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Zero gap alkaline electrolysis cell design for renewable energy storage as hydrogen gas

机译:零间隙碱性电解细胞设计,用于可再生能量储存作为氢气

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摘要

Zero gap alkaline electrolysers hold the key to cheap and efficient renewable energy storage via the production and distribution of hydrogen gas. A zero gap design, where porous electrodes are spacially separated only by the gas separator, allows the unique benefits of alkaline electrolysis to be combined with the high efficiencies currently only associated with the more expensive PEM set-up. This review covers the basics of alkaline electrolysis, and provides a detailed description of the advantages of employing a zero gap cell design over the traditional arrangement. A comparison with different types of zero gap cell designs currently seen in research is made, and a description of recent developments is presented. Finally, the current state of research into zero gap alkaline electrolysis is discussed, and pathways for future research identified. Zero gap alkaline electrolysis will allow excess renewable energy to be stored, transported and used on demand in a green and environmentally friendly manner as when the hydrogen is burnt or passed into a fuel cell it produces only water and energy.
机译:零间隙碱性电解器通过生产和分配氢气来保持廉价和高效的可再生能源储存的关键。零间隙设计,其中多孔电极仅由气体分离器分离,允许碱性电解的独特益处与目前仅与更昂贵的PEM设置相关的高效率结合。本综述涵盖了碱性电解的基础知识,并提供了在传统布置上采用零间隙细胞设计的优点的详细描述。对研究中目前在研究中看到的不同类型的零间隙单元设计进行比较,并提出了最新的发展的描述。最后,讨论了当前研究进入零间隙碱性电解的状态,并确定了未来研究的途径。零间隙碱性电解将使多余的可再生能量以绿色和环保的方式储存,运输和使用,因为当氢气被烧毁或进入燃料电池时,它仅产生水和能量。

著录项

  • 来源
    《RSC Advances》 |2016年第102期|共9页
  • 作者单位

    Swansea Univ Coll Engn ESRI Bay Campus Fabian Way Swansea SA1 8EN W Glam Wales;

    Swansea Univ Coll Engn ESRI Bay Campus Fabian Way Swansea SA1 8EN W Glam Wales;

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

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