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Catalytic production of impurity-free V3.5+ electrolyte for vanadium redox flow batteries

机译:催化生产钒还原液流电池用无杂质V3.5 +电解质

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摘要

The vanadium redox flow battery is considered one of the most promising candidates for use in large-scale energy storage systems. However, its commercialization has been hindered due to the high manufacturing cost of the vanadium electrolyte, which is currently prepared using a costly electrolysis method with limited productivity. In this work, we present a simpler method for chemical production of impurity-free V3.5+ electrolyte by utilizing formic acid as a reducing agent and Pt/C as a catalyst. With the catalytic reduction of V4+ electrolyte, a high quality V3.5+ electrolyte was successfully produced and excellent cell performance was achieved. Based on the result, a prototype catalytic reactor employing Pt/C-decorated carbon felt was designed, and high-speed, continuous production of V3.5+ electrolyte in this manner was demonstrated with the reactor. This invention offers a simple but practical strategy to reduce the production cost of V3.5+ electrolyte while retaining quality that is adequate for high-performance operations.
机译:钒氧化还原液流电池被认为是用于大规模能量存储系统的最有希望的候选者之一。然而,由于钒电解质的高制造成本而阻碍了其商业化,钒电解质目前使用昂贵的电解方法制备且生产率有限。在这项工作中,我们提出了一种简单的方法,以甲酸为还原剂,以Pt / C为催化剂,化学生产无杂质的V 3.5 + 电解质。通过催化还原V 4 + 电解质,成功生产了高质量的V 3.5 + 电解质,并获得了优异的电池性能。基于该结果,设计了采用装饰有Pt / C的碳毡的原型催化反应器,并证明了以这种方式高速连续生产V 3.5 + 电解质。本发明提供了一种简单而实用的策略,以降低V 3.5 + 电解质的生产成本,同时保持适于高性能操作的质量。

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