• Title/Summary/Keyword: 용융에너지

검색결과 340건 처리시간 0.026초

핫프레스 공정 기반 CF-PEKK 복합재의 근적외선 고속가열에 의한 열적 열화 반응의 메커니즘 분석 (Analysis of Thermal Degradation Mechanism by Infrared High-speed Heating of CF-PEKK Composites in Hot Press Forming)

  • 이교문;박수정;박예림;박성재;김윤해
    • Composites Research
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    • 제35권2호
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    • pp.93-97
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    • 2022
  • 열가소성 복합재의 핫프레스 성형공정에서 근적외선 가열의 적용은 소재를 성형온도까지 고속가열함으로써 공정 전체의 생산성을 확보할 수 있으나, 고에너지, 높은 성형온도, 고속가열에 의해 소재의 열화가 발생하여 재용융 성능 등의 소재 특성이 저하될 수 있다. 이에 본 연구는 고성능 항공소재로 활발히 연구개발되고 있는 Carbon fiber reinforced Polyetherketoneketone(CF/PEKK) 복합재에 적합한 핫프레스 성형공정의 최적화된 공정조건을 확립하기 위하여 근적외선 고속가열을 적용하였을 때, CF/PEKK 복합재에서 발생할 수 있는 열화 메커니즘과 그 특성을 형태학적, 열적 특성 및 기계적 성능 시험을 통해 평가하였다. 열화 반응에 따른 메커니즘 규명은 광학현미경을 활용하여 PEKK의 결정구조의 형태학적 조사를 기반으로 분석하였다. 그 결과, 열화가 진행됨에 따라 구결정의 크기가 감소하며 최종적으로 완전 열화 시 구결정이 소멸되는 것을 확인하였다. 열적 특성은 용융온도, 결정화온도, 발열량이 열화가 진행됨에 따라 감소하는 경향이 관찰되며, 460℃ 장시간 노출에서 결정구조가 소멸된 것을 확인하였다. 랩전단강도(Lap shear strength)시험 결과, 열화된 표면에서는 낮은 접합강도가 관찰되며, 접합면 분석에서 특정 면에서는 열에 의한 용융 특성이 나타나지 않았다. 결론적으로 CF/PEKK 복합재의 근적외선 고속가열 적용에 있어 특정 온도에서 열화 진행되며, 이에 구결정의 형태학적 변화와 열가소성 소재의 재용융 특성의 저하를 확인하였다.

연료전지 기반 에너지저장 시스템의 환경 전과정평가 및 에너지 효율성 분석 (Life Cycle Assessment (LCA) and Energy Efficiency Analysis of Fuel Cell Based Energy Storage System (ESS))

  • 김형석;홍석진;허탁
    • 한국수소및신에너지학회논문집
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    • 제28권2호
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    • pp.156-165
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    • 2017
  • This study quantitatively assessed the environmental impacts of fuel cell (FC) systems by performing life cycle assessment (LCA) and analyzed their energy efficiencies based on energy return on investment (EROI) and electrical energy stored on investment (ESOI). Molten carbonate fuel cell (MCFC) system and polymer electrolyte membrane fuel cell (PEMFC) system were selected as the fuel cell systems. Five different paths to produce hydrogen ($H_2$) as fuel such as natural gas steam reforming (NGSR), centralized naptha SR (NSR(C)), NSR station (NSR(S)), liquified petroleum gas SR (LPGSR), water electrolysis (WE) were each applied to the FCs. The environmental impacts and the energy efficiencies of the FCs were compared with rechargeable batteries such as $LiFePO_4$ (LFP) and Nickel-metal hydride (Ni-MH). The LCA results show that MCFC_NSR(C) and PEMFC_NSR(C) have the lowest global warming potential (GWP) with 6.23E-02 kg $CO_2$ eq./MJ electricity and 6.84E-02 kg $CO_2$ eq./MJ electricity, respectively. For the impact category of abiotic resource depletion potential (ADP), MCFC_NGSR(S) and PEMFC_NGSR(S) show the lowest impacts of 7.42E-01 g Sb eq./MJ electricity and 7.19E-01 g Sb eq./MJ electricity, respectively. And, the energy efficiencies of the FCs are higher than those of the rechargeable batteries except for the case of hydrogen produced by WE.

외열킬른형 열분해용융시설의 N2O 배출계수 개발 (The Development of N2O Emission Factor at Killn Type Pyrolysis Melting Facility)

  • 윤현기;이대겸;조창상;강성민;윤영중;전영재;전의찬
    • 한국기후변화학회지
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    • 제8권3호
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    • pp.231-237
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    • 2017
  • In this study, the $N_2O$ emission factor of the facility was developed by measuring the kiln type pyrolysis melting facility. This used PAS (Photoacoustic Spectroscopy) method and measured the $N_2O$ emission concentration. From March 2016 to April 2016, it was measured over a total of two times and $N_2O$ concentrations were measured continuously for 24 hours using a 24 hour continuous measuring instrument (LSE-4405). The measured $N_2O$ emission concentration of the pyrolysis melting facility was 0.263 ppm on average and the emission concentration distribution in the range of 0.013~0.733 ppm was obtained. Therefore, the $N_2O$ emission factor of the kiln-type pyrolysis melting facility was estimated to be $0.829gN_2O/ton$-Waste. As a result of comparing the $N_2O$ emission factor of the thermal kiln type pyrolysis melting facility and the previous study, previous studies were about 18 times higher. It is estimated that this is due to the difference of furnace temperature, oxygen concentration and denitrification facilities. It is considered that the study of the emission factor of pyrolysis melting facility is an important factor in improving the credibility of greenhouse gas inventory in waste incineration sector.

교차류형 100W급 용융탄산염 연료전지 스택 장기운전평가 (Evaluation of Long Term Operation of Cross-flow Molten Carbonate Fuel Cell Stack)

  • 임희천;설진호;류철성;이창우;홍성안
    • 한국수소및신에너지학회논문집
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    • 제6권2호
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    • pp.53-63
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    • 1995
  • 차세대의 새로운 발전방식인 용융탄산염형 연료전지 시스템개발 사업중 실용 스택개발을 위하여 전극유효연적이 $100cm^2$ 인 단위전지를 10단 적층한 Cross Flow형 MCFC스택을 제작하고 2성능측정설비를 구성하여 장기운전시험을 실시하였다 연료로는 $H_2/CO_2/H_2O$의 비율을 72%/18%/10% 로 조성한 가스를 이용하고 산화제가스로는 $O_2/CO_2$$Air/CO_2$ 비율이 33%/67%, 70%/30%가 되는 가스를 이용하여 운전할때의 초기성능 및 15A($150mA/cm^2$) 정부하 상태에서의 장기운전시험시의 전압 강하율을 조사하였다. 운전시간 310시간이 경과된 후의 스택전압은 8.39V이었고 이때의 출력은 125.8W를 보여주었다. 한편 1845시간이 경과한후 공기를 산화제로 이용하는 경우 전압은 6.95V로서 출력 104W를 나타내고 있다. 초기성능치에 의한 에너지 변환효율은 이용율이 40%인 경우 29.65%이었고 80%로 증가하는 경우 약 51.5%가 된다. 1840시간의 경과한때 까지의 전압 강하율은 약 52.4mV/1000hr로서 이전의 스택보다는 전압강하율이 감소되고 있으며 스택의 성능 저하의 주요한 요인은 개회로 전압의 저하로 내부단락동에서 기인하는 것으로 여겨진다. 또한 장기운전사 스택내부에서의 단위전지 전압분포가 균일하지 않음을 알 수 있어 이에 대한 개선을 필요로 한다.

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태양열 발전을 위한 고온 축열 물질의 열전달 특성 (Heat Transfer Characteristics of High Temperature molten salt storage for Solar Thermal Power Generation)

  • ;김기만;한귀영;서태범;강용혁
    • 한국태양에너지학회 논문집
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    • 제27권3호
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    • pp.63-69
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    • 2007
  • The heat transfer characteristics of inorganic salt for high temperature heat storage material of solar power system were examined. The inorganic salts employed in this study was a mixture of $NaNO_3$ and $KNO_3$ and the operating temperature range was determined by measuring the melting temperature with DSC and by measuring the thermal decomposition temperature with TGA. The heat transfer characteristics was qualitatively obtained in terms of temperature profiles of salt in the tanks during the heat storage and heat release process as a function of steam flow rates, steam inlet temperature and the inlet position of steam. The effects of steam flow rates and inlet temperature of steam were experimentally determined and the effect of natural convection was observed due to significant density difference with temperature.

MCFC 배가스용 촉매연소기 연소특성에 관한 연구 (A Study on the Combustion Characteristics of MCFC Offgas Catalytic Combustors)

  • 이상민;이연화;안국영;박인욱
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.132.1-132.1
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    • 2010
  • Anode off-gas of high temperature fuel cells such as MCFC still contain combustible components such as hydrogen, carbon monoxide and hydrocarbon. Thus, it's very important to fully burn anode off-gas and use the generated heat in order to increase system efficiency. In the present study, catalytic combustors have been applied to high temperature MCFC system 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 has been focused on the experimental investigation on the combustion characteristics of multiple commercial catalysts having different structures and compositions. In order to determine the design conditions of the catalytic combustor, parameters such as inlet temperature, space velocity and excess air ratio have been varied and optimized for combustor design. Results show that $H_2$ in off-gas assists $CH_4$ combustion in a way that it decreases minimum inlet temperature limit and increases maximum space velocity while keeping high fuel conversion efficiency.

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일방향 응고시 온도 구배에 의한 다결정 실리콘 정련 특성 (The Characteristic Refinement of Poly-Si by Uni-directional Solidification with Thermal Gradient)

  • 장은수;류준일;박동호;문병문;류태우
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.59.2-59.2
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    • 2010
  • 결정형 태양 전지의 보급화를 위하여 고순도 실리콘을 저렴하게 제조할 수 있는 기술 개발이 필요하다. 본 연구에서는 고순도 실리콘을 경제적으로 제조하기 위하여 대역 정제에 의한 일방향성 응고법을 이용한 정련 연구를 진행하였으며, 응고 속도와 고 액상의 온도 구배가 정련도에 미치는 영향을 분석 하였다. 본 실험에 사용된 일방향 응고장치는 실리콘 용탕이 장입된 도가니 하부의 열 교환기를 통한 냉각에 의해 용탕 하부에서 상부 방향으로의 일방향성 응고가 진행되며, 응고 진행시 용탕의 흔들림에 의한 정련능의 감소를 방지하기 위해 가열 영역이 이동하는 Stober 공정을 채택하였다. 가열 영역은 실리콘 용융을 위한 상부 가열 영역과 응고 진행시 응고부의 온도 제어를 위한 하부 가열 영역으로 구성되어 있으며, 두 가열 영역의 온도 제어를 통해 응고중인 실리콘의 고 액상의 온도 구배를 조절하였다. 일방향 응고에 의한 정련법에서 고 액상의 온도 구배가 증가할수록 2차 수지상의 발달이 감소하고, 주상정의 수지상 형태를 유지하게 되어 고 액 공존영역에서 액상 영역으로의 확산이 원활하게 이루어져 분배계수를 이용한 정련도가 좋아지게 되며, ICP 분석을 통해 온도 구배의 증가에 따라 정련능이 증가하는 양상을 확인 할 수 있었다. 고 액상의 온도 구배의 조절을 통한 공정 시간 대비 정련도의 향상을 통해 결정형 태양전지의 생산성의 증가를 통한 저가화를 이룰 수 있을 것이다.

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MCFC 전략제품 개발 (Development of new MCFC application products)

  • 황정태
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.129.1-129.1
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    • 2010
  • Since the commencement of the fuel cell business in 2007, POSCO POWER has been the major supplier of the MCFC (Molten Carbonate Fuel Cell), which is the most commercialized stationary fuel cell system in the world. With its quite, yet active movement, more than 20MW MCFC systems have been installed and are operating in Korea. While trying to localize the components and set up a firm supply chain in Korea to provide more reliable and cost-competitive products to its customers, POSCO POWER is also devoting itself to developing new MCFC application products. One such product is a back-up power system, in which a back-up algorithm is embedded to the present system so that the product can work as a back-up generator in case of grid failure. The technology to enhance load following capability of a stack module is also being developed with the back-up algorithm. Another example is a building application, the goal being to make the present Sub-MW product suitable for urban area. For this, downsizing and modularization are the main R&D scope. The project for developing ship service fuel cell for APU application will launch soon as well. In the project, a system which can operate in marine environment, and reforming technology for liquid logistic fuel will be developed.

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3MW급 MCFC용 가습기 개발 (Develolpment of Heat Exchanger for the Humidifier of 3MW MCFC)

  • 김선화;오용민;김재식;이재준
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 추계학술대회 초록집
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    • pp.88.1-88.1
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    • 2010
  • In recent days, the study for the renewable energy is required to supplement traditional energy source. One of the renewable energy of Fuel Cell is classified according to the electrolytes. It is the MCFC (Molten Carbonate Fuel Cell) for this study. One of the equipments of the heat exchangers is important component for efficiency and cost. In MCFC system, several heat exchangers are used according to the application. It is named for the humidifier because it is to preheat the fuel and water so that a reactor will convert some of the incoming fuel to hydrogen. Then, hot side fluid service is used the exhausted gas from the fuel cell and cold side fluid service is the fuel and water. The operation temperature range is about 25~500 Celsius Degree. This heat exchanger has the problems of heat transfer considering to multiphase fluid and phase changing. So it is necessary to analyze the heat transfer characteristics and to propose the reasonable design methodology for the humidifier. In this study, the thermal characteristic for the humidifier is estimated by using commercial tool of heat exchanger design and rating. And this study provides the testing methodology and presents the results for test facility of fabrication and for testing.

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100 kW급 용융탄산염 연료전지 발전시스템 개발

  • 임희천;김도형;서혜경;박성연;안교상
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2005년도 제17회 워크샵 및 추계학술대회
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    • pp.140-148
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    • 2005
  • The molten carbonate fuel cell (MCFC) is endowed with the high potential especially in future electric power generation industry by its own outstanding characteristics. KEPCO (KEPRI) started a 100 kW MCFC system development program in 1993 and has been executed 100kW system develpilot plant successfully completed first phaseopment by 2005 on the basis of successful results of 25kW system development. In this program, the components and mechanical structure for 100 kW stack and system construction were completed on last year and now system pre - commissioning was being executed. A 100 kW MCFC power plant was constructed at the site of Boryeong Thermal Power Plant. A 100 kW MCFC system has characterized as a high pressure operation mode, CO2 recycle, and externally reforming power generation system. The 100 kW MCFC system consisted with stacks which was made by two 50 kW sub-stacks, 90 cells with 6,000 cm2 active area and BOP including a reformer, a recycle blower, a catalytic burner, an inverter, and etc. The system has been operated from 13th of September on this year and produced 50 kW AC under atmospheric pressure condition and expected to operate by the end of this year.

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