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April 29, 2026Nano Research Energy5 citationsOpen Access

Toward sustainable graphite anode recycling: From degradation understanding to targeted regeneration

MSMinghui ShanKWKaini WeiLCLei Cheng

Key Points

  • This review aims to identify causes of stagnation in graphite anode recycling and propose tailored regeneration strategies.
  • Systematic review of industrial practices and academic strategies for graphite recycling.
  • Analysis of degradation mechanisms affecting electrochemical performance.
  • Assessment of targeted regeneration methods for spent graphite.
  • Identified surface-level deterioration as a primary cause of electrochemical performance decline.
  • Discovered a fundamental mismatch between current recycling practices and market requirements.
  • Outlined a shift in graphite recycling from rough reconstruction to precision repair.

Abstract

The rapid proliferation of spent lithium-ion batteries has created an urgent need for efficient recycling of graphite anodes, yet industrial adoption remains constrained by economic and technical barriers. This review systematically examines the underlying causes of this stagnation by analyzing current industrial practices, graphite degradation mechanisms, and academic recycling strategies. Analysis of the industrial landscape reveals that prevailing recycling processes roughly adapt from primary material production, leading to an imbalanced industry structure and a fundamental mismatch between industry graphite recycling and market demands. Further investigation into degradation mechanisms demonstrates that the decline in electrochemical performance is predominantly governed by surface-level deterioration, revealing the mismatch mechanism. In response to the mismatch, academic advances have developed targeted regeneration strategies that directly address the specific failure modes of spent graphite, thereby offering viable pathways to resolve the industrial mismatch. Therefore, by integrating insights from both industrial practice and academic research, this review delineates a clear pathway forward that graphite recycling must undergo a paradigm shift from rough reconstruction toward precision repair. 

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Cite This Study

Shan et al. (2026) studied this question.

synapsesocial.com/papers/69f1a08eedf4b46824807169https://doi.org/10.26599/nre.2026.9120230
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