Chapter 2. Alkaline Electrolysers

R. Phillips, W. Gannon, C. Dunnill
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引用次数: 3

Abstract

Alkaline electrolysers provide a simple, cheap and efficient electrochemical route to hydrogen production. Coupled with renewable electricity generation sources it has the potential to provide large scale, long term energy storage, grid balancing and enhanced energy transport. Recent advances in electrode materials, cell design and membrane performance have increased the cost effectiveness of the technology towards a level where the industry for alkaline electrolysers is booming; indeed units of above 1 MW are already being used in the field, and the sector looks set for more increases in capacity and system sizes in the near future. This chapter introduces the theory that underpins alkaline electrolysis, including the underlying thermodynamics and electrode kinetics that govern the process. The individual components that make up the cell are introduced and the current state of research of each part is investigated to provide a comprehensive discussion of the full system. The overall status of the technology is reviewed, with the performance of commercial systems compared and the future prospects of the technology are discussed.
第二章。碱性电解槽
碱性电解槽为制氢提供了一种简单、廉价、高效的电化学途径。再加上可再生能源发电,它有潜力提供大规模、长期的能源储存、电网平衡和增强的能源运输。电极材料、电池设计和膜性能的最新进展提高了该技术的成本效益,达到了碱性电解槽行业蓬勃发展的水平;事实上,超过1兆瓦的机组已经在该领域投入使用,并且该行业在不久的将来将增加更多的容量和系统规模。本章介绍了碱性电解的理论基础,包括控制过程的潜在热力学和电极动力学。介绍了组成细胞的各个组成部分,并对每个部分的研究现状进行了调查,以提供对整个系统的全面讨论。综述了该技术的总体现状,对商用系统的性能进行了比较,并对该技术的发展前景进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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