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Design and Development of Unit Cell and System for Vanadium Redox Flow Batteries (V-RFB)

机译:钒氧化还原液流电池(V-RFB)的单元电池和系统的设计与开发

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摘要

Vanadium redox flow battery (V-RFB) has been attracted by many researches; some are under field testing and demonstration stage, but information on construction, experimental characterization, electrolyte preparation, overall systems under study, etc. are still limited. This paper focus on the technical issues faced and the lessons learnt during the development of unit cell and system for V-RFB. Firstly, brief description on problem identification, development and implementation in cell design and system for V-RFB are discussed. Secondly, preliminary experiment on 25 cm2 laboratory, unit cell V-RFB presents various difficulties such as its high tendency to fall under failure mode are presented. Finally, discussion on experimental result which shows significant improvement on V-RFB system efficiency up to 72% with reduction of contact resistance, recorded an average of 8.6 mΩ. In addition, the newly developed system provides a constructive base for future studies in temperature-controlled system and a divided, open-circuit potentiometric cell for half-cell redox analysis.
机译:钒氧化还原液流电池(V-RFB)已被许多研究吸引。其中一些正在现场测试和演示阶段,但有关构造,实验特性,电解质制备,正在研究的整个系统等方面的信息仍然有限。本文重点介绍在V-RFB的单元电池和系统开发过程中面临的技术问题和经验教训。首先,讨论了有关V-RFB的小区设计和系统中问题识别,开发和实现的简要描述。其次,在25 cm2实验室进行的初步实验中,单位电池V-RFB呈现出各种困难,例如其在失效模式下掉落的可能性很高。最后,关于实验结果的讨论表明,V-RFB系统效率显着提高,接触电阻降低了72%,记录的平均值为8.6mΩ。此外,新开发的系统为将来在温度控制系统中的研究提供了建设性的基础,并为半电池氧化还原分析提供了一个分立的开路电位计电池。

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