• 제목/요약/키워드: Stationary fuel cell

검색결과 44건 처리시간 0.03초

수소연료전지 백금촉매 및 MEA 장기내구성 평가 방법의 비교 (A Comprehensive Review of PEMFC Durability Test Protocol of Pt Catalyst and MEA)

  • 함가현;정선기;이재영
    • 공업화학
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    • 제30권6호
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    • pp.659-666
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    • 2019
  • 고분자전해질 수소연료전지는 수소와 산소의 전기화학적 반응을 이용하여 전기를 자발적으로 생산하며, 높은 전류밀도와 비교적 낮은 구동온도의 장점을 가져 화석연료를 대체할 미래 친환경 화학에너지 변환 장치이다. 현재 연료전지는 수소전기차를 중심으로 가정용 연료전지, 수소연료전지 발전소 등 다양한 산업에서 활용 중에 있다. 하지만 연료전지 산업의 지속적인 성장을 위해서는 여러 기술적인 문제가 보완되어야 하며, 그 중에서도 연료전지 각 구성요소의 장기 내구성을 필수적으로 확보해야 한다. 특히 연료전지의 연료극과 공기극에서 사용되는 탄소담지 백금촉매는 연료 전지 운전조건에 따라 다양한 기작을 통하여 성능 감소가 일어난다. 이에 연료전지용 촉매의 내구성 파악을 위한 가속테스트법이 다양하게 제시되고 있다. 본 논문에서는 연료전지용 백금 기반 촉매의 성능 감소 기작을 설명하고, 지금까지 제시된 가속스트레스 시험을 통한 내구성 평가 방법에 대해 비교하고자 한다.

NI계 촉매상에서 글리세롤의 수증기 개질반응(Steam Reforming)에 의한 수소제조 연구 (Studies on the Production of Hydrogen by the Steam Reforming of Glycerol Over NI Based Catalysts)

  • 허은;문동주
    • 한국수소및신에너지학회논문집
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    • 제21권6호
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    • pp.493-499
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    • 2010
  • Steam reforming (SR) of glycerol, a main by-product of manufacturing process of bio-diesel, for the production of hydrogen was investigated over the Ni-based catalysts. The Ni-based catalysts were prepared by an impregnation method, and characterized by $N_2$ physisorption, CO chemisorption, XRD and TEM techniques. It was found that the Ni/${\gamma}-Al_2O_3$ catalyst showed higher conversion and catalytic stability for the carbon formation than the other catalysts in the steam reforming of glycerol under the tested conditions. The results suggest that the steam reforming of glycerol over modified Ni/${\gamma}-Al_2O_3$ catalyst minimized carbon formation can be applied in hydrogen station for fuel-cell powered vehicles and fuel processor for stationary and portable fuel cells.

Nanostructured Polymer Electrolytes for Li-Batteries and Fuel Cells

  • 박문정
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2012년도 춘계학술발표대회
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    • pp.71.2-71.2
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    • 2012
  • There are rising demands for developing more efficient energy materials to stem the depletion of fossil fuels, which have prompted significant research efforts on proton exchange fuel cells (PEFCs) and lithium ion batteries (LIBs). To date, both PEFCs and LIBs are being widely developed to power small electronics, however, their utilization to medium-large sized electric power resources such as vehicle and stationary energy storage systems still appears distant. These technologies increasingly rely upon polymer electrolyte membranes (PEMs) that transport ions from the anode to the cathode to balance the flow of electrons in an external circuit, and therefore play a central role in determining the efficiency of the devices; as ion transport is a kinetic bottleneck compared to electrical conductivity, enormous efforts have been devoted to improving the transport properties of PEMs. In present study, we carried out an in-depth analysis of the morphology effects on transport properties of PEMs. How parameters such as self-assembled nanostructures, domain sizes, and domain orientations affect conductivities of PEMs will be presented.

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고온형 연료전지 열관리를 위한 배기가스 연소기 성능시험 (Performance Analysis of Off-Gas/Syngas Combustor for Thermal Management of High Temperature Fuel Cell System)

  • 이상민;이연화;안국영;유상석
    • 한국수소및신에너지학회논문집
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    • 제21권3호
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    • pp.193-200
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    • 2010
  • Anode off-gas of high temperature fuel cell still contains combustible components such as hydrogen, carbon monoxide and hydrocarbon. In this study, a catalytic combustor has been applied to the high temperature fuel cell so that the combustion of anode-off gas can be boosted up. Since the performance of catalytic combustor directly depends on the combustion catalyst, this study is designed to perform the experimental investigation on the combustion characteristics of the three commercial catalysts with a different composition. Screening tests with three catalysts are preceded before the performance examination since it is necessary to determine the most suitable catalyst for design configuration of the catalytic combustor. The performance analysis shows that methane conversion rate strongly depends on gas hourly space velocity (GHSV) as well as inlet gas temperature. Additionally, the GSHV optimization results show that the optimum GHSV will be in the range between 18,000 $hr^{-1}$ and 36,000 $hr^{-1}$. It is also shown that the minimum inlet temperature of catalytic reaction of methane is from $100^{\circ}C$ to $150^{\circ}C$.

Performances of Metallic (sole, composite) and Non-Metallic Anodes to Harness Power in Sediment Microbial Fuel Cells

  • Haque, Niamul;Cho, Daechul;Kwon, Sunghyun
    • Environmental Engineering Research
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    • 제19권4호
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    • pp.363-367
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    • 2014
  • One chambered sediment microbial fuel cell (SMFC) was equipped with Fe, brass (Cu/Zn), Fe/Zn, Cu, Cu/carbon cloth and graphite felt anode. Graphite felt was used as common cathode. The SMFC was membrane-less and mediator-less as well. Order of anodic performance on the basis of power density was Fe/Zn ($6.90Wm^{-2}$) > Fe ($6.03Wm^{-2}$) > Cu/carbon cloth ($2.13Wm^{-2}$) > Cu ($1.13Wm^{-2}$) > brass ($Cu/Zn=0.24Wm^{-2}$) > graphite felt ($0.10Wm^{-2}$). Fe/Zn composite anode have twisted 6.73% more power than Fe alone, Cu/carbon cloth boosted power production by 65%, and brass (Cu/Zn) produced 65% less power than Cu alone. Graphite felt have shown the lowest electricity generation because of its poor galvanic potential. The estuarine sediment served as supplier of oxidants or electron producing microbial flora, which evoked electrons via a complicated direct microbial electron transfer mechanism or making biofilm, respectively. Oxidation reduction was kept to be stationary over time except at the very initial period (mostly for sediment positioning) at anodes. Based on these findings, cost effective and efficient anodic material can be suggested for better SMFC configurations and stimulate towards practical value and application.

건물용 고체산화물연료전지 스택 안전성능평가 연구 (Study on safety performance evaluation of stationary SOFC stack)

  • 박태성;이은경;이승국
    • 에너지공학
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    • 제27권4호
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    • pp.1-12
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    • 2018
  • SOFC (Solid Oxide Fuel Cell) stack 안전성능 평가항목 및 평가절차 도출을 위하여 국내 외 연료전지 관련 규격들을 분석하였으며, 분석을 통해 도출된 시험항목으로 SOFC stack 안전성능 시험을 실시하였다. 시험에 사용된 SOFC stack은 (주)미코사(社)에서 제작된 음극 지지형 2 cell stack(활성면적: $110.25cm^2/cell$)이고, 평가장치는 자체 제작한 SOFC stack 안전성능 평가 장치를 사용하였다. 기밀성능 시험, 전류전압특성 시험, 정격출력 시험 및 부하변동 시험을 실시하였으며, 그 결과 해당 stack의 최대출력은 65.6 W(1.41 V, 46.5 A, $422mA/cm^2$), 정격출력은 62.3 W(1.57 V, 40 A, $363mA/cm^2$)로 나타났으며 가스누출이 없음을 확인하였다. 또한, 부하변동에 대하여 2초 이내에 안정적으로 출력이 유지되는 것을 확인하였다. 이때 운전 온도 $750^{\circ}C$에서 최대부하(40 A) 및 최소부하(8 A)에서의 출력은 각 62 W와 16 W로 측정되었다. 본 연구를 통하여 고체산화물연료전지의 보급화와 안전한 사용 환경을 제공하는데 기여하고자 한다.

가축분뇨를 이용한 미생물연료전지의 농화배양 단계에서 미생물 군집 변화 (Microbial Communities of the Microbial Fuel Cell Using Swine Wastewater in the Enrichment Step with the Lapse of Time)

  • 장재경;홍선화;유영선;이은영;장인섭;강연구;김종구
    • 대한환경공학회지
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    • 제35권12호
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    • pp.973-977
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    • 2013
  • 이 연구는 전기화학적 활성을 갖는 미생물들을 알아내기 위하여 농화배양 단계에서 시간에 따라 미생물연료전지의 미생물 군집 변화를 알아본 것이다. 접종원으로 하수처리장 혐기 소화액와 가축분뇨를 1 : 1로 혼합한 액을 사용하였다. 농화배양 과정에서 미생물 생장곡선에 따라 지체기, 대수성장기 그리고 정지기로 전류발생 패턴을 보면서 구분하였다. 전류가 안정적으로 발생되는 시점을 농화배양이 끝난 시점으로 판단하였으며, 이때 전류는 $0.84{\pm}0.06mA$가 발생되었다. 농화배양이 되어 가는 과정에서 미생물군집 변화를 전기영동(DGGE)에서 확인하여 시간에 따라 새롭게 나타나는 band나 농도가 높아지는 band 17개를 잘라내어 염기서열을 분석하였다. 이 결과 지체기와 대수성장 단계에서는 Clostridium, Rhodocyclaceae, Bacteriodete 그리고 Uncultured bacterium 등이 검출되었고, 정지기에서는 Geobacter sp., Rhodocyclaceae, Candidatus, Nitrospira, Flavobactriaceae, 그리고 Uncultured bacterium 등이 검출되었다. Geobactor의 경우는 이미 전기활성 미생물로 알려져 있는 미생물 종으로 이를 포함하여 이 연구에서 검출된 다른 미생물들 중에도 전기활성이 있는 미생물을 포함하고 있을 것으로 판단된다.

PEM 연료전지용 터보 블로워의 내구성에 관한 실험적 연구 (An Experimental Study on the Durability Test for PEM Fuel Cell Turbo-blower)

  • 이용복;이희섭;정진택
    • 한국자동차공학회논문집
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    • 제16권5호
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    • pp.37-43
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    • 2008
  • The durability test of turbo-blower for PEM fuel cell is very important process of BOP development. It is a major barrier to the commercialization of these systems for stationary and transportation power applications. Commercial viability depends on improving the durability of the air supply system to increase the reliability and to reduce the lifetime cost. In this study, turbo-blower supported by oil-free bearing is introduced as the air supply system used by 80kW proton exchange membrane fuel systems. The turbo-blower is a turbo machine which operates at high speed, so air foil bearings suit their purpose as bearing elements. The impeller of blower was adopted mixed type of centrifugal and axial. So, it has several advantages for variable operating condition. The turbo-blower test results show maximum parasitic power levels below 1.67kW with the 30,000 rpm rotating speed, the flow rate of air has maximum 163SCFM(@PR1.1). For proper application of FCV, these have to durability test. This paper describes the experiment for confirming endurance and stability of the turbo-blower for 500 hours.

고분자전해질 연료전지의 환원전극 백금 담지촉매의 백금 담지비에 따른 성능변화 (Effect of Pt amount in the Pt/C for cathode catalyst on the performance of PEMFC)

  • 조용훈;조윤환;박현서;성영은
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 춘계학술대회
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    • pp.107-109
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    • 2006
  • This study focuses on a determination of amount of Pt in the Pt/C for catalysts of polymer electrolyte membrane fuel cells (PEMFC). PEMFC offer low weight and high power density and being considered for automotive and stationary power applications. The PEMFC performance is influenced by several factors, including catalysts and structure of electrode and membrane type. Catalyst of electrode is important factor for PEMFC. One of the obstacles prevent ing polymer electrolyte membrane fuel cells from commercialization is the high cost of noble metals to be used as catalyst, such as platinum To effectively use these metals, they have to be will dispersed to small particles on conductive carbon supports. The optimal amount of Pt in Pt/C for cathode catalyst was investigated by using polarization curves in single cell with $H_2/O_2$ operation.

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