• Title/Summary/Keyword: 메탄올 유량

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A Study on the Effects of Temperature and Flow Rate for DMFC Performance (DMFC에서 온도 및 유량이 성능에 미치는 영향에 관한 연구)

  • Kim, Hong-Gun;Kwac, Lee-Ku;Kang, Young-Woo;Kim, Tae-Jin;Kwak, Sang-Hee;An, Kay-Hyeok;Park, Gyung-Se
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.06a
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    • pp.656-659
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    • 2009
  • 직접메탄올형 연료전지(Direct Methanol Fuel Cell)는 휴대용으로 사용할 수 있는 소형 전원용으로 주로 개발되고 있으며, 다양한 용도로 사용이 가능하다. 하지만 직접메탄올연료전지에서 전해질로 많이 쓰이는 Nafion막은 이를 통한 메탄올 크로스오버(Crossover) 때문에 연료전지의 성능을 제한시키고 있다. 본 연구에서는 Nafion 117를 사용하여 전극 면적 100cm2 의 DFMC용 MEA를 제작하고, 공기 유량을 3ml/mim으로 고정하고, 메탄올 유량을 2,3 ml/min로 각각 공기극와 연료극에 공급하여 온도변화(50, 60, 70, $80^{\circ}C$)에 따른 성능을 확인하였다. DMFC의 적당 반응 온도는 $70^{\circ}C$로 생각되고, 유량은 메탄올 2ml/min, 공기 3ml/min유량 공급시가 성능이 높게 나오는 결과를 얻으나 일정시간 지나면 성능이 메탄올 3ml/min, 공기 3ml/min유량 공급시 보다 성능이 떨어지는 현상이 일어나기 때문에 $70^{\circ}C$ 반응온도에 메탄올 3ml/min, 공기 3ml/min의 유량 공급이 본 논문에서 최적화된 성능을 내는 조건으로 사료된다.

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The Study of Fuel Supply Characteristics of 2W DMFC Module (상온 작동 2W급 직접 메탄올 연료전지 모듈의 연료공급 특성 연구)

  • Yun, Hyo-Jin;Hong, Chul-Ho;Kim, Dong-Jin
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.1158-1159
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    • 2008
  • 본 논문에서는 상온상태에서 2W급 직접 메탄올 연료전지 모듈을 구동하여 연료전지 모듈의 성능 특성을 분석하고자 한다. 상온상태에서 연료극으로 공급하는 메탄올의 농도와 유량을 변화를 시켜 상온에서 최적의 메탄올 농도와 유량을 찾고 공기극에 공기를 공급 하였을 때 와 공기를 공급하지 않았을 때 의 연료전지의 출력을 전자 부하기를 이용하여 부하를 주고 메탄올의 유량을 변화 시켜가면서 비교해보았다.

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Utilization technique of methanol for automobile fuel (자동차 연료로서의 메탄올 이용기술)

  • 김문헌
    • Journal of the korean Society of Automotive Engineers
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    • v.18 no.2
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    • pp.18-28
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    • 1996
  • 메탄올이 자동차 연료로서 유망시 되고 있는 이유는 공급면과 이용면의 두 측면에서 장점을 가지고 있기 때문일 것이다. 공급면에 있어서는 원료가 천연가스나 석탄등 자원이 풍부하다는 점이 다른 연료에 비해 유리하며 특히 천연가스로 부터의 화학용 메탄올 제조기술이 거의 확립되어 있다는 점이다. 이용면에 있어서는 상온에서 운송, 저장 및 유량 제어 측면에서 취급이 비교적 용이하며 메탄올 연료의 특성상 옥탄가가 높고 희박연소한계가 넓어 고압축비 희박연소기관을 실현할 수 있으며, NOx나 매연 발생이 적은 저공해 연료인 점이 장점이다. 본 고에서는 본인의 실험실에서 이루어진 메탄올 연료에 대한 몇가지 실험결과들을 토대로 하여 메탄올 기관에 있어서의 일반적인 특성 및 문제점들에 대하여 소개하고자 한다.

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Study on Methanol Conversion Efficiency and Mass Transfer of Steam-Methanol Reforming on Flow Rate Variation in Curved Channel (곡유로 채널을 가지는 수증기-메탄올 개질기에서 유량 변화에 따른 메탄올 전환율 및 물질 전달에 관한 연구)

  • Jang, Hyun;Park, In Sung;Suh, Jeong Se
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.39 no.3
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    • pp.261-269
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    • 2015
  • In this study, numerical analysis of curved channel steam-methanol reformer was conducted using the computational fluid dynamics (CFD) commercial code STAR-CCM. A pre-numerical analysis of reference model with a cylindrical channel reactor was performed to validate the combustion model of the CFD commercial code. The result of advance validation was in agreement with reference model over 95%. After completing the validation, a curved channel reactor was designed to determine the effects of shape and length of flow path on methanol conversion efficiency and generation of hydrogen. Numerical analysis of the curved-channel reformer was conducted under various flow rate ($10/15/20{\mu}l/min$). As a result, the characteristics of flow and mass transfer were confirmed in the cylindrical channel and curved channel reactor, and useful information about methanol conversion efficiency and hydrogen generation was obtained for various flow rate.

Extraction of Acanthoside-D from Acanthopanax Cortex using Supercritical Carbon Dioxide (초임계 이산화탄소를 이용한 가시오갈피로부터 Acanthoside-D의 추출)

  • 양시중;신재순;강춘형
    • KSBB Journal
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    • v.19 no.4
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    • pp.284-287
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    • 2004
  • The purpose of this study was to find an optimum extraction condition of acanthoside-D from acanthopanax cortex with supercritical carbon dioxide as a solvent. In this effort, effects of the extraction conditions including pressure, temperature and presence or absence of a cosolvent on the extraction efficiency were investigated. The ethanol, water or 50% methanol was used as a cosolvent whilst the operating pressure ranged from 200 bar to 300 bar. The acanthoside-D concentrations were determined by means of HPLC equipped with a UV detector. From the results, it was observed that increase of higher pressure led to the higher extraction efficiency. Further, water was found to be the best cosolvent among the entrainers tested.

The Study for Characteristic of Direct Methanol Fuel Cell in Ambient Temperature (상온 상태에서 직접 메탄올 연료전지의 특성 연구)

  • Yun, Hyo-Jin;Kim, Jeong-Ju;Kim, Dong-Jin
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.10 no.5
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    • pp.955-961
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    • 2009
  • Present, a portable battery have problem that the volume increases according to capacity Increase. Direct Methanol Fuel Cell is alternative by solution plan of this problem. In this paper, the characteristics of DMFC are analyzed by change in concentration and discharge of fuel in natural convection and room temperature condition. According to the analysis result, polarization by delay of diffusion velocity of hydrogen ion appeared in methanol of low concentration. And if have a lot of supplies of methanol, generation power declines by electric cell cooling effect.

High Density Cultivation of Methylobacillus sp. SK1 in Fed-Batch System (Methylobacillus sp. SK1의 고농도 유가배양)

  • 이형춘;이계호김시욱
    • KSBB Journal
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    • v.5 no.3
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    • pp.269-277
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    • 1990
  • Methylobacillus sp. SK1, an obligate methylotroph, was cultivated in a fed-batch culture using DO as a methanol feeding indicator with a micro computer-aided control system. While 2.07g/l of cell density was obtained after 13 hr in the batch culture (initial methanol concentration: 1.0%(v/v)),45.3g/l of cell density was obtained after 17 hr by feeding methanol and metal ions in the fed-batch culture with oxygen supply. The high-density biomass was obtained in short cultuivation time by fed-batch culture with feedback control, and consequently the biomass productivity was significantly increased. It was mainly due to extension of logarithmic growth period by methanol feeding without methanol inhibition and intensive aeration without DO limitation with microcomputer-aided control system.

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A Performance Analysis of a Spark Ignition Engine Using Gasoline, Methanol and M90 by the Thermodynamic Second Law (가솔린, 메탄올, M90 연료를 사용한 전기점화기관에서의 열역학 제 2법칙적 성능해석)

  • Kim, S.S.
    • Journal of Power System Engineering
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    • v.13 no.6
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    • pp.22-28
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    • 2009
  • 열역학 제 2법칙의 관점의 열역학적 가용에너지인 엑서지 해석법을 적용하여 가솔린, 메탄올, M90 연료를 사용한 전기점화 기관의 성능해석을 수행하였다. 열역학적 사이클 해석을 위하여 사이클을 구성하는 각 과정은 열역학적 모델로 단순화하였고, 크랭크 각도에 따른 실린더의 압력과 작동유체를 구성하는 연료, 공기 및 연소생성물의 열역학적 물성 값들을 이용하여 각 과정에서의 엑서지와 손실 일을 계산하였다. 실험데이터는 단기통 전기점화기관을 가솔린, 메탄올과 M90(메탄을 90%+부탄 10%의 혼합연료)을 연료로 WOT(Wide Open Throttle), MBT(Minimum advanced spark timing for Best Torque), 2500rpm 조건으로 운전하여 측정하였다. 계산에 이용한 자료는 실험으로 측정한 크랭크 각도에 따른 연소실의 압력, 흡입공기와 연료유량, 흡입공기 온도, 냉각수 온도와 배출가스 온도 등이다. 이를 이용하여 각 과정에서의 엑서지와 손실 일을 계산하였으며 각 과정에서의 손실 일은 연소과정에서 가장 크며 팽창과정, 배출과정, 압축과정 및 흡입과정 순으로 크게 나타났다.

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Performance of a Molten Carbonate Fuel Cell With Direct Internal Reforming of Methanol (메탄올 내부개질형 용융탄산염 연료전지의 성능)

  • Ha, Myeong Ju;Yoon, Sung Pil;Han, Jonghee;Lim, Tae-Hoon;Kim, Woo Sik;Nam, Suk Woo
    • Clean Technology
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    • v.26 no.4
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    • pp.329-335
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    • 2020
  • Methanol synthesized from renewable hydrogen and captured CO2 has recently attracted great interest as a sustainable energy carrier for large-scale renewable energy storage. In this study, molten carbonate fuel cell's performance was investigated with the direct conversion of methanol into syngas inside the anode chamber of the cell. The internal reforming of methanol may significantly improve system efficiency since the heat generated from the electrochemical reaction can be used directly for the endothermic reforming reaction. The porous Ni-10 wt%Cr anode was sufficient for the methanol steam reforming reaction under the fuel cell operating condition. The direct supply of methanol into the anode chamber resulted in somewhat lower cell performance, especially at high current density. Recycling of the product gas into the anode gas inlet significantly improved the cell performance. The analysis based on material balance revealed that, with increasing current density and gas recycling ratio, the methanol steam reforming reaction rate likewise increased. A methanol conversion more significant than 90% was achieved with gas recycling. The results showed the feasibility of electricity and syngas co-production using the molten carbonate fuel cell. Further research is needed to optimize the fuel cell operating conditions for simultaneous production of electricity and syngas, considering both material and energy balances in the fuel cell.

Operational Characteristics of Methanol Reformer for the Phosphoric Acid Fuel Cell System (인산형 연료전지용 메탄올 연료개질기의 운전 특성)

  • 정두환;신동열;임희천
    • Journal of Energy Engineering
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    • v.2 no.2
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    • pp.200-207
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    • 1993
  • A methanol reformer was designed and fabricated using a CuO-ZnO low temperature shift catalyst, and its operation characteristics have been studied for the phosphoric acid fuel cell (PAFC) power generation system. The type of reactor was annular Methanol was consumed both for heating and for reforming fuel. Contents of carbon monoxide produced from the reformer increased as the reaction temperatures increased, but decreased as the mole ratios of water to methanol(H$_2$O/CH$_3$OH) increased. At steady state operating conditional, temperature profile of the catalytic reactor of the reformer was well coincide with the model equation, and it took 50 minutes from start to the rated condition of the reformer. When the system was operated at 4/4 and 1/4 of load, thermal efficiencies of the system were 72.3% and 77%, respectively. When the PAFC system was operated with reformed gas in the range of 62 V-37.6 V and 0-147 A, the trend of I-V curve showed a typical fuel tell characteristic. At steady state condition, the flow rates of reforming and combustion methanol were 88.1 mol/h and 50.1 mol/h, respectively.

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