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020 _a9781394262113
020 _a9781394262144
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020 _a1394262140
_qelectronic book
020 _a9781394262137
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020 _a1394262132
_qelectronic book
020 _a1394262124
020 _a9781394262120
_q(electronic bk.)
020 _z9781394262113
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020 _z1394262116
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024 8 _aCIPO000221084
035 _a(OCoLC)1511787593
_z(OCoLC)1512348695
_z(OCoLC)1513583084
035 9 _a(OCLCCM-Owned)1511787593
037 _aaywhyaz9
_bcloudLibrary
_nhttps://yourcloudlibrary.com
040 _aYDX
_beng
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041 _aeng
049 _aMAIN
050 4 _aTL220
_b.E44 2025
072 7 _aTEC009090
_2bisacsh/2024
072 7 _aTEC020000
_2bisacsh/2024
072 7 _aTEC000000
_2bisacsh/2024
072 7 _aTEC031010
_2bisacsh/2024
072 7 _aTEC031000
_2bisacsh/2024
245 0 0 _aElectric vehicle batteries :
_bfrom sourcing to second life and recycling /
_cedited by Bob Galyen, Frank Menchaca.
264 1 _aHoboken, New Jersey :
_bJohn Wiley & Sons, Inc.,
_c[2025]
300 _a1 online resource
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
505 0 _aCover -- Title Page -- Copyright Page -- Contents -- List of Contributors -- Foreword -- Preface -- Introduction -- What You Will Learn in This Chapter -- A New Age in Engineering -- How This Book Is Organized -- Words to Know -- Further Reading -- Chapter 1 High-Capacity Battery Technology -- Introduction -- What You Will Learn in This Chapter -- Lithium-Ion Battery Technology -- Present Status of Li-Ion Battery-Active Materials -- Next Generation Li-Ion Cathode and Anode Research and Development -- Lithium-Metal Battery Technology, Including Lithium-Sulfur and Solid-State Materials -- Sodium-Ion Battery Technology -- Words to Know -- Further Reading -- References -- Chapter 2 Sourcing Lithium-Ion Batteries -- Introduction -- What You Will Learn in This Chapter -- Cell Types and Sourcing -- Global Landscape of Lithium-Ion Battery Raw Materials -- Why Source Selection Is Important -- Lithium Discovered -- Early Uses -- Where Do These Products Come from? -- Future Sources of Supply for Lithium -- Existing Sources of Lithium Supply -- Sourcing of Other Minerals -- Nickel -- Cobalt -- Deep Sea Harvesting -- Cost vs. Price - The Promise of New Entrants -- Contract Length and Leverage -- Capital Support -- Quality and Sourcing -- The Evolution of ESG in the Battery Supply Chain -- Technological Innovations in Sourcing and Supply Chain Management -- Supply Chain Complexity and Challenges -- Regulations and Standards for Ethical Sourcing -- Words to Know -- Further Reading -- References -- Chapter 3 Battery Design -- Introduction -- What You Will Learn in This Chapter -- Cells -- Cell Formats -- Cell Chemistry -- Battery Pack -- Thermal Propagation -- Words to Know -- Further Reading -- References -- Chapter 4 Vehicle and Infrastructure Integration -- Introduction -- What You Will Learn in This Chapter -- Introducing the EVSE and the Battery.
505 8 _aElectric Vehicle Types -- Battery Electric Vehicle -- Hybrid Electric Vehicle -- Plug-in Hybrid Electric Vehicle -- Range-Extended Electric Vehicle -- How Infrastructure Drives Battery and Vehicle Design -- Other Infrastructure Considerations for EVs and Their Batteries -- Words to Know -- Further Reading -- References -- Chapter 5 Lithium-Ion Battery Recycling -- Introduction -- What You Will Learn in This Chapter -- End-of-Life Definition -- Value Chain Feedstock Types -- New Scrap Recycling -- Old Scrap Recycling -- Technical Methods -- Pyrometallurgy -- Hydrometallurgy -- Pretreatment and Harvesting -- Dry Shredding -- Hammer Milling -- Thermal Treatment -- Froth Floatation - Separation of Carbon from Metal Oxides -- Reprecipitation of Cathodes from Hydrometallurgical Processing -- Direct Recycling -- Battery Pretreatments -- Design and Recycling -- Materials -- Words to Know -- Further Reading -- References -- Chapter 6 Electric Vehicle Batteries: Repurposing for Second Life -- Introduction -- What You Will Learn in This Chapter -- Repurposing and Second Life -- Second-Life Before Recycling -- Battery Degradation -- Pathways to Second Life -- Potential Uses of Second-Life Batteries -- Challenges in Second-Life Implementation -- Module Selection and Adequacy -- Extent of Reutilization -- State of the Market and Technology -- SOH and RUL Estimation -- Economic Viability and Price Limitations -- Safety -- Industry Standards -- Safety of Aged Cells -- Safety Hazards: Concerns and Misconceptions -- Diagnostics and Prognostics to Promote SLBs -- Estimation and Prognostics for Assessing the Pack for SL -- Chemistry-Specific Challenges: LFP -- Creating a Battery Reuse Network -- Policies and Financial Incentives -- Words to Know -- Further Reading -- References -- Chapter 7 Designing New Engineering Teams and Practices -- Introduction.
505 8 _aWhat You Will Learn in This Chapter -- The Essentials of the Team -- Designing New Engineering Organizations -- Organizational Development Stages -- Types of Organizations -- Designing an Organization -- Challenges Associated with This Topic -- Engineering Practices to Follow -- Words to Know -- Further Reading -- References -- Job Listings -- Index -- EULA.
520 _aUnderstand the batteries that will power the sustainable transition from innovators who are making it happen The transition from fossil-fuel based energy sources to electricity is one of the most crucial technological milestones in the world today. The surge of electric vehicle production will require hundreds of millions of electric vehicle batteries, the creation of which have environmental impacts of their own. There is an urgent need for resources which analyze these impacts, their role in the life cycle of a battery, and the broader challenges and opportunities of this electric transition. Electric Vehicle Batteries: From Sourcing to Second Life and Recycling meets this need with a thorough, accessible overview of batteries: how they are made, used, and re-used. Balancing theory and practice, and with coverage of all relevant vehicle types, it's a crucial resource for engineers, scientists, students, and instructors. Created by some of the leading experts in the mobility industry, Electric Vehicle Batteries is a decisive contribution to the fight for a sustainable future. In Electric Vehicle Batteries: From Sourcing to Second Life and Recycling, readers will find: - A programmatic structure for creating new engineering practices and teams that support them - A safety-first approach to handling volatile materials - An authorial and editorial team with extensive experience in both engineering and management Electric Vehicle Batteries: From Sourcing to Second Life and Recycling is ideal for reskilling engineers, undergraduate students, and other new entrants into the rapidly expanding field of electric vehicle production.
588 _aDescription based on online resource; title from digital title page (viewed on April 04, 2025).
650 0 _aElectric vehicles
_xBatteries.
_0http://id.loc.gov/authorities/subjects/sh2009010945
650 7 _aAutomotive.
_2bisacsh/2024
650 7 _aManufacturing.
_2bisacsh/2024
650 7 _aTECHNOLOGY & ENGINEERING.
_2bisacsh/2024
650 7 _aAlternative & Renewable.
_2bisacsh/2024
650 7 _aPower Resources.
_2bisacsh/2024
655 0 _aElectronic books.
776 0 8 _iPrint version:
_z1394262116
_z9781394262113
_w(OCoLC)1456983579
776 0 8 _iPrint version:
_z9781394262113
776 1 _z9781394262113
776 0 8 _cOriginal
_z1394262116
_z9781394262113
_w(OCoLC)1456983579
856 4 0 _uhttps://onlinelibrary.wiley.com/doi/book/10.1002/9781394262144
_yFull text is available at Wiley Online Library. Click here to view.
942 _2ddc
_cER