
Nano Technology for Battery Recycling, Remanufacturing, and Reusing
- 520 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Nano Technology for Battery Recycling, Remanufacturing, and Reusing
About this book
Nanotechnology for Battery Recycling, Remanufacturing, and Reusing explores how nanotechnology is currently being used in battery recycling, remanufacturing and reusing technologies to make them economically and environmentally feasible. The book shows how nanotechnology can be used to enhance and improve battery recycling, remanufacturing and reusing technologies, covering the fundamentals of battery recycling, remanufacturing and reusing technologies, the role of nanotechnology, the separation, regeneration and reuse of nanomaterials from battery waste, nano-enabled approaches for battery recycling, and nano-enabled approaches for battery remanufacturing and reusing.This book will help researchers and engineers to better understand the role of nanotechnology in the field of battery recycling, remanufacturing and reusing. It will be an important reference source for materials scientists and engineers who would like to learn more about how nanotechnology is being used to create new battery recycling processes.- Outlines practical and cost-efficient processes for recycling and reusing batteries- Highlights the different types of nanomaterials used in battery recycling processes- Assesses major challenges with integrating nanotechnology into battery manufacturing processes on an industrial scale
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Information
Table of contents
- Cover
- Front Matter
- Table of Contents
- Copyright
- Contributors
- Preface
- List of Illustrations
- List of Tables
- Chapter 1 : Market batteries and their characteristics
- Chapter 2 : Available technologies for remanufacturing, repurposing, and recycling lithium-ion batteries: an introduction
- Chapter 3 : Nanotechnology and recycling, remanufacturing, and reusing battery
- Chapter 4 : Promising technologies under development for recycling, remanufacturing, and reusing batteries: an introduction
- Chapter 5 : Innovative strategies for recycling used batteries for brighter future
- Chapter 6 : Battery recycling for sustainable future: recent progress, challenges, and perspectives
- Chapter 7 : Bio-inspired nanotechnology for easy-to-recycle lithium-ion batteries
- Chapter 8 : Materials recycling using pH/thermal-responsive materials
- Chapter 9 : Pyrometallurgy-based applications in spent lithium-ion battery recycling
- Chapter 10 : Application of hydrometallurgy in spent lithium-ion battery recycling
- Chapter 11 : Biohydrometallurgical recycling approaches for returning valuable metals to the battery production cycle
- Chapter 12 : Technologies for separating nanomaterials from spent lithium-ion batteries
- Chapter 13 : Separating battery nano/microelectrode active materials with the physical method
- Chapter 14 : Recycling battery anode materials
- Chapter 15 : Recycling battery cathode materials
- Chapter 16 : Recycling battery metallic materials
- Chapter 17 : Recycling battery casing materials
- Chapter 18 : Regeneration technologies for electrode nanomaterials of recycled batteries
- Chapter 19 : LIB industry waste valorization for battery production
- Chapter 20 : Recycling lithium, cobalt, and nickel for return to the battery production cycle
- Chapter 21 : Effects of imperfect separation of recycled cathode active materials on remanufactured lithium-ion battery performance
- Chapter 22 : Mechanical and physical processes of battery recycling
- Index
- A