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This book addresses recycling technologies for many of the valuable and scarce materials from spent lithium-ion batteries. A successful transition to electric mobility will result in large volumes of these. The book discusses engineering issues in the entire process chain from disassembly over mechanical conditioning to chemical treatment. A framework for environmental and economic evaluation is presented and recommendations for researchers as well as for potential operators are derived.
This book addresses recycling technologies for many of the valuable and scarce materials from spent lithium-ion batteries. A successful transition to electric mobility will result in large volumes of these. The book discusses engineering issues in the entire process chain from disassembly over mechanical conditioning to chemical treatment. A framework for environmental and economic evaluation is presented and recommendations for researchers as well as for potential operators are derived.
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.
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.
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.
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.
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