发明涉及一种模块化重整器,其能够连续且稳定地供应用于高吸热反应的反应热而无需提供额外的外部热源, 这样温度可以保持稳定。

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