Post-Leaching Water, Ultrasonic and Mild-Acid Washing for Purifying Graphite Recovered from Spent NMC111 Lithium-Ion Batteries
Artikel i vetenskaplig tidskrift, 2026

Recovered graphite from spent lithium-ion batteries is an important secondary resource that can reduce reliance on primary graphite and lower the environmental footprint of battery production. In this work, graphite obtained as a carbon-rich residue after industrial hydrometallurgical leaching of NMC111 black mass (2 M H2SO4 + 3% H2O2) is subjected to three post-leaching washing treatments to assess how far simple, low-intensity steps can further clean the leach residue while preserving the carbon structure. The washing routes are water washing (GW), water washing with ultrasonication (GU) and mild sulfuric-acid washing with 0.1 M H2SO4 (GA). ICP-OES and SEM–EDX show that, relative to the leached black mass, all washing treatments reduce residual transition-metal contents by two to three orders of magnitude, and that the mild acid wash provides the lowest bulk metal levels, with several elements at or below detection limits. X-ray diffraction and Raman spectroscopy indicate graphite-dominated patterns and improved structural order, with the ID/IG ratio decreasing from 0.62 (GW) to 0.11 (GA) and the corresponding in-plane crystallite size increasing from 30.6 nm to 168 nm. Overall, the mild acid washing step is the most effective low-impact post-leaching purification route, yielding a thoroughly cleaned low-metal graphite fraction that preserves the graphite framework and constitutes a suitable intermediate for further upgrading or reuse in secondary applications.

lithium-ion batteries

structural characterization

recovered graphite

black mass

washing treatments

mild acid purification

Författare

José Eduardo Arevalo Fester

Chalmers, Kemi och kemiteknik, Energi och material

Magnus Larsson

2D fab AB

Sofia Öiseth

Chalmers Industriteknik (CIT)

Jonas Löfvendahl

Chalmers Industriteknik (CIT)

Mykhailo Zhybak

Grafren AB

Erik Khranovskyy

Grafren AB

Martina Petranikova

Chalmers, Kemi och kemiteknik, Energi och material

Batteries

23130105 (eISSN)

Vol. 12 6 205

Ämneskategorier (SSIF 2025)

Metallurgi och metalliska material

DOI

10.3390/batteries12060205

Mer information

Senast uppdaterat

2026-07-07