Used Battery Collection and Recycling

Pistoia, G.; Wiaux, J.-P.; Wolsky, S.P.

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Table of contents
  • Table of Contentsix
  • Prefacev
  • List of Contributorsvii
  • Chapter 1. Environmental and Human Health Impact Assessments of Battery Systems1
  • Abstract1
  • Introduction2
  • Battery Raw Materials Production5
  • Manufacture of Battery Systems10
  • Use and Maintenance of Battery Systems15
  • Disposal of Spent Batteries17
  • Environmental and Human Health Impact Assessments22
  • Cycle Life Analysis of Battery Systems26
  • Conclusions31
  • References32
  • Chapter 2. Portable Rechargeable Batteries in Europe: Sales, Uses, Hoarding, Collection and Recyclin35
  • Introduction35
  • The European Market of Portable Rechargeable Batteries39
  • Hoarding of Portable Rechargeable Batteries43
  • Batteries in Municipal Solid Waste (MSW)61
  • Collection of Spent Rechargeable Batteries66
  • Collection Efficiency and Recycling Rate76
  • Conclusions81
  • References83
  • Chapter 3. Battery Collection and Recycling in Japan87
  • Introduction87
  • Treatment of Spent Primary Dry Cells88
  • Recycling of Spent Lead-Acid Batteries91
  • Collection and Recycling Activities for Portable Rechargeable Batteries94
  • Chapter 4. Ni-Cd Battery Collection and Recycling Programs in the U.S.A. and Canada105
  • Introduction105
  • The environmental issues106
  • The NiCd Battery Recycling Problem108
  • The Industry NiCd Battery Recycling Program109
  • The INMETCO NiCd Battery Recycling Process113
  • Chapter 5. Environmentally Sound Recycling of Ni-Cd Batteries119
  • Introduction and Principal Findings119
  • The Nature and Implications of Rechargeable Ni-Cd Battery Distribution121
  • Ni-Cd Battery Recycling Esperiences Within the OECD123
  • The RBRC Program - Canada and the U.S136
  • Lessons Learned & Recommendations for Action137
  • Chapter 6. Nickel-Cadmium and Nickel-Metal Hydride Battery Treatments147
  • Background147
  • Treatment of Nickel Cadmium Batteries150
  • Today's Battery Recycling Companies162
  • Conclusion174
  • Chapter 7. Primary Battery Recycling in Europe177
  • Battery Definition177
  • Battery Collection177
  • Battery Recycling191
  • Battery Sorting199
  • Integrating with Existing Recycling Operations209
  • Conclusions222
  • References223
  • Chapter 8. Lead-Acid Batteries225
  • Introduction225
  • The Environmental and Health Impact225
  • Economical Aspects228
  • Lead Accumulator Structure230
  • The Collection of Spent Batteries234
  • Comparison With Other Countries of the European Union239
  • Collection Modes and Recycling Techniques251
  • Conclusions261
  • Chapter 9. Recycling The Lithium Battery263
  • Introduction263
  • Background263
  • The Hazards and Safety Aspects of Recycling Lithium Batteries267
  • Environmental Concerns of Recycling Lithium Batteries272
  • Sorting, Packaging, Storage, and Transporting of Lithium Batteries for Recycling274
  • Lithium Battery Recycling Technologies277
  • The Toxco's Background and Processing Method279
  • Two of Toxco's Typical Chemical Analyses282
  • Conclusion291
  • Chapter 10. Recycling of Electric Vehicle Batteries295
  • Introduction295
  • Electric Vehicle/Hybrid Electric Vehicle Batteries297
  • General Recycling Issues, and Drivers304
  • Existing Methods for EV Battery Recycling308
  • Optimized Recycling Processes for Advanced Batteries317
  • Recycling Prospects for Future Advanced Batteries320
  • Summary322
  • References324
  • Appendix A. Most Common Types of Commercial Batteries329
  • Appendix B. Main Legislation on Battery Waste in the U.S.A. and E.U.341
  • Subject Index369
Book details
  • Vendor Elsevier S & T
  • SKU 9780444505620
  • ISBN-13 9780080543475
  • Author Pistoia, G.; Wiaux, J.-P.; Wolsky, S.P.
  • Category Technology & Engineering
  • Subject Chemical & Biochemical

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This book covers all aspects of spent battery collection and recycling. First of all, the legislative and regulatory updates are addressed and the main institutions and programs worldwide are mentioned. An overview of the existing battery systems, of the chemicals used in them and their hazardous properties is made, followed by a survey of the major industrial recycling processes. The safety and efficiency of such processes are stressed. Particular consideration is given to the released emissions, i.e. to the impact on human health and the environment. Methods for the evaluation of this impact are described. Several chapters deal with specific battery chemistries: lead-acid, nickel-cadmium and nickel-metal hydride, zinc (carbon and alkaline), lithium and lithium-ion. For each type of battery, details are provided on the collection/recycling process from the technical, economic and environmental viewpoint. The chemicals recoverable from each process and remarketable are mentioned. A chapter deals with recovering of the large batteries powering electric vehicles, e.g. lead-acid, nickel-metal hydride and lithium-ion. The final chapter is devoted to the important topic of collecting batteries from used electrical and electronic equipment. The uncontrolled disposal of these devices still containing their batteries contributes to environmental pollution.