将废铝冶炼厂废炉衬石墨回收为锂离子电池电极原料

Thomas J. Robshaw, Daniel Atkinson, Jonathan R. Howse, Mark D. Ogden, Denis J. Cumming
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引用次数: 9

摘要

目前迫切需要石墨的替代来源,以满足包括锂离子电池生产在内的许多行业的需求。废矿渣(SPL)是这种石墨的一个有吸引力的潜在来源,但需要解毒以使其碳质部分增值。我们提出了一种简单的SPL净化工艺,基于两阶段碱/酸浸,并演示了如何将回收的石墨制成锂离子电极。对回收电池进行商业等效评估,发现充电容量随着净化处理的彻底而增加。在电荷容量保留方面,回收石墨的比容量可以与商业石墨竞争。然而,一些残留的污染可能会导致形成的固体电解质界面(SEI)不稳定,这需要未来的解决方案。总的来说,spll衍生石墨在这一领域的应用潜力是巨大的,对铝工业的经济、原材料的可持续性和低碳经济具有深远的影响。
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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Recycling graphite from waste aluminium smelter Spent Pot Lining into lithium-ion battery electrode feedstock

There is an urgent need for alternative sources of graphite, to satisfy the demands of a number of industries, including use in lithium-ion battery production. Spent potlining (SPL) represents an attractive potential source of such graphite, but requires detoxification to allow valorisation of its carbonaceous fraction. We present here a simple decontamination process for SPL, based on two-stage caustic/acidic leaching, and demonstrate how the recovered graphite may be fabricated into Li-ion electrodes. The recycled batteries are assessed against a commercial equivalent and it is found that the charge capacity increases with the thoroughness of decontamination treatment. The specific capacity of the recovered graphite is seen to compete with commercial graphite in terms of charge capacity retention. However, some residual contamination may contribute towards instability in the formed solid electrolyte interface (SEI) which requires future resolution. Overall, the potential of SPL-derived graphite to be employed in this remit is significant and has far-reaching consequences for the economics of the aluminium industry, raw material sustainability and a low-carbon economy.

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