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Table of Contents
Foreword
Background
The LithoRec process
Potential dangers during the handling of lithium-ion batteries
Overdischarging lithium-ion batteries
Disassembly planning and assessment of automation potentials for lithium-ion batteries
Safe, flexible and productive human-robot-collaboration for disassembly of lithium-ion batteries
Crushing of battery modules and cells
Separation of the electrolyte
Thermal drying
Separation of the electrolyte
Solvent extraction
Electrolyte extraction
sub and supercritical CO2
Off gas cleaning by adsorption
Material separation
Hydrometallurgical processing and thermal treatment of active materials.- Realization in a demonstration plant
Economic assessment of the LithoRec process
Environmental aspects of the recycling of lithium-ion traction batteries.
Background
The LithoRec process
Potential dangers during the handling of lithium-ion batteries
Overdischarging lithium-ion batteries
Disassembly planning and assessment of automation potentials for lithium-ion batteries
Safe, flexible and productive human-robot-collaboration for disassembly of lithium-ion batteries
Crushing of battery modules and cells
Separation of the electrolyte
Thermal drying
Separation of the electrolyte
Solvent extraction
Electrolyte extraction
sub and supercritical CO2
Off gas cleaning by adsorption
Material separation
Hydrometallurgical processing and thermal treatment of active materials.- Realization in a demonstration plant
Economic assessment of the LithoRec process
Environmental aspects of the recycling of lithium-ion traction batteries.