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A Review of Inorganic Photoelectrode Developments and Reactor Scale-Up Challenges for Solar Hydrogen Production

机译:太阳能氢气生产无机光电电极开发和反应堆尺度挑战述评

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摘要

Green hydrogen, produced using solar energy, is a promising means of reducing greenhouse gas emissions. Photoelectrochemical (PEC) water splitting devices can produce hydrogen using sunlight and integrate the distinct functions of photovoltaics and electrolyzers in a single device. There is flexibility in the degree of integration between these electrical and chemical energy generating components, and so a plethora of archetypal PEC device designs has emerged. Although some materials have effectively been ruled out for use in commercial PEC devices, many principles of material design and synthesis have been learned. Here, the fundamental requirements of PEC materials, the top performances of the most widely studied inorganic photoelectrode materials, and reactor structures reported for unassisted solar water splitting are revisited. The main phenomena limiting the performance of up-scaled PEC devices are discussed, showing that engineering must be considered in parallel with material development for the future piloting of PEC water splitting systems. To establish the future commercial viability of this technology, more accurate techno-economic analyses should be carried out using data from larger scale demonstrations, and hence more durable and efficient PEC systems need to be developed that meet the challenges imposed from both material and engineering perspectives.
机译:使用太阳能生产的绿色氢是减少温室气体排放的有希望的途径。光电化学(PEC)水分裂装置可以使用阳光产生氢,并在一个装置中集成光伏和电解器的不同功能。这些电气和化学能源产生组件之间的集成度具有灵活性,因此出现了一种夸张的原型PEC器件设计。虽然有效地排除了商业PEC器件的一些材料,但已经学习了许多材料设计和合成原则。这里,PEC材料的基本要求,最广泛研究的无机光电电极材料的顶部性能以及报告的无统治太阳能分裂的反应器结构进行了重新审视。讨论了限制了上级PEC器件性能的主要现象,表明必须与材料开发并联考虑工程,以便将PEC水分裂系统的未来推出。为建立该技术的未来商业可行性,应使用大规模示范的数据进行更准确的技术经济分析,因此需要开发更耐用高效的PEC系统,以满足从材料和工程观点施加的挑战。

著录项

  • 来源
    《Advanced energy materials》 |2021年第13期|2003286.1-2003286.43|共43页
  • 作者单位

    Imperial Coll London Dept Chem Mol Sci Res Hub White City Campus London W12 0BZ England;

    Imperial Coll London Dept Phys South Kensington Campus London SW7 2AZ England|Imperial Coll London Grantham Inst South Kensington Campus London SW7 2AZ England;

    Imperial Coll London Dept Chem Mol Sci Res Hub White City Campus London W12 0BZ England|Imperial Coll London Grantham Inst South Kensington Campus London SW7 2AZ England|Imperial Coll London London Ctr Nanotechnol London SW7 2AZ England;

    Imperial Coll London Dept Chem Engn South Kensington Campus London SW7 2AZ England|Imperial Coll London Inst Mol Sci & Engn South Kensington Campus London SW7 2AZ England;

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

    hydrogen; inorganic photoelectrodes; photoelectrochemistry; reactor engineering; solar fuels;

    机译:氢;无机光电子;光电化学;反应堆工程;太阳能燃料;
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