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首页> 外文期刊>International journal of hydrogen energy >Projecting full build-out environmental impacts and roll-out strategies associated with viable hydrogen fueling infrastructure strategies
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Projecting full build-out environmental impacts and roll-out strategies associated with viable hydrogen fueling infrastructure strategies

机译:预测与可行的氢燃料基础设施策略相关的全面建设环境影响和部署策略

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摘要

A transition from gasoline internal combustion engine vehicles to hydrogen fuel cell electric vehicles (FCEVs) is likely to emerge as a major component of the strategy to meet future greenhouse gas reduction, air quality, fuel independence, and energy security goals. Advanced infrastructure planning can minimize the cost of hydrogen infrastructure while assuring that energy and environment benefits are achieved. This study presents a comprehensive advanced planning methodology for the deployment of hydrogen infrastructure, and applies the methodology to delineate fully built-out infrastructure strategies, assess the associated energy and environment impacts, facilitate the identification of an optimal infrastructure roll-out strategy, and identify the potential for renewable hydrogen feedstocks. The South Coast Air Basin of California, targeted by automobile manufacturers for the first regional commercial deployment of FCEVs, is the focus for the study. The following insights result from the application of the methodology: 1. Compared to current gasoline stations, only 11%-14% of the number of hydrogen fueling stations can provide comparable accessibility to drivers in a targeted region. 2. To meet reasonable capacity demand for hydrogen fueling, approximately 30% the number of hydrogen stations are required compared to current gasoline stations. 3. Replacing gasoline vehicles with hydrogen FCEVs has the potential to (1) reduce the emission of greenhouse gases by more than 80%, reduce energy requirements by 42%, and virtually eliminate petroleum consumption from the passenger vehicle sector, and (2) significantly reduce urban concentrations of ozone and PM2.5. 4. Existing sources of biomethane in the California South Coast Air Basin can provide up to 30% of the hydrogen fueling demand for a fully built-out hydrogen FCEV scenario.
机译:从汽油内燃发动机汽车到氢燃料电池电动汽车(FCEV)的过渡很可能会成为该战略的主要组成部分,以满足未来减少温室气体,改善空气质量,燃料独立性和能源安全目标的需求。先进的基础设施规划可以最大程度地降低氢气基础设施的成本,同时确保实现能源和环境效益。这项研究为氢基础设施的部署提出了一套全面的高级计划方法论,并将该方法论描绘出了完整的基础设施战略,评估了相关的能源和环境影响,促进了最佳基础设施战略的确定,并确定了可再生氢原料的潜力。这项研究的重点是加利福尼亚州的南海岸空气盆地,汽车制造商将其定位为首次将FCEV进行区域性商业部署。从该方法学的应用中得出以下见解:1.与当前的加油站相比,只有11%-14%的加氢站可以为目标区域的驾驶员提供相当的通达性。 2.为了满足合理的加氢能力需求,与目前的加油站相比,大约需要加氢站数量的30%。 3.用氢燃料电池电动汽车代替汽油车有潜力(1)减少80%以上的温室气体排放,减少42%的能源需求,并从根本上消除乘用车部门的石油消耗,以及(2)减少城市中的臭氧和PM2.5浓度。 4.在完全建成的氢燃料电池电动汽车中,加利福尼亚南海岸空气盆地中现有的生物甲烷资源可提供高达30%的氢燃料需求。

著录项

  • 来源
    《International journal of hydrogen energy 》 |2011年第22期| p.14309-14323| 共15页
  • 作者单位

    Advanced Power and Energy Program, National Fuel Cell Research Center, University 0/California, Irvine, CA 92697-3550, USA;

    Advanced Power and Energy Program, National Fuel Cell Research Center, University 0/California, Irvine, CA 92697-3550, USA;

    Mechanical & Aerospace Engineering, University 0/California, Irvine, CA 92697-3975, USA;

    Institute 0/Transportation Studies University 0/California, Irvine, CA 92697-3550, USA;

    Advanced Power and Energy Program, National Fuel Cell Research Center, University 0/California, Irvine, CA 92697-3550, USA;

    Mechanical & Aerospace Engineering, University 0/California, Irvine, CA 92697-3975, USA;

    Institute 0/Transportation Studies University 0/California, Irvine, CA 92697-3550, USA;

    Advanced Power and Energy Program, National Fuel Cell Research Center, University 0/California, Irvine, CA 92697-3550, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hydrogen; infrastructure; fuel cell electric vehicles; hydrogen supply train modeling; life cycle analysis;

    机译:氢;基础设施;燃料电池电动汽车;氢气供应链建模;生命周期分析;

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