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Recycling and Regeneration of Spent Lithium-Ion Batteries (Peng Ge)
Recycling and Regeneration of Spent Lithium-Ion Batteries (Peng Ge)
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Comprehensive recycling technologies for spent ions batteries
With the application of electric vehicles and portable electronics, the closed-loop utilization of end-of-life lithium-ion batteries is urgent for the further development of Li-ions batteries. Recycling and Regeneration of Spent Lithium-Ion Batteries: Technologies, Applications, and Sustainable Futures provide systematic recycling-chain technologies, from battery dismantling to direct regeneration, covering pretreatment, cascade utilization, metallurgical extraction, direct regeneration, and life cycle assessment.
Herein, the production volume and distribution of spent lithium-ion batteries was firstly described. Also, for pretreatment, they were further detailed discussed. Then, about the treatment of spent batteries, the contents, including cascade utilization, hydrometallurgical/pyrometallurgical methods and direct regeneration were summarized. Moreover, pollution prevention strategies, environmental and economic impact evaluations, and global policy frameworks are thoroughly reviewed.
Moreover, the book also covers:
* Emerging applications in solid-state and lithium iron phosphate battery systems
* Environmental and economic lifecycle assessment methodologies
* Policy and regulatory perspectives shaping global approaches
* Future outlooks on large-scale recycling technologies
Written for electrochemists, materials scientists, environmental chemists, chemical engineers, process engineers, and power technology specialists, this reference delivers the technical depth required to evaluate, design, and optimize spent LIB recycling and regeneration processes within a circular economy framework.
With the application of electric vehicles and portable electronics, the closed-loop utilization of end-of-life lithium-ion batteries is urgent for the further development of Li-ions batteries. Recycling and Regeneration of Spent Lithium-Ion Batteries: Technologies, Applications, and Sustainable Futures provide systematic recycling-chain technologies, from battery dismantling to direct regeneration, covering pretreatment, cascade utilization, metallurgical extraction, direct regeneration, and life cycle assessment.
Herein, the production volume and distribution of spent lithium-ion batteries was firstly described. Also, for pretreatment, they were further detailed discussed. Then, about the treatment of spent batteries, the contents, including cascade utilization, hydrometallurgical/pyrometallurgical methods and direct regeneration were summarized. Moreover, pollution prevention strategies, environmental and economic impact evaluations, and global policy frameworks are thoroughly reviewed.
Moreover, the book also covers:
* Emerging applications in solid-state and lithium iron phosphate battery systems
* Environmental and economic lifecycle assessment methodologies
* Policy and regulatory perspectives shaping global approaches
* Future outlooks on large-scale recycling technologies
Written for electrochemists, materials scientists, environmental chemists, chemical engineers, process engineers, and power technology specialists, this reference delivers the technical depth required to evaluate, design, and optimize spent LIB recycling and regeneration processes within a circular economy framework.
Autorenportrait
Peng Ge is a professor at School of Minerals Processing and Bioengineering, Central South University, Changsha, China. Prof. Ge?s primary research focuses centers on efficient recycling and green regeneration technologies for spent batteries, particularly lithium-ion batteries. His research group is dedicated to developing innovative physical, chemical, and metallurgical approaches (such as hydrometallurgy, pyrometallurgy, and direct regeneration) to achieve the efficient and environmentally friendly extraction of valuable metals (e.g., lithium, cobalt, nickel, manganese) from spent batteries.
Yue Yang, Ph.D. in Engineering, is a professor and doctoral advisor. His research focuses on the recycling and value-added utilization of secondary resources in non-ferrous metals. He has been selected for the National High-Level Young Talent Program, the China Association for Science and Technology?s ?Young Talent Support Project,? and the Excellent Youth Fund of the Hunan Provincial Natural Science Foundation.
Yue Yang, Ph.D. in Engineering, is a professor and doctoral advisor. His research focuses on the recycling and value-added utilization of secondary resources in non-ferrous metals. He has been selected for the National High-Level Young Talent Program, the China Association for Science and Technology?s ?Young Talent Support Project,? and the Excellent Youth Fund of the Hunan Provincial Natural Science Foundation.
Weitere Angaben
Buch (Hardcover), Englisch, 256 Seiten

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