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Challenges in the Recycling of Battery Casing Materials
Current recycling methods for the very popular lithium‐ion batteries (LIBs) focus mainly on recovering valuable metals such as cobalt and nickel for economic reasons. The cell casing components, which are mainly made of aluminum, can make a significant contribution to achieving political recycling targets. Mechanical processes are used to separate the casing components from the overall LIB material stream. The aluminum, copper, steel, and plastic components are then further concentrated into various potential products by, e.g., magnetic separation, eddy current separation, and air classification. Considering the benefits of additional stress to compact the metal parts, the knowledge gained from the individual sorting steps can be combined to form a process flow chart.
Challenges in the Recycling of Battery Casing Materials
Current recycling methods for the very popular lithium‐ion batteries (LIBs) focus mainly on recovering valuable metals such as cobalt and nickel for economic reasons. The cell casing components, which are mainly made of aluminum, can make a significant contribution to achieving political recycling targets. Mechanical processes are used to separate the casing components from the overall LIB material stream. The aluminum, copper, steel, and plastic components are then further concentrated into various potential products by, e.g., magnetic separation, eddy current separation, and air classification. Considering the benefits of additional stress to compact the metal parts, the knowledge gained from the individual sorting steps can be combined to form a process flow chart.
Challenges in the Recycling of Battery Casing Materials
Staudacher, Malena (Autor:in) / Lyon, Tony (Autor:in) / Peuker, Urs (Autor:in)
Chemie Ingenieur Technik ; 96 ; 932-940
01.07.2024
9 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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