The Current Progress of the Titanium Preparation by Electrolysis in the Room-Temperature Ionic Liquid Electrolytes

Handong Jiao
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引用次数: 1

Abstract

Titanium is a beneficial metallic material due to its excellent properties. However, the large-scale application of titanium is inhibited by the high production cost of the Kroll process. To address this challenge, researchers have proposed many new strategies based on electrochemical technology over the past decades. Those electrochemical methods show potential practical value to replace the Kroll process. Nevertheless, many of them are conducted in high-temperature melts, limiting the rapid development of those methods. Accordingly, room-temperature electrolysis in ionic liquid electrolytes was employed in titanium production. At present, there is no systematic and in-depth summary on room-temperature titanium electrolysis, although many pathways in room-temperature melts have been reported. In this review, we briefly outline the development of the titanium electrolysis methods firstly and summarize the room-temperature titanium electrolysis in ionic liquid electrolytes. Furthermore, we have discussed the fundamental mechanisms and key challenges occurring in room-temperature titanium electrolysis. Finally, we proposed the opportunities and research direction on room-temperature titanium electrolysis. We hope this review will be a valuable roadmap for room-temperature titanium electrolysis.
室温离子液体电解制备钛的研究进展
钛因其优异的性能而成为一种有益的金属材料。然而,Kroll法的高生产成本阻碍了钛的大规模应用。为了应对这一挑战,在过去的几十年里,研究人员提出了许多基于电化学技术的新策略。这些电化学方法在取代Kroll法方面具有潜在的实用价值。然而,其中许多是在高温熔体中进行的,限制了这些方法的快速发展。因此,在离子液体电解质中采用室温电解法生产钛。目前,对常温钛电解的研究还没有系统深入的总结,尽管已有许多在常温熔体中的途径被报道。本文首先简要介绍了钛电解方法的发展概况,并对离子液体中室温钛电解进行了综述。此外,我们还讨论了室温钛电解的基本机制和面临的关键挑战。最后,提出了室温钛电解的发展机遇和研究方向。我们希望这一综述将为室温钛电解提供有价值的路线图。
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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