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3D-printing of Redox flow batteries for energy storage: a rapid prototype laboratory cell

机译:用于储能的Redox液流电池的3D打印:快速原型实验室细胞

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摘要

Although interest in redox flow batteries (RFBs) for energy storage has grown over the last few years, implementation of RFB technology has been slow and challenging. Recent developments in 3D-printing of materials enable a transforming technology for fast, reproducible and documented cell manufacture. This technology can give an improved engineering approach to cell design and fabrication, needed to fulfil requirements for lower cost, longer lifetime hardware capable of efficient reliable performance. It can also be used to implement a flexible design methodology to suit various scales of operation, usually important during RFB development. In the case of electrolyte flow features, these needs are especially well met by fast prototyping strategies. This paper demonstrates the importance of 3D-printing for the realization of a hybrid zinc-cerium RFB laboratory cell. The design and fabrication process is described and the benefits offered by 3D-printing are considered. Finally, further opportunities offered by this approach to RFB manufacture and research are highlighted.
机译:尽管在过去几年中对用于能量存储的氧化还原液流电池(RFB)的兴趣有所增长,但RFB技术的实施缓慢且充满挑战。材料3D打印的最新发展为快速,可复制和有证件的电池制造提供了一种转换技术。这项技术可以为电池设计和制造提供一种改进的工程方法,可以满足对低成本,长寿命硬件的要求,这些硬件具有有效的可靠性能。它还可以用于实施灵活的设计方法,以适应各种规模的运营,这通常在RFB开发期间很重要。对于电解质流动特性,通过快速原型设计策略可以很好地满足这些需求。本文证明了3D打印对于实现混合的锌铈RFB实验室电池的重要性。描述了设计和制造过程,并考虑了3D打印带来的好处。最后,强调了这种方法为RFB制造和研究提供的更多机会。

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