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Systematic planning to optimize investments in hydrogen infrastructure deployment

机译:系统规划以优化对氢基础设施部署的投资

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摘要

The introduction of hydrogen infrastructure and fuel cell vehicles (FCVs) to gradually replace gasoline internal combustion engine vehicles can provide environment and energy security benefits. The deployment of hydrogen fueling infrastructure to support the demonstration and commercialization of FCVs remains a critical barrier to transitioning to hydrogen as a transportation fuel. This study utilizes an engineering methodology referred to as the Spatially and Temporally Resolved Energy and Environment Tool (STREET) to demonstrate how systematic planning can optimize early investments in hydrogen infrastructure in a way that supports and encourages growth in the deployment of FCVs while ensuring that the associated environment and energy security benefits are fully realized. Specifically, a case study is performed for the City of Irvine, California - a target area for FCV deployment - to determine the optimized number and location of hydrogen fueling stations required to provide a bridge to FCV commercialization, the preferred rollout strategy for those stations, and the environmental impact associated with three near-term scenarios for hydrogen production and distribution associated with local and regional sources of hydrogen available to the City. Furthermore, because the State of California has adopted legislation imposing environmental standards for hydrogen production, results of the environmental impact assessment for hydrogen production and distribution scenarios are measured against the California standards. The results show that significantly fewer hydrogen fueling stations are required to provide comparable service to the existing gasoline infrastructure, and that key community statistics are needed to inform the preferred rollout strategy for the stations. Well-to-wheel (WTW) greenhouse gas (GHG) emissions, urban criteria pollutants, energy use, and water use associated with hydrogen and FCVs can be significantly reduced in comparison to the average pare of gasoline vehicles regardless of whether hydrogen is produced and distributed with an emphasis on conventional resources (e.g., natural gas), or on local, renewable resources. An emphasis on local renewable resources to produce hydrogen further reduces emissions, energy use, and water use associated with hydrogen and FCVs compared to an emphasis on conventional resources. All three hydrogen production and distribution scenarios considered in the study meet California's standards for well-to-wheel GHG emissions, and well-to-tank emissions of urban ROG and NO_x. Two of the three scenarios also meet California's standard that 33% of hydrogen must be produced from renewable feedstocks. Overall, systematic planning optimizes both the economic andrnenvironmental impact associated with the deployment of hydrogen infrastructure and FCVs.
机译:氢基础设施和燃料电池汽车(FCV)的引入逐步取代汽油内燃机汽车可以提供环境和能源安全效益。部署氢燃料基础设施以支持燃料电池汽车的示范和商业化仍然是过渡为氢燃料的关键障碍。这项研究利用一种称为空间和临时解决的能源与环境工具(STREET)的工程方法论,来演示系统规划如何以支持和鼓励FCV部署的增长的方式优化氢基础设施的早期投资,同时确保相关的环境和能源安全利益得到了充分实现。具体来说,我们针对加利福尼亚州尔湾市(FCV的部署目标区域)进行了案例研究,以确定为FCV商业化提供桥梁所需的最佳加氢站数量和位置,这是这些站的首选部署策略,以及与该市可获得的本地和区域氢气来源相关的三种近期氢气生产和分配情景的环境影响。此外,由于加利福尼亚州已经通过了立法,规定了氢生产的环境标准,因此针对氢生产和分配情景的环境影响评估结果将根据加利福尼亚的标准进行衡量。结果表明,与现有的汽油基础设施提供可比的服务所需的加氢站数量明显减少,并且需要关键的社区统计数据来告知加气站的首选部署策略。与汽油车的平均排放量相比,与汽油车的平均排放量相比,与汽油车的平均排放量相比,轮转(WTW)温室气体(GHG)排放,城市标准污染物,能源使用以及与氢和FCV相关的用水量可以大大减少重点关注常规资源(例如天然气)或本地可再生资源的分布。与强调传统资源相比,重视本地可再生资源生产氢气可进一步减少与氢气和燃料电池汽车相关的排放,能源消耗和用水。该研究中考虑的所有三种氢气生产和分配方案均符合加利福尼亚州有关城市ROG和NO_x的向井轮温室气体排放以及从井向油箱排放的标准。三种方案中的两种还符合加利福尼亚州的标准,即必须由可再生原料生产33%的氢。总体而言,系统规划可以优化与氢基础设施和FCV的部署相关的经济和环境影响。

著录项

  • 来源
    《International journal of hydrogen energy》 |2010年第10期|P.4652-4667|共16页
  • 作者单位

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

    rnAdvanced Power and Energy Program, National Fuel Cell Research Center, University of California, Iruine, Irvine, CA 92697-3550, USA;

    Institute of Transportation Studies, University of California, Irvine, CA 92697-3600, USA;

    rnInstitute of Transportation Studies, University of California, Irvine, CA 92697-3600, USA;

    rnAdvanced Power and Energy Program, National Fuel Cell Research Center, University of California, Iruine, 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

    fuel cell vehicles; hydrogen infrastructure; hydrogen refueling stations; environmental impact;

    机译:燃料电池汽车;氢基础设施;氢气加油站;对环境造成的影响;
  • 入库时间 2022-08-18 00:29:22

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