• 제목/요약/키워드: fuel cell vehicles

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경기도 대기질 개선 정책의 온실가스 동시 저감 및 그에 따른 공편익 효과 분석 (Greenhouse Gas Reduction by Air Quality Management Policy in Gyeonggi-do and Its Co-benefit Analysis)

  • 김동영;최민애
    • 한국대기환경학회지
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    • 제33권6호
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    • pp.570-582
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    • 2017
  • In recent years, national and local government's air quality management and climate change adaptation policy has been significantly strengthened. The measures in the two policies may be in a relationship of trade-off or synergy to each other. Greenhouse gases and air pollutants are mostly emitted from the same sources of using considerable amounts of fossil fuels. Co-benefits, in which either measure has a positive effect on the other, may be maximized by reducing the social costs and by consolidating the objectives of the various policies. In this study, the co-benefits were examined by empirically analyzing the effects of air pollutants and greenhouse gas emission reduction, social cost, and cost effectiveness between the two policies. Of the total 80 projects, the next 12 projects generated co-benefits. They are 1) extend restriction area of solid fuel use, 2) expand subsidy of low-$NO_x$ burner, 3) supply hybrid-vehicles, 4) supply electric-vehicles, 5) supply hydrogen fuel cell vehicles, 6) engine retrofit, 7) scrappage of old car, 8) low emission zone, 9) transportation demand management, 10) supply land-based electric of ship, 11) switching anthracite to clean fuel in private sector, 12) expand regional combined-energy supply. The benefits of air pollutants and greenhouse gas-related measures were an annual average of KRW 2,705.4 billion. The social benefits of the transportation demand management were the highest at an annual average of KRW 890.7 billion, and followed by scrappage of old cars and expand regional combined-energy supply. When the social benefits and the annual investment budgets are compared, the cost effectiveness ratio is estimated to be about 3.8. Overall, the reduction of air pollutants caused by the air quality management policy of Gyeonggi-do resulted in an annual average of KRW 4,790.2 billion. In the point sources management sector, the added value of $CO_2$ reduction increased by 4.8% to KRW 1,062.8 billion, while the mobile sources management sector increased by 3.6% to KRW 3,414.1 billion. If social benefits from $CO_2$ reduction are added, the annual average will increase by 7.2% to KRW 5,135.4 billion. The urban and energy management sectors have shown that social benefits increase more than twice as much as the benefits of $CO_2$ reduction. This result implies that more intensive promotion of these measures are needed. This study has significance in that it presents the results of the empirical analysis of the co-benefits generated between the similar policies in the air quality management and the climate change policy which are currently being promoted in Gyeonggi-do. This study suggested that the method of analyzing the policy effect among the main policies in the climate atmospheric policy is established and the effectiveness and priority of the major policies can be evaluated through the policy correlation analysis based on the co-benefits. It is expected that it could be a basis for evaluation the efficiency of the climate change adaptation and air quality management policies implemented by the national and local governments in the future.

전기자동차 응용을 위한 DC-DC 컨버터의 설계 및 제어 (Design and Control of a DC-DC Converter for Electric Vehicle Applications)

  • 노정욱;이성세;문건우;윤명중
    • 전력전자학회논문지
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    • 제7권6호
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    • pp.587-595
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    • 2002
  • 최근 배터리, 태양전지, 연료전지 등의 전원으로 구동되는 전기자동차에 대한 관심이 커지고 있다. 그런데, 이와 같은 전원들의 단위전지 전압은 자동차의 인버터를 구동하기에는 너무 낮기 때문에 수많은 단위전지를 직렬로 연결하여 사용해야하며, 이로 인해 전원의 구조가 복잡해지는 문제가 있다. 본 논문에서는 전기자동차의 응용을 위해 비교적 낮은 전원전압을 충분히 높은 안정된 직류 링크전압으로 바꾸어주는 고효율 대용량 승압 컨버터를 제안하고 그 설계기준과 실험결과를 제시한다.

고분자고체형연료전지용 나노백금족입자의 제조와 응용기술 동향 (Trends in Production and Application Technology of Nano-platinum Group Particles for PEFC)

  • 길상철;황용길
    • 자원리싸이클링
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    • 제26권3호
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    • pp.79-91
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    • 2017
  • 수소연료전지자동차(FCV)의 핵심은 고분자고체형연료전지(Polymer Solid Fuell Cell: PEFC)이고 전지 중에서 전기화학적 전기를 발생하는 핵심 소재는 백금촉매이다. 백금은 남아프리카와 러시아 등에 편재되어있고, 백금의 세계생산량은 연간 약 178톤이고 고가이므로 리싸이클링 한다. 현재 PEFC에 Pt를 사용하는 양은 $0.2{\sim}0.1mg/cm^2$인데, 전지의 가격을 줄여서 FCV보급을 확대하기 위하여 사용하는 Pt양을 $0.05{\sim}0.03mg/cm^2$까지 감소시키는 것을 목표로 하여 각국이 연구 개발하고 있다. 나노배금 제조기술은 건식법과 습식법으로 크게 나누며 습식환원법을 중심으로 제조하는 방식이 Pt를 제조하는데 유리하다. 나노Pt를 이용하여 폴리올법, 개량형 Cu-UPD/Pt 치환법 및 나노캡슐법 등에 의해 $Pt-Pd/Al_2O_3$, Pt/C, Pt/GCB, Pt/Au/C, PtCo/C, PtPd/C 등의 Pt촉매가 연구 개발되고 있으며, Pt촉매의 활성향상 및 안정화 기술 등이 보고되고 있다. 본고는 나노Pt와 나노Pt촉매의 제조기술 및 폐 촉매의 리사이클링 및 Pt촉매의 응용기술 경향을 조사 분석하였다.

차세대 복합형 전기자동차의 전력 및 에너지 저장장치 (POWER AND ENERGY STORAGE DEVICES FOR NEXT GENERATION HYBRID ELECTRIC VEHICLE)

  • 김민회
    • 한국산업융합학회 논문집
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    • 제1권1호
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    • pp.31-41
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    • 1998
  • 근래 전 세계적으로 전기자동차에 대한 광범위한 연구개발의 근본 동기는 연료보존과 환경공해의 영향을 재어하기 위한 것이다. 본 논문은 차세대 복합형 전기자동차에 적용시키기 위하여 현재 이용이 가능한 여러 가지 형태의 에너지 저장장치, 즉 밧데리, 후라이휠 및 울트라 커페시터와 에너지원으로 사용되는 동력장치인 가솔린엔진, 디젤엔진, 가스터빈 및 연료전지의 특성에 대하여 검토한 것이다. 기술적인 추세에 따라 효율적인 적용 가능성을 비교하여 본 결과 가까운 장래에 복합형 전기자동차에 이용 가능한 시스템으로 에너지 저장장치는 밧데리이고 동력원으로는 가솔린 엔진임을 보여 주었다.

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리튬계 수소저장재료의 연구개발 동향 (Trend in Research and Development of Lithium Complex Hydrides for Hydrogen Storage)

  • 심재동;심재혁;하헌필
    • 한국재료학회지
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    • 제22권3호
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    • pp.159-167
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    • 2012
  • Hydrogen is in the spotlight as an alternative next generation energy source for the replacement of fossil fuels because it has high specific energy density and emits almost no pollution, with zero $CO_2$ emission. In order to use hydrogen safely, reliable storage and transportation methods are required. Recently, solid hydrogen storage systems using metal hydrides have been under extensive development for application to fuel cell vehicles and fuel cells of MCFC and SOFC. For the practical use of hydrogen on a commercial basis, hydrogen storage materials should satisfy several requirements such as 1) hydrogen storage capacity of more than 6.5wt.% $H_2$, moderate hydrogen release temperature below $100^{\circ}C$, 3) cyclic reversibility of hydrogen absorption/desorption, 4) non toxicity and low price. Among the candidate materials, Li based metal hydrides are known to be promising materials with high practical potential in view of the above requirements. This paper reviews the characteristics and recent R&D trends of Li based complex hydrides, Li-alanates, Li-borohydrides, and Li-amides/imides.

전기추진 1톤급 Personal Air Vehicle의 동력시스템 예비 분석 (Preliminary Analysis of Power Systems for 1-ton class Electric Powered PAV)

  • 윤동익;허환일;양수석
    • 한국추진공학회지
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    • 제14권6호
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    • pp.1-8
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    • 2010
  • 본 논문에서는 PAV에 쓰이는 전기추진 시스템에 대해서 기술하고 동력시스템에 대한 분석, 무게산정을 통하여 PAV 추진시스템으로서의 전기추진시스템을 살펴보았다. 연료전지와 배터리를 같이 사용 하는 전기추진의 경우 아직은 내연기관만큼 성능을 내진 못하지만 에너지 밀도가 약 0.75 kW$^*$hr/kg, 출력밀도는 약 2.5 kW/kg 정도까지 성능이 나온다면 기존의 내연기관을 대체할 수 있을 것으로 예상된다. 연료전지와 배터리 등을 이용한 친환경적인 전기추진 방식은 요즘 주된 관심사인 소음 공해 문제를 해결할 수 있는 훌륭한 해결책이 될 수 있을 것이라 생각된다.

수소충전소용 유압식 압축기 안전성 시험에 관한 연구 (Hydraulic Compressor Safety Test for Hydrogen Stations)

  • 성혜진;황봄찬;최성준;김영규;조성민
    • 한국기계가공학회지
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    • 제19권11호
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    • pp.8-15
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    • 2020
  • The government has announced its Hydrogen Economy Roadmap to strengthen global competitiveness on the hydrogen economy by focusing on hydrogen fuel cell electric vehicles and fuel cells. In this regard, the interest on the economics and safety of the infrastructure of hydrogen stations has also increased. In this study, a test bed similar to an actual hydrogen charging facility was built, and a prototype of a piston-type compressor was modeled. In this model, the piston was hydraulically compressed to progressively test leakage, leakage rate, and durability and to check for any malfunction. Moreover, the leakage rate, cylinder leak performance, and compressor operation durability were evaluated for safety; it was confirmed that there were no abnormalities. Nevertheless, an investigation of the long-term use and operating pressure of the compressor is necessary to verify the safety of developing a100-MPa domestic compressor in the future.

알루미늄 합금의 수소취화 방지를 위한 경질양극산화 및 플라즈마이온질화의 영향 (Effects of Hard Anodizing and Plasma Ion-Nitriding on Al Alloy for Hydrogen Embrittlement Portection)

  • 신동호;김성종
    • Corrosion Science and Technology
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    • 제22권4호
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    • pp.221-231
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    • 2023
  • Interest in aluminum alloys for the hydrogen valves of fuel cell electric vehicles (FCEVs) is growing due to the reduction in fuel efficiency by the high weight. However, when an aluminum alloy is used, deterioration in mechanical characteristics caused by hydrogen embrittlement and wear is regarded as a problem. In this investigation, the aluminum alloy used to prevent hydrogen embrittlement was subjected to surface treatments by performing hard anodizing and plasma ion nitriding processes. The hard anodized Al alloy exhibited brittleness in which the mechanical characteristics rapidly deteriorated due to porosity and defects of surface, resulting in a decrease in the ultimate tensile strength and modulus of toughness by 15.58 and 42.51%, respectively, as the hydrogen charging time increased from 0 to 96 hours. In contrast, no distinct nitriding layer in the plasma ion-nitrided Al alloy was observed due to oxide film formation and processing conditions. However, compared to 0 and 96 hours of hydrogen charging time, the ultimate tensile strength and modulus of toughness decreased by 7.54 and 13.32%, respectively, presenting excellent resistance to hydrogen embrittlement.

뉴스 빅데이터를 활용한 수소 이슈 탐색 (A Study on Social Issues for Hydrogen Industry Using News Big Data)

  • 최일영;김혜경
    • 한국수소및신에너지학회논문집
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    • 제33권2호
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    • pp.121-129
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    • 2022
  • With the advent of the post-2020 climate regime, the hydrogen industry is growing rapidly around the world. In order to build the hydrogen economy, it is important to identify social issues related to hydrogen and prepare countermeasures for them. Accordingly, this study conducted a semantic network analysis on hydrogen news from NAVER. As a result of the analysis, the number of hydrogen news in 2020 increased by 4.5 times compared to 2016, and as of 2018, the hydrogen issue has shifted from an environmental aspect to an economic aspect. In addition, although the initial government-led hydrogen industry is expanding to the mobility field such as privately-led fuel cell electric vehicles and hydrogen fuel, terms showing concerns about the safety such as explosions are constantly being exposed. Thus, it is necessary not only to expand the hydrogen ecosystem through the participation of private companies, but also to promote hydrogen safety.

고분자 전해질 연료전지에서 고분자막의 화학적 가속 내구 시간 예측 (Prediction of Chemical Acceleration Durability Time of Polymer Membrane in Polymer Electrolyte Membrane Fuel Cells)

  • 오소형;유동근;정성기;정지홍;박권필
    • Korean Chemical Engineering Research
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    • 제61권1호
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    • pp.26-31
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    • 2023
  • 고분자 전해질 연료전지(Polymer electrolyte membrane fuel cell, PEMFC) 고분자막의 내구성 향상을 위해서 빠른 시간에 내구성을 평가할 수 있는 가속 내구 평가법들이 연구 개발되었다. 그러나 트럭, 버스 등 대형 상용차용 연료전지 수명은 승용차보다 3배 이상 요구되어 화학적 가속 내구 평가(Accelerated stress test, AST) 시간도 길어져서 1,500 시간 이상이 되었다. 그래서 본 연구에서는 단 시간내에 고분자막의 화학적 내구성을 평가하기 위한 방법으로 막 초기 특성으로 내구성을 예측할 수 있을지 검토하였다. 초기 특성으로 수소투과전류밀도(Hydrogen crossover current density, HCCD)와 단락 저항(Short resistance, SR)을 그리고 3시간의 셀 밖 실험으로 가능한 Fenton 실험을 통해 AST 시간을 예측하였다. HCCD와 불소 이온 유출 농도가 증가하면 AST 시간이 선형적으로 짧아지는 경향을 보였으나 편차가 있었다(R2 ≒0.65). SR이 감소하면 AST 시간이 선형적으로 증가하는 상관관계를 보였으며 정확도가 높아(R2 =0.93) 고분 자막 초기 SR로 AST 시간을 예측할 수 있었다.