<p>The electric vehicle (EV) market is expected to grow in the coming years, driven by the use of green energy. Nevertheless, this technological advance also leads to an increase in battery waste generation. This work presents a suitable solution to improve recycling techniques. A coupled method involving mechanical activation and acid leaching was evaluated to process a sample of black mass (chemistry nickel-manganese-cobalt, NMC 111). This study analyzed the effect of milling time, leaching agent concentration, and temperature. Around 98% of lithium and ≥ 80% of cobalt, manganese, and nickel were extracted using 1000&#xa0;rpm and 60&#xa0;min of milling time, 2&#xa0;M H<sub>2</sub>SO<sub>4</sub>, 60&#xa0;ºC, and 120&#xa0;min. The experimental conditions also influenced the extraction of copper and aluminum traces; however, they did not affect the dissolution of valuable metals, especially lithium.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Recycling of Li-Ion Batteries: The Effects of Mechanical Activation on Valuable Metals Leachability from the Black Mass of NMC 111

  • Brenda Segura-Bailón,
  • Léa Rouquette,
  • Nathália Vieceli,
  • Karolina Bogusz,
  • Cécile Moreau,
  • Martina Petranikova

摘要

The electric vehicle (EV) market is expected to grow in the coming years, driven by the use of green energy. Nevertheless, this technological advance also leads to an increase in battery waste generation. This work presents a suitable solution to improve recycling techniques. A coupled method involving mechanical activation and acid leaching was evaluated to process a sample of black mass (chemistry nickel-manganese-cobalt, NMC 111). This study analyzed the effect of milling time, leaching agent concentration, and temperature. Around 98% of lithium and ≥ 80% of cobalt, manganese, and nickel were extracted using 1000 rpm and 60 min of milling time, 2 M H2SO4, 60 ºC, and 120 min. The experimental conditions also influenced the extraction of copper and aluminum traces; however, they did not affect the dissolution of valuable metals, especially lithium.