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Hydrogen and oxygen generation with polymer electrolyte membrane (PEM)-based electrolytic technology

机译:基于聚合物电解质膜(PEM)的电解技术产生氢气和氧气

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摘要

With dwindling liquid fuel resources, hydrogen offers a credible alternative. The use of hydrogen in a fuel cell offers the highest fuel conversion efficiency compared with all other technologies and it also has the potential to substantially reduce greenhouse gas and particulate emissions at least at the end-user sites. One of the major barriers to the introduction of the hydrogen economy and its wider acceptance is the lack of the rather costly hydrogen generation, transportation and distribution infrastructure to meet the local transport fuel demands. On-site or distributed hydrogen generation would remove the need for this up-front infrastructure requirements and assist with the early large-scale trials of the fuel cell technology for both transport and stationary applications and also introduction of the hydrogen economy. In this paper, the development of polymer electrolyte membrane electrolysis technology for on-site, on-demand hydrogen generation has been discussed. The major emphasis is given on reducing catalyst cost; interface design and modifications; interconnect materials, design and fabrication; and investigation of the sources of degradation. Stacks to 2 kWH 2 capacity have been constructed and tested and show initial efficiencies of >87% at 1 A cm−2.
机译:随着液体燃料资源的减少,氢气提供了可靠的替代方案。与所有其他技术相比,在燃料电池中使用氢能提供最高的燃料转换效率,并且至少在最终用户场所,它还具有显着减少温室气体和颗粒物排放的潜力。引入氢经济及其广泛接受的主要障碍之一是缺乏能够满足当地运输燃料需求的昂贵的氢生产,运输和分配基础设施。现场或分布式制氢将消除对这种基础设施的需求,并有助于早期燃料电池技术在运输和固定应用中的大规模试验,以及氢经济的引入。本文探讨了用于现场按需制氢的高分子电解质膜电解技术的发展。重点放在降低催化剂成本上。界面设计和修改;互连材料,设计和制造;并研究降解源。已构建并测试了容量为2 kWH 2 的烟囱,其在1 A cm-2 下的初始效率> 87%。

著录项

  • 来源
    《Ionics》 |2006年第1期|7-14|共8页
  • 作者单位

    CSIRO Manufacturing and Infrastructure Technology Private Bag 33 Clayton South 3169 Victoria Australia;

    CSIRO Manufacturing and Infrastructure Technology Private Bag 33 Clayton South 3169 Victoria Australia;

    CSIRO Manufacturing and Infrastructure Technology Private Bag 33 Clayton South 3169 Victoria Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrogen production; Electrolysis; Renewable energy; Polymer electrolyte membrane;

    机译:制氢;电解;可再生能源;高分子电解质膜;

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