• 제목/요약/키워드: High temperature polymer electrolyte fuel cell

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술폰화된 비스(4-플루오로페닐) 페닐포스핀옥사이드를 포함한 연료전지용 고분자 전해질막의 합성과 특성분석 (Synthesis and characterization of polymer electrolyte membrane for fuel cell including sulfonated bis (4-fluorophenyl) phenylphosphine oxide)

  • 유은실;남기석;유동진
    • 에너지공학
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    • 제25권4호
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    • pp.176-183
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    • 2016
  • 본 연구는 연료전지용 고분자 전해질 막의 성능 향상에 관한 것으로서 연료전지를 구동하기 위해 요구되는 전해질 막의 특성에 대하여 연구하였다. Bis(4-fluorophenyl)phenyl phosphine oxide를 발연 황산을 이용하여 양이온($H^+$)을 전도할 수 있는 술폰산기를 치환시켜 주었다. 친수성 올리고머와 소수성 올리고머를 각각 합성하고, 블록 공중합체는 친수성 올리고머와 소수성 올리고머를 방향족 친핵성 치환반응에 의해 제조하였다. 블록 공중합체의 구조 및 술폰화도(DS)는 $^1H$-NMR, 겔 침투 크로마토그래피 (GPC) 분석에 의해 확인하였다. 열적 안정성은 열중량 분석(TGA)을 통해 확인하였으며, 본 연구에서 제조한 블록 코폴리머는 $200^{\circ}C$ 이상의 온도 조건에서 내열성을 나타내었다. 또한, 이온전도성은 연료전지 전해질 막으로서의 성능을 증명하기 위해 이온전도도 시험을 수행하였다. 제조한 막은 온도가 증가할수록 발달된 이온클러스터의 영향으로 최대 58 mS/cm의 이온전도성을 보였다. 블록 코폴리머의 미세 상 분리의 특성은 AFM분석을 통해 확인하였다.

Improved Reduction of Carbon Monoxide by Highly Efficient Catalytic Shift for Fuel Cell Applications

  • Youn, M.J.;Chun, Y.N.
    • Environmental Engineering Research
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    • 제13권4호
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    • pp.192-196
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    • 2008
  • The generation of high purity hydrogen from reformed hydrocarbon fuels, or syngas, is essential for efficient operation of the fuel cell (PEMFC, Polymer Electrolyte Membrane Fuel Cell). Usually, major components of reformed gas are $H_2$, CO, $CO_2$ and $H_2O$. Especially a major component, CO poisons the electrode of fuel cells. The water gas shifter (WGS) that shifts CO to $CO_2$ and simultaneously produces $H_2$, was developed to a two stage catalytic conversion process involving a high temperature shifter (HTS) and a low temperature shifter (LTS). Also, experiments were carried out to reduce the carbon monoxide up to $3{\sim}4%$ in the HTS and lower than 5,000 ppm via the LTS.

운전조건에 따른 고분자 직접메탄올 연료전지 성능 특성 (Performance Characterization of Polymer Electrolyte Membrane Direct Methanol Fuel Cell on the Various Operation Conditions)

  • 정두환;이창형;신동열
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1996년도 하계학술대회 논문집 C
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    • pp.1409-1411
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    • 1996
  • Direct Methanol Fuel Cell(DMFC) using Pt-Ru electrocatlayst and Nafion menbrane can provide high performance if operating conditions are well designed. In this study, operating temperature, pressure, and fuel flow rate were changed to obtain optimum operating conditions of DHFC single cell. Performance of DMFC were increased by the increase of operating temperature. The concentration of fuel methanol was 2.0M $CH_{3}OH$ and pressure difference of cathode and anode was 2 atm were showed maximum performance of DMFC single cell with showing the current density of 160 $mA/cm^2$ at 0.2V cell voltage.

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100℃ 이상에서 작동하는 고분자 전해질형 연료전지용 나피온/Mordenite 복합체 막의 새로운 제조 방법 (A New Preparation Method of Nafion/Mordenite Composite Membrane for Polymer Electrolyte Membrane Fuel Cell above 100℃ Operation)

  • 곽상희;양태현;김창수;윤기현
    • 한국세라믹학회지
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    • 제40권2호
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    • pp.159-166
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    • 2003
  • 퍼플루오르설포닐 플로라이드 나피온 레진과 mordenite를 이용하여 $100^{\circ}C$ 이상의 고온에서 작동하는 고분자 전해질형 연료건지용 전해질 막을 제조하고, 물리적 특성, proton전도도 및 단위 전지의 성능을 측정하였다. 나피온/mordenite복합체 막은 나피온 레진을 용융한 후, mordenite를 무게별로 첨가하여 제조하였다. 고온 영역에서 proton 전도도를 측정한 결과, mordenite 함량이 증가할수록 층상 구조를 갖는 mordenite내에 존재하는 층간수의 느린 탈수 속도 때문에 proton 전도도는 증가하였다. 또한, 단위 전지 성능 측정 결과로부터, $130^{\circ}C$의 작동 온도에서 l0wt% mordenite를 함유하고 있는 복합체 막이 전체 영역에 걸쳐 가장 높은 성능을 보임을 알 수 있었다. 이러한 결과는 같은 조건에서. l0wt% mordenite가 함유된 복합체 막 내부에 존재하고 있는 수분이 다른 조성의 막보다 더 많이 존재하게 되어, 복합체 막의 이온 전도도를 유지하기 때문이다. 따라서, 나피온/mordenite복합체 막은 $100^{\circ}C$이상에서 작동하는 고분자 전해질형 연료전지용 전해질 막으로서 적합하다고 생각된다.

Electrospun Poly(Ether Sulfone) Membranes Impregnated with Nafion for High-Temperature Polymer Electrolyte Membrane Fuel Cells

  • Lee, Hong Yeon;Hwang, Hyung Kwon;Lee, Jin Goo;Jeon, Yukwon;Park, Dae-Hwan;Kim, Jong Hak;Shul, Yong-Gun
    • 전기화학회지
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    • 제19권1호
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    • pp.9-13
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    • 2016
  • Electrospun poly(ether sulfone) (PES) membrane impregnated with Nafion (PES-N) have been developed for high-temperature polymer-electrolyte membrane fuel cell (HT-PEMFC). The PES-N obtains highly thermal stability up to $430^{\circ}C$, which is higher than that of the commercial Nafion 212. The PES-N membrane shows a good proton conductivity of about $10^{-2}S\;cm^{-1}$ in a temperature range from $75^{\circ}C$ to $120^{\circ}C$. The membrane-electrode assembly (MEA) with the PES-N membrane exhibits a current density of $1.697A\;cm^{-2}$ at $75^{\circ}C$, and $0.813A\;cm^{-2}$ at $110^{\circ}C$ when the applied voltage is 0.6 V, whereas the MEA with the Nafion 212 membrane shows the current density of $0.647Acm^{-2}$ at $110^{\circ}C$. The results suggest that the PES-N can be a good candidate for a polymer electrolyte membrane of the HT-PEMFC.

Aspen Plus 프로그램에 의한 장갑차량용 고온고분자전해질 연료전지 기반 보조전원장치 성능 시뮬레이션 분석 (Analysis for Performance of the HT-PEFC based Auxiliary Power Unit by Aspen Plus Software)

  • 유민규;박지일;권혁상
    • 한국군사과학기술학회지
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    • 제19권2호
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    • pp.211-217
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    • 2016
  • The fuel cell based auxiliary power unit (APU) is promising for power source of armed vehicles due to its silence and high efficiency. Especially, the on board hydrogen generation and fed to fuel cell system was core technology of this power system. In this study, we analyzed the performance of the Auto thermal reactor (ATR) that produce the hydrogen from the fuel, integrated High temperature polymer electrolyte fuel cell (HT-PEFC) by Aspen plus software. The fuel was designed as a n-dodecane for analysis of military fuel (JP-8).

공기공급 조건이 스택성능에 미치는 영향 (The effect of PEMFC stack performance at air supply condition)

  • 박창권;오병수
    • 한국수소및신에너지학회논문집
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    • 제19권3호
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    • pp.232-238
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    • 2008
  • Research has been proceeded on fuel cell which is fueled by hydrogen. Polymer electrolyte membrane fuel cell (PEMFC) is promising power source due to high power density, simple construction and operation at low temperature. But it has problems such as high cost, temperature dependent performance. These problems could be solved by experiment which is useful for analysis and optimization of fuel cell performance and heat management. In this paper, when hydrogen flows constantly at the stoichiometry of ${\xi}=1.6$, the performance of the fuel cell stack was increased and the voltage difference between each cells was decreased according to the increase of air stoichiometry by 2.0, 2.5, 3.0. Therefore, the control of air flow rate in the same gas channel is important to get higher performance. Purpose of this research is to expect operation temperature, flow rate, performance and mass transportation through experiment and to help actual manufacture of PEM fuel cell stack.

연료전지 전극촉매용 팔라듐 나노입자 형상 제어 및 산소환원반응 성능 평가 (Preparation of Shape-Controlled Palladium Nanoparticles for Electrocatalysts and Their Performance Evaluation for Oxygen Reduction Reaction)

  • 김경희;이정돈;이효준;박석희;임성대;정남기;박구곤
    • 한국수소및신에너지학회논문집
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    • 제29권5호
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    • pp.450-457
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    • 2018
  • To design the practical core-shell electrocatalysts, combination of core and shell materials is important to meet catalytic activity and durability target. In general, Pd is considered as a good core material due to its best activity caused by strain/ligand effect. Preparing Pd nanoparticles can be a starting point in fabricating core-shell type electrocatalysts, much simplified Pd preparing process is suggested by using carbon monoxide (CO) as a reducing agent and/or capping agent. The solvent composition and reaction temperature can control to nanosheet, tetrahedron, and sphere without using additional stabilizer. Among them, Pd nanosheet which has mainly (111) plane showed about 3 times higher electrocatalytic activity for oxygen reduction reaction (ORR) to the spherical Pd nanoparticles. The enhanced ORR activity of Pd nanosheets can be attributed to the exposure of Pd (111) surface and the high electrochemical surface area. Therefore, we demonstrated that the shape of Pd nanomaterials is easily controlled via a facile reduction method using CO, and (111) plane-oriented Pd nanosheets can be a promising ORR catalysts and core material for polymer electrolyte fuel cells (PEFCs).

5kW 급 주택용 고분자 연료전지 시스템 (Development of the 5kW Class Polymer Electrolyte Fuel Cell System for Residential Power Generation)

  • 양태현;박구곤;윤영기;이원용;윤왕래;김창수
    • 한국수소및신에너지학회논문집
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    • 제14권1호
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    • pp.35-45
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    • 2003
  • Polymer electrolyte fuel cells(PEFC) have been considered to be a suitable candidate for residential, portable and mobile applications, due to their high efficiency and power density, even at low operating temperature. KIER developed a 5kW class PEFC system for residential application and operated the system for over 1,000 hours. To develop a 5kW PEFC system, performance of a cell was improved through successive tests of single cell of small and large area. Fabrication of three 2,5 kW class stacks, design and fabrication of natural gas reformer, design of auxiliary equipments such as DC/DC converter, DC/AC inverter and humidifying units were carried out along with integration of components, operation and evaluation of total system. During the development period from 1999 to 2001, MEA(membrane electrode assembly) fabrication technologies, design and fabrication technologies for separators, stacking technologies and so on were developed, thereby providing basis for developing stacks of higher efficiency and power density in the future. Experience of development of natural gas reformer opened possibilities to use various kinds of fuels. Main results obtained from the development of a 5kW class PEFC system for residential application are summarized.

공급유량 및 스택온도의 변이에 따른 200W급 PEM형 연료전지의 전기적 성능특성 (Electrical Performance Characteristics of 200W PEM-Type Fuel Cells with Variations on Mass Flow Rate and Stack Temperature)

  • 홍경진;박세준;최용성;이경섭
    • 전기학회논문지P
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    • 제58권4호
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    • pp.563-567
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    • 2009
  • The polymer electrolyte membrane fuel cell(PEMFC) with the advantages of low-operating temperature, high current density, low cost and volume, fast start-up ability, and suitability for discontinuous operation becomes the most reasonable and attractive power system for transportation vehicle and micro-grid power plant in a household. 200W PEM-type FCs system was integrated by this study, then the electrical characteristics and diagnosis of the fuel cell were analyzed with variations on mass flow rate and stack temperature. The ranges of the variations are 1~8L/min on $H_2$ volume and $20{\sim}70^{\circ}C$ on stack temperature.