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  4. A facile strategy for reclaiming discarded graphite and harnessing the rate capabilities of graphite anodes
 
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2023
Journal Article
Title

A facile strategy for reclaiming discarded graphite and harnessing the rate capabilities of graphite anodes

Abstract
Graphite negative electrodes are unbeaten hitherto in lithium-ion batteries (LiBs) due to their unique chemical and physical properties. Thus, the increasing scarcity of graphite resources makes smart recycling or repurposing of discarded graphite particularly imperative. However, the current recycling techniques still need to be improved upon with urgency. Herein a facile and efficient hydrometallurgical process is reported to effectively regenerate aged (39.5 %, 75 % state-of-health, SOH) scrapped graphite (SG) from end-of-life lithium-ion batteries. Ultimately, the first cycle reversible capacity of SG1 (SOH = 39.5 %) improved from 266 mAh/g to 337 mAh/g while 330 mAh/g (98 %) remain after 100 cycles at 0.5 C. The reversible capacity for the first cycle of SG2 (SOH = 75 %) boosted from 335 mAh/g to 366 mAh/g with the capacity retention of 99.3 % after 100 cycles at 0.5 C, which is comparable with the benchmark commercial graphite. The regenerated graphites RG1 and RG2 exhibit excellent output characteristics even increasing the rate up to 4 C. This is the best rate level reported in the literature to date. Finally, the diffusion coefficient of Li ions during deintercalation and intercalation in the regenerated graphites have been measured by galvanostatic intermittent titration technique (GITT), determining values 2 orders-of-magnitude higher than that of the spent counterparts. Taking advantage of the synergistic effect of acid leaching and heat treatment, this strategy provides a simple and up-scalable method to recycle graphitic anodes.
Author(s)
Tian, Honghong
Graczyk-Zaja̧c, Magdalena J.
Carolis, Dario M. de
Tian, Chuanmu
Ricohermoso, Emmanuel I.I.I.
Yang, Zhiwu
Li, Wei
Wilamowska-Zawlocka, Monika
Hofmann, Jan Philipp
Weidenkaff, Anke  orcid-logo
Fraunhofer-Einrichtung für Wertstoffkreisläufe und Ressourcenstrategie IWKS  
Riedel, Ralf R.
Journal
Journal of hazardous materials  
DOI
10.1016/j.jhazmat.2022.130607
Language
English
Fraunhofer-Einrichtung für Wertstoffkreisläufe und Ressourcenstrategie IWKS  
Keyword(s)
  • Discarded graphite

  • Hydrometallurgy

  • Lithium-ion diffusion coefficient

  • Rate-capability

  • Recycling

  • State of health

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