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    • 32. 发明公开
    • 연료전지용 개질장치
    • 燃料电池系统改造
    • KR1020080040212A
    • 2008-05-08
    • KR1020060107864
    • 2006-11-02
    • 삼성에스디아이 주식회사
    • 이찬호김주용이성철이용걸안진구한만석
    • C01B3/38C01B3/26C01B3/02
    • H01M8/0625B01J23/80B01J23/862B01J35/0006C01B3/38C01B3/48C01B3/583C01B2203/0233C01B2203/0244C01B2203/0261C01B2203/0283C01B2203/044C01B2203/047C01B2203/066C01B2203/1058C01B2203/1064C01B2203/1217C01B2203/1223C01B2203/1229C01B2203/1241C01B2203/1247C01B2203/82Y02P20/52
    • A reformer for a fuel cell system is provided to improve reforming efficiency by installing a CO removing part in a way that the CO removing part is inclined to a specified inclination angle relative to the straight proceeding direction of reforming gas exhausted from a reforming reaction part, thereby preventing the CO removing part from being influenced by thermal energy from the reforming reaction part. A reformer(120) for a fuel cell system comprises: a raw material inflow pipe(120b) into which butane and water flow; an evaporator(120c) for evaporating butane and water flown in through the raw material inflow pipe; a reforming reaction part(122) for forming reforming gas through a steam reforming reaction of butane and steam of a gas phase supplied from the evaporator; and water gas conversion parts(124a,124b) for removing carbon monoxide contained in reforming gas generated in the reforming reaction part, wherein the reformer further comprises a combustion part(120d) for supplying thermal energy into the evaporator, and a cover(110) formed on an outer part of the evaporator to recover heat contained in flue gas generated from a combustion reaction in the combustion part. The cover is formed along the evaporator and the reforming reaction part. The flue gas is exhausted along the arrow(C) direction through a gap between the reforming reaction part and the cover. The reforming gas generated by a reforming action in the reforming reaction part proceeds along the arrow(A) direction. The reforming gas proceeds to the second water gas conversion part(124b) along the arrow(B) direction after the reforming gas flows into the first water gas conversion part(124a) along the arrow(A) direction.
    • 提供了一种用于燃料电池系统的重整器,通过以相对于从重整反应部件排出的重整气体的直线行进方向倾斜到特定倾斜角度的方式安装CO去除部件来提高重整效率, 从而防止CO去除部受到来自重整反应部的热能的影响。 一种用于燃料电池系统的重整器(120)包括:原料流入管(120b),其中丁烷和水流入其中; 用于蒸发通过原料流入管流出的丁烷和水的蒸发器(120c); 用于通过从蒸发器供应的气相的丁烷和蒸汽的蒸汽重整反应形成重整气体的重整反应部分(122) 以及用于去除在重整反应部分中产生的重整气体中所含的一氧化碳的水气转换部分(124a,124b),其中重整器还包括用于向蒸发器供给热能的燃烧部分(120d) 形成在蒸发器的外部,以回收由燃烧部分中的燃烧反应产生的烟道气中所含的热量。 盖沿着蒸发器和重整反应部分形成。 烟道气沿箭头(C)方向通过重整反应部分和盖子之间的间隙排出。 由重整反应部中的重整作用产生的重整气体沿箭头(A)方向前进。 在重整气体沿箭头(A)方向流入第一水煤气转换部分(124a)之后,重整气体沿箭头(B)方向进入第二水煤气转化部分(124b)。
    • 33. 发明授权
    • 복사 에너지를 이용하는 연료 개질장치
    • 燃料转换器使用辐射
    • KR100824526B1
    • 2008-04-22
    • KR1020070004000
    • 2007-01-12
    • 삼성에스디아이 주식회사
    • 안진구김주용이용걸한만석이성철김준식이찬호
    • C01B3/38C01B3/26
    • B01J8/0465B01J2208/00309B01J2208/00504B01J2219/1923C01B3/323C01B3/384C01B3/48C01B2203/0233C01B2203/0283C01B2203/0288C01B2203/044C01B2203/047C01B2203/0811C01B2203/1058C01B2203/1064C01B2203/107C01B2203/1076C01B2203/1223C01B2203/1235C01B2203/1247
    • A fuel reformer is provided to lower the operating temperature of the heater, to prevent durability of the heater from lowering, and to improve thermal efficiency by effectively transferring radiant energy generated from a high temperature heater to a reforming reactor. A fuel reformer(10) comprises: a reforming reaction part(12) which includes a reforming catalyst(13), and which converts fuel into a desired material; a heating part(14) for supplying heat to the reforming catalyst; and a light-transmitting inner wall(17) installed between the reforming reaction part and the heating part. The inner wall is made of quartz or pyrex. The inner wall has a thickness of 1 to 100 mm. The reforming reaction part and the heating part are separately installed within a single reactor in a state that the inner wall is formed between the reforming reaction part and the heating part. The reforming reaction part and the heating part are constructed in a double hollow pipe structure. The heating part includes an oxidation catalyst(15). The heating part includes a burner for spraying flame. The reforming catalyst is a steam reforming catalyst or an autothermal reforming catalyst.
    • 提供燃料重整器以降低加热器的工作温度,以防止加热器的耐久性降低,并且通过有效地将从高温加热器产生的辐射能转移到重整反应器来提高热效率。 燃料重整器(10)包括:重整反应部分(12),其包括重整催化剂(13),并将燃料转化为所需材料; 用于向重整催化剂供给热量的加热部件(14) 和安装在重整反应部分和加热部分之间的透光内壁(17)。 内壁由石英或火山灰制成。 内壁的厚度为1〜100mm。 重整反应部分和加热部分分别安装在单个反应器内,内部形成在重整反应部分和加热部分之间。 重整反应部和加热部构成为双重中空管结构。 加热部件包括氧化催化剂(15)。 加热部件包括用于喷射火焰的燃烧器。 重整催化剂是蒸汽重整催化剂或自热重整催化剂。
    • 35. 发明公开
    • 열전달핀이 설치된 증발기를 갖는 개질기
    • 具有热传递引脚的蒸发器的改造者
    • KR1020080027686A
    • 2008-03-28
    • KR1020060093149
    • 2006-09-25
    • 삼성에스디아이 주식회사
    • 이찬호김주용이용걸이성철한만석안진구
    • C01B3/38C01B3/26
    • C01B3/38C01B3/26C01B2203/0227C01B2203/0283C01B2203/0811
    • A reformer having an evaporator is provided to expand the heat exchange area of the evaporator with the waste gas and improve evaporation efficiency of the evaporator by installing heat transfer pins extending to a flow path of waste gas exhausted from a combustion part. A reformer(20) comprises an evaporator(20c) for evaporating hydrogen-containing fuel, a burner for supplying heat energy to the evaporator, and a reforming reaction part(22) for converting gas phased hydrogen-containing fuel exhausted from the evaporator into reforming gas comprising hydrogen as a principal component, wherein a flow path for flowing waste gas exhausted from the burner is formed in the evaporator, and the flow path is provided with a plurality of heat transfer pins(28) extending from the evaporator. The plurality of heat transfer pins are installed along the flow path with being spaced from one another in a predetermined distance. The flow path is formed in a cylindrical shape. The plurality of heat transfer pins are alternately installed along the flow path. The plurality of heat transfer pins are radially extended toward an inner part of the evaporator from a horizontal plane that crosses the flow path. The reformer further comprises a CO removal part for removing carbon monoxide contained in the reforming gas. The CO removal part includes a water gas shift part and a selective oxidation part.
    • 提供了一种具有蒸发器的重整器,用于通过安装延伸到从燃烧部分排出的废气的流动路径的传热销来扩展蒸发器与废气的热交换区域并提高蒸发器的蒸发效率。 重整器(20)包括用于蒸发含氢燃料的蒸发器(20c),用于向蒸发器供应热能的燃烧器和用于将从蒸发器排出的气相氢化燃料转化为重整的重整反应部分(22) 包含氢作为主要成分的气体,其中在所述蒸发器中形成用于使从所述燃烧器排出的废气流动的流路,并且所述流路设置有从所述蒸发器延伸的多个传热销(28)。 多个传热销沿着流动路径彼此间隔开预定距离安装。 流路形成为圆筒状。 多个传热销沿着流路交替安装。 多个传热销从穿过流路的水平面径向延伸到蒸发器的内部。 重整器还包括用于除去重整气体中所含的一氧化碳的CO除去部分。 CO除去部分包括水煤气变换部分和选择性氧化部分。
    • 37. 发明公开
    • 촉매반응 테스트기
    • 用于测试催化反应的装置
    • KR1020080016051A
    • 2008-02-21
    • KR1020060077606
    • 2006-08-17
    • 삼성에스디아이 주식회사
    • 레오니드김주용이용걸안진구이성철한만석이찬호남기현
    • B01J8/00B01J4/00
    • B01J8/06B01J8/0285B01J2208/00548
    • A catalytic reaction tester is provided to measure temperature variations of a reaction chamber due to reaction heat generated while chemical reaction is carried out by catalytic action, and provide data that can maintain an optimal activation temperature of the catalytic material by controlling, according to the temperature variations of the reaction chamber, the inflow amount of the reactant that is flown into the reaction chamber provided with a catalytic material. A catalytic reaction tester(10) comprises: a reaction chamber(20) including an inflow part(20a) into which a reactant flows, a discharge part(20b) for discharging a product generated as a result of chemical reaction of the reactant, and a catalytic material provided between the inflow part and the discharge part; an insulation part(22) that surrounds an outer part of the reaction chamber; a plurality of temperature detecting units for detecting temperatures of the reaction chamber; and a mass flow controller(MFC) for controlling an inflow amount of the reactant flown into the reaction chamber. The plurality of temperature detecting units include a first temperature detecting unit(24) for detecting temperature of the catalytic material, a second temperature detecting unit(28) for detecting temperature between the insulation part and the reaction chamber, and a third temperature detecting unit(26) for detecting temperature of an outer face of the insulation part.
    • 提供了一种催化反应试验器,用于测量由催化作用进行化学反应时产生的反应热引起的反应室的温度变化,并提供能够通过根据温度控制来保持催化材料的最佳活化温度的数据 反应室的变化,流入设置有催化材料的反应室的反应物的流入量。 催化反应试验机(10)包括:反应室(20),其包括反应物流入的流入部分(20a),用于排出由于反应物的化学反应而产生的产物的排出部分(20b),以及 设置在流入部和排出部之间的催化材料; 围绕所述反应室的外部的绝缘部分(22); 多个温度检测单元,用于检测反应室的温度; 以及用于控制流入反应室的反应物的流入量的质量流量控制器(MFC)。 多个温度检测单元包括用于检测催化剂材料的温度的第一温度检测单元(24),用于检测绝缘部件和反应室之间的温度的第二温度检测单元(28)和第三温度检测单元 26),用于检测绝缘部件的外表面的温度。
    • 38. 发明授权
    • 퍼징 장치가 구비된 연료전지 시스템 및 그 가동 정지 방법
    • 具有清洗装置的燃料电池系统和用于停止燃料电池系统的操作的方法
    • KR100759664B1
    • 2007-09-17
    • KR1020060088091
    • 2006-09-12
    • 삼성에스디아이 주식회사
    • 안진구김주용이성철한만석이용걸이찬호레오니드
    • H01M8/04
    • H01M8/04231H01M8/04022H01M8/04179H01M8/04776H01M8/0612
    • A fuel cell system and a method for stopping the operation of the fuel cell system are provided to remove the remaining reactant in case of the stopping of system operation effectively and to prevent the condensation of vapor on the surface of an electrode. A fuel cell system comprises a reformer(22) which is provided with a heat source part(24) generating the combustion heat and generates a hydrogen-rich gas from fuel by the catalytic reaction using the combustion heat; a fuel cell stack(10) which reacts the reformed gas and an oxidizing agent electrochemically to generate an electric energy; and a purging device(30) which intercepts the reformed gas and the oxidizing agent supplied to the fuel cell stack and supplies the ventilation gas from the heat source part into the fuel cell stack in case of the stopping of system operation.
    • 提供燃料电池系统和用于停止燃料电池系统的操作的方法,以在有效地停止系统操作的情况下去除剩余的反应物并防止蒸汽在电极表面上的冷凝。 燃料电池系统包括重整器(22),其具有产生燃烧热的热源部分(24),并且通过使用燃烧热的催化反应从燃料产生富氢气体; 燃料电池堆(10),其通过电化学反应使重整气体和氧化剂产生电能; 以及吹扫装置(30),其在停止系统运行的情况下,拦截提供给燃料电池堆的重整气体和氧化剂,并将来自热源部的通气气体供给到燃料电池堆。
    • 40. 发明公开
    • 연료 전지 스택 및 이를 포함하는 연료 전지 시스템
    • 燃料电池堆和燃料电池系统
    • KR1020070056616A
    • 2007-06-04
    • KR1020050115518
    • 2005-11-30
    • 삼성에스디아이 주식회사
    • 이성철김주용이찬호한만석이용걸서동명레오니드고로빈스키김진광안진구이동욱
    • H01M8/04H01M8/24
    • H01M8/04089H01M8/0606H01M8/2475Y02E60/521
    • Provided are a fuel cell stack to improve the cooling efficiency of a stack and to pre-heat a stack to an operation temperature within a short time, thereby reducing the initial driving time of the system, and a fuel cell system containing the stack. The fuel cell stack(100) comprises a fuel cell main body(20) which comprises a plurality of electricity generation parts(11) comprising a membrane electrode assembly(13) and a separator(15a, 15b) closely adhered to the both sides of the membrane electrode assembly, wherein the electricity generation parts are arranged continuously to form an assembled structure, and the fuel cell main body is provided with a cooling channel(51) formed between the electricity generation parts for passing a certain cooling medium and an oxidation catalyst(80) formed at the cooling channel for generating a heat energy by the oxidation of fuel.
    • 提供了一种用于提高堆的冷却效率并且在短时间内将堆预热到操作温度的燃料电池堆,从而减少了系统的初始行驶时间,以及包含堆的燃料电池系统。 燃料电池堆(100)包括燃料电池主体(20),其包括多个发电部分(11),所述多个发电部分包括膜电极组件(13)和紧密附着在两侧的隔板(15a,15b) 膜电极组件,其中发电部分被连续地布置以形成组装结构,并且燃料电池主体设置有形成在发电部分之间的用于使某些冷却介质和氧化催化剂通过的冷却通道 (80),其形成在冷却通道处,用于通过燃料的氧化产生热能。