• 제목/요약/키워드: Hydrogen Generation System

검색결과 280건 처리시간 0.028초

수소가스발생 장치의 전해조 분라판의 유로설계에 관한 전산모사 연구 (A study on the channel design of bipolar plate of electrolytic cell of hydrogen gas generation system by flow dynamic simulation)

  • 조현학;장봉재;송주영
    • 한국응용과학기술학회지
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    • 제27권2호
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    • pp.152-156
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    • 2010
  • This study is focused on the channel design of bipolar plate in the electrode of hydrogen gas generator. The characteristics of hydrogen gas generation was studied in view of efficiency of hydrogen gas generation rate and a tendency of gas flow through the riv design of electrode. Since the flow rate of generated gas is the most crucial in determining the efficiency of hydrogen gas generator, we adopted the commercial analytical program of COMSOL $Multiphysics^{TM}$ to calculate the theoretical flow rate of hydrogen gas from the outlet of gas generator.

1kW급 고체산화물 연료전지 발전시스템 자열운전 (Self-sustainable Operation of a 1kW class SOFC System)

  • 이태희;최진혁;박태성;유영성
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2008년도 춘계학술대회 논문집
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    • pp.57-60
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    • 2008
  • KEPRI has studied planar type SOFC stacks using anode-supported single cells and kW class co-generation systems for residential power generation. A 1kW class SOFC system consisted of a hot box part, a cold BOP part and a water reservoir. A hot box part contains a SOFC stack made up of 48 single cells and ferritic stainless steel interconnectors, a fuel reformer, a catalytic combustor and heat exchangers. Thermal management and insulation system were especially designed for self-sustainable operation. A cold BOP part was composed of blowers, pumps, a water trap and system control units. When a 1kW class SOFC system was operated at $750^{\circ}C$ with hydrogen after pre-treatment process, the stack power was 1.2kW at 30 A and 1.6kW at 50A. Turning off an electric furnace, the SOFC system was operated using hydrogen and city gas without any external heat source. Under self-sustainable operation conditions, the stack power was about 1.3kW with hydrogen and 1.2kW with city gas respectively. The system also recuperated heat of about 1.1kW by making hot water.

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연료전지 추진 멀티콥터의 사이징 계산 방법에 관한 연구 (Study on Sizing Calculation Method of Fuel Cell Propulsion Multirotor)

  • 이동근;안국영;김영상
    • 한국수소및신에너지학회논문집
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    • 제32권6호
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    • pp.542-550
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    • 2021
  • As the application of multirotor grows, the demands for multirotor that can fly longer and load more are increasing. Hydrogen has a high energy density, so it can satisfy these demands when used in multirotor. In order to design hydrogen fueled multirotor that satisfies the desired flight time and payload, it is important to calculate the specifications of a fuel cell, battery, and hydrogen storage system. This paper contains detailed information on various energy systems used in multirotor and fuel cell powered multirotor research trends. This study proposed a sizing calculation method that meets the target flight time and payload using thrust and power equations. It has been explained how the two equations derive the particular specifications. The specifications of the multirotor were derived by assuming a payload of 50 kg and a flight time of 1 hour. In addition, the effects of the values of the fuel cell, hydrogen storage system, and motor propeller were analyzed.

화학수소화합물을 이용한 소형 무인항공기용 연료전지 시스템 연구 - I. 경량 수소 발생 및 제어 장치 (Fuel cell system for SUAV using chemical hydride - I. Lightweight hydrogen generation and control system)

  • 홍지석;정원철;김현진;이민재;정대성;전창수;성홍계;신석재;남석우
    • 한국항공우주학회지
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    • 제41권3호
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    • pp.226-232
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    • 2013
  • 소형 무인항공기의 동력장치로 연료전지 시스템을 적용하기 위해 화학수소화합물 수소 저장방법을 이용한 소형 수소 발생 제어장치를 설계하였다. 효율이 높은 소형/경량 수소 발생 제어장치를 설계하기 위하여 $NaBH_4$ 수용액 공급 유량에 따른 Co-B 촉매의 수소 전환율을 확인하였고, 100W 스택의 최대 수소 발생량에 적합한 Co-B 촉매양을 제안하였다. 효율적인 연료 소모를 위해 Dead-end 방식의 스택을 선택하였고, 수소 발생 제어장치 내부 압력을 이용한 펌프 on/off 제어로 수소 생성량을 제어하였다. 소형 수소 발생 제어장치를 이용한 연료전지 시스템의 각 작동구간에서 안정된 운전을 확인하였다. 장시간 운전 실험을 통하여 최대 7시간 운전이 가능하며, 임의의 비행 프로화일에 요구되는 추력 프로화일은 최소 4시간 이상 조정 가능함을 확인하였다.

전기방전에 의한 수소제조방법의 전압-전류특성 (Voltage-Current Characteristics of Electrical Discharge Method for Hydrogen Generation)

  • 최용만;강구진;차석렬;이웅무
    • 한국수소및신에너지학회논문집
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    • 제7권1호
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    • pp.3-9
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    • 1996
  • 금속과 물의 혼합체에 전기방전을 야기시켜 수소를 제조하는 방법은 필요시에 즉시 수소를 제조할 수 있는 유용한 방법이다. 그러나 이 방법이 실제로 이용될 수 있기 위해서는 입력되는 전기에너지당 물과의 반응을 일으키는 금속의 양이 가능한한 큰 값을 가져야 한다. 이러한 에너지 효율을 높이기 위해서는 약한 전기방전이 화학반응을 지속시킬 수 있어야 된다. 이러한 효율에 직결되는 실험변수중에서 방전 전압-전류 곡선을 측정하여 토의하였다.

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리니어 수소동력시스템의 연소연구용 급속흡입압축기의 특성 해석 (Analysis on the Characteristics of RICEM for Researching Combustion Characteristics of Linear Hydrogen Power System)

  • 이제홍;김강문;정대용;이종태
    • 한국수소및신에너지학회논문집
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    • 제16권1호
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    • pp.66-73
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    • 2005
  • Hydrogen linear power system is estimated as the next generation power system which can obtain a performance as same as fuel cell. In order to develop Hydrogen combustion power system with high thermal efficiency, it is very important to understand the basic characteristics of hydrogen combustion and establish combustion stabilization technique of its system. In this study, RICEM(Rapid Intake Compression Expansion Machine) for researching of hydrogen combustion linear power system was manufactured and evaluated, and the basic characteristics of linear RICEM were analyzed.

수소 전소용 연소 노즐 형상과 연소실 압력이 경계층 역화에 미치는 영향 (The Effects of Nozzle Shapes and Pressures on Boundary Layer Flashback of Hydrogen-Air Combustor)

  • 이원준;황정재;김한석;민경욱;김민국
    • 한국수소및신에너지학회논문집
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    • 제33권6호
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    • pp.776-785
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    • 2022
  • Hydrogen combustion in modern gas-turbine engine is the cutting edge technology as carbon-free energy conversion system. Flashback of hydrogen flame, however, is inevitable and critical specially for premixed hydrogen combustion. Therefore, this experimental investigation is conducted to understand flashback phenomenon in premixed hydrogen combustion. In order to investigate flashback characteristics in premixed hydrogen (H2)/air flame, we focus on pressure conditions and nozzle shapes. In general, quenching distance reduces as pressure of combustion chamber increases, causing flashback from boundary layer near wall. The flashback regime for reference and modified candidate configurations can broadly appear with increasing combustion chamber pressure. The later one can improve flashback-resist by compensating flow velocity at wall. Also, improved wall flow velocity profile of suggested contraction nozzle prevents entire flashback but causes local flashback at nozzle exit.

초고온가스로를 이용한 원자력수소생산 기술개발 (Nuclear Hydrogen Production Technology Development Using Very High Temperature Reactor)

  • 김용완;김응선;이기영;김민환
    • 대한기계학회논문집 C: 기술과 교육
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    • 제3권4호
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    • pp.299-305
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    • 2015
  • 미래에너지의 해법으로 원자력에너지를 이용한 물분해 수소생산시스템의 핵심기술을 개발하였다. 안전성을 보장할 수 있는 제4세대 원자로인 초고온가스로의 고열을 이용하여 황요오드 열화학적인 방법으로 물을 분해하여 수소를 생산하는 기술이다. 원자력수소생산 핵심기술은 초고온에서의 열을 공급하는 것을 모사하는 초고온 실험기술, 초고온가스로의 안전성을 모사하는 연구, 초고온가스로의 노심과 안전성을 해석할 수 있는 도구의 개발, 초고온가스로에 사용하는 연료제조기술, 물을 분해하여 열화학적인 방법으로 수소를 생산하는 기술로 구성된다. 원자력수소생산에 필요한 핵심기술을 개발하고 실험실 규모로 입증하였으며, 대규모 실용화를 위해서 선결되어할 미완성 기술을 제시하였다. 본 기술은 제4세대 원자로개발 국제공동연구로 수행한 기술로서 향후 미래의 원자로 기술이다.

Hydrogen Generation by Electrical Discharge Through Metal / Water System

  • Park, Yong-Man;Kang, Goo-Jin;Cha, Suk-Yal;Lee, Woong-Moo
    • 에너지공학
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    • 제5권2호
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    • pp.198-202
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    • 1996
  • Reactive metals like aluminum generate hydrogen gas when it reacts with water. Aluminum, despite its high chemical affinity with water, cannot continue the reaction due to the passive oxide layers formed on its surface. When the reaction is assisted by electrical energy dissipation in the form of discharge, the reaction is more likely to be sustained. In this report, some preliminary experimental results are presented regarding the hydrogen generation based on this scheme.

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CdS-ZnS 광촉매를 이용한 물의 광전기 분해에 의한 수소 발생 (Hydrogen Generation from Water Using CdS-ZnS Photocatalysts)

  • 허귀석
    • 한국수소및신에너지학회논문집
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    • 제1권1호
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    • pp.9-14
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    • 1989
  • Mixed photocatalyst containing cadmium sulfide and zinc sulfide was prepared on silica gel powder and Nafion film. Photo-irradiation of aqueous mixture containing the photocatalysis generated hydrogen by water cleavage reaction. Use of sodium sulfide as sacrificial reagent help the photo-reaction. Evolution of the hydrogen was measured by gas chromatographic analysis. Composition of the catalyst was determined by atomic absorption spectrophotometer. 0.2 mL of of hydrogen was generated per hour. The maximun catalytic activity was obtained after 8-12 hours later. Hydrogen generation efficiency by the two different catalytic system was compared and showed that the Nafion-based catalyst is more efficient than the silicagel-based catalyst for the photoreaction.

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