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    1. Ekonomi och Ledarskap
    2. Nationalekonomi
    3. Miljöekonomi
    • Nyhet

    Battery Passport

    A Comprehensive Guide to Technology, Policy, and Global Implementation

    AvXiao Lin,Ilaï Bendavid

    Inbunden, Engelska, 2026

    1 395 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Offers an up-to-date overview of Battery Passports for Sustainable Lifecycle Management Battery Passport: A Comprehensive Guide to Technology, Policy, and Global Implementation explores one of the most pressing developments in the global battery industry: the creation and implementation of digital passports to track batteries across their full lifecycle. As demand for electric vehicles, renewable energy storage, and portable devices accelerates, supply chains are under unprecedented pressure—and questions of sustainability, transparency, and accountability have become unavoidable. The Battery Passport is a powerful tool to address these challenges by documenting a battery’s origin, performance, and environmental impact while enabling compliance with emerging global regulations. This timely book delivers a comprehensive analysis of the Battery Passport ecosystem, spanning the technological foundations, the equipment required, and the intricate policy frameworks that underpin its implementation. Each chapter examines a critical dimension, such as international standards, infrastructure design, economic models, ESG implications, and integration with emerging digital technologies. Through detailed case studies, readers gain insight into how early adopters are deploying passport systems and the lessons these examples provide. The author offers a roadmap for overcoming unresolved issues, including data security, interoperability, and cross-border policy alignment. Equipping readers to understand and advance global efforts in sustainability, digitalization, and the circular economy, Battery Passport: Analyzes the full lifecycle of batteries through a systems approach, from production to end-of-life recyclingIncludes discussion of cutting-edge recycling processes and their connection to passport dataMaps the technological architecture enabling passport implementation, including data standards and digital platformsExplores business model innovation enabled by lifecycle traceability and transparencyFeatures forward-looking analysis of integration with blockchain, IoT, and AI technologiesOffers actionable insights and strategic guidance for stakeholders across industries and governmentsBattery Passport: A Comprehensive Guide to Technology, Policy, and Global Implementation is an essential resource for professionals and researchers working in energy technology, materials science, and sustainable engineering, particularly in programs related to renewable energy systems, industrial ecology, and electrical engineering. It is also an indispensable reference for professionals in battery manufacturing, supply chain management, energy policy, and sustainability consulting.

    Produktinformation

    • Utgivningsdatum:2026-09-02
    • Mått:170 x 244 x undefined mm
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:288
    • Förlag:Wiley-VCH Verlag GmbH
    • ISBN:9783527354870

    Utforska kategorier

    • Miljöekonomi inom Ekonomi och Ledarskap
    • Miljövetenskap och miljöpolitik inom Naturvetenskap och teknik
    • Klassisk mekanik inom Naturvetenskap och teknik

    Mer om författaren

    Dr. Xiao Lin, Botree Recycling Technologies, China.Ilaï Bendavid, Botree Recycling Technologies, China.Bin Wu, Botree Recycling Technologies, China.Shengrui Qi, Botree Recycling Technologies, China.Dr. Xue Wang, Botree Recycling Technologies, China.

    Innehållsförteckning

    • About the Authors xivPreface xviAcknowledgments xviii1 Introduction to the Battery Passport 11.1 Why the Battery Passport Matters 11.1.1 Urgency and Strategic Context 21.1.2 The Problem: Lifecycle Blind Spots and ESG Failures 31.1.3 The Solution: What the Battery Passport Delivers 41.1.4 Momentum and Policy Alignment 41.1.5 The Bigger Picture: A Platform for Global Transformation 61.2 What It Is and How It Works 71.2.1 Core Components 71.2.2 System Functionality 101.2.3 Regulatory and Governance Framework 121.3 Comprehensive Overview of the EU Battery Regulation (Regulation 2023/1542) 141.3.1 Manufacturing Liability and Labeling 161.3.2 End User Liability 171.3.3 Supply Chain Due Diligence (Updated Timeline) 171.3.4 Mandatory Recycling Efficiency and Recovery Targets 191.3.5 Transition Timeline Through 2036 201.3.6 Integration with DPPs and Global Frameworks 221.3.7 Driving Circularity and Sustainability 221.4 How? Setting the Global Standard 271.4.1 EU, US, China, and Global Alignment Challenges 271.4.2 Global Standards and Regulations 321.5 Nonexhaustive List of Standards 341.5.1 DIN DKE SPEC 99100: A Key Framework 432 Technological Infrastructure of the Battery Passport 492.1 Core Technological Components 492.1.1 Smart Sensors and IoT Networks 492.1.2 RFID and QR Code Integration 512.1.3 Real-Time Monitoring Systems 532.1.4 Data Loggers and Edge Analytics 562.1.5 Communication Infrastructure: Network Devices 562.2 Data Lifecycle Management 612.2.1 Types of Data Collected 612.2.2 System Functioning 622.2.3 Data Accuracy and Reliability 662.2.4 Data Storage Solutions 702.2.5 Data Analysis Techniques 722.3 Cybersecurity and Privacy 742.3.1 Blockchain for Privacy and Security 752.3.2 Encryption 752.3.3 Secure Data Transmission 762.3.4 Secure Storage Through Decentralization 772.3.5 Identity and Access Management 772.3.6 Consensus Mechanism 782.3.7 Addressing Privacy Concerns 782.3.8 Data Access Control 782.3.9 The Role of Private Blockchains 792.4 Interfaces and Accessibility 812.4.1 Designing User-Friendly Interfaces 812.4.2 Accessibility Considerations 822.5 Operational Best Practices 842.5.1 Energy Management 842.5.2 Data Handling Procedures 852.5.3 Ensuring Continuous System Availability 852.5.4 Battery Recycling 862.6 Future Challenges and Innovations 892.6.1 Upgrading Equipment 892.6.2 Compatibility with Newer Technologies 892.6.3 Cost Implications 902.6.4 Minimizing Downtime 902.6.5 Sustainability and Lifecycle Considerations 912.6.6 Scalability 912.6.7 Energy Efficiency 922.6.8 Interoperability 922.6.9 Data Security and Privacy 922.6.10 Implementation of Advanced Technologies 932.6.11 AI and Machine Learning 932.6.12 Enhanced Predictive Capabilities 932.6.13 Advanced Security Systems 942.6.14 Real-Time Decision-Making 942.6.15 Energy-Efficient Algorithms 942.6.16 Ethical and Transparent AI 942.6.17 Blockchain Evolution 952.6.18 Conclusion: Staying Adaptive 953 Business Models and Economic Implications 993.1 Overview of Economic Impact 993.1.1 Stakeholder Roles and Relationships 993.1.2 Key Market Drivers 1023.1.3 Shifts in Consumer Behavior, the Most Important Market Driver 1083.1.4 Evolving Infrastructure Needs: A Business Opportunity 1123.2 Business Models for Implementation 1193.2.1 Subscription Model 1193.2.2 Pay-Per-Use Model 1203.2.3 Integrated Service Offerings 1203.2.4 Data Monetization 1203.2.5 Public–Private Partnerships (PPPs) 1203.3 Financial Incentives and Support Mechanisms 1233.3.1 Overview of Tax Incentives 1233.3.2 Designing Effective Tax Incentives 1233.3.3 Tax Credits and Subsidies 1233.3.4 Subsidies to Promote Battery Passport Adoption 1233.3.5 Grants and Funding Mechanisms 1233.3.6 Impact of Government Grants on Battery Adoption 1243.3.7 Public–Private Partnerships (PPPs) 1243.3.8 Risks that Support Mechanisms Must Address 1243.4 Global Trade 1253.4.1 Nontariff Barriers and Trade Regulations 1253.4.2 Economic Impact of Nontariff Barriers 1253.4.3 Intellectual Property Considerations 1263.4.4 Coordinating Global Trade Policies 1263.4.5 Opportunities for Coordination 1263.4.6 The Role of Trade Agreements in Promoting Adoption 1263.4.7 Manufacturer's Economic Impact 1273.4.8 Consumer's Economic Impact 1273.4.9 Government's Economic Impact 1273.4.10 Recycling Companies' Economic Impact 1283.5 Economic Risks for Stakeholders 1303.5.1 Creating New Economic Risks 1303.5.2 Risk Analysis for Manufacturers 1323.5.3 Risks for Consumers and End Users 1383.5.4 Risks for Government Bodies 1403.5.5 Risk Analysis for Recycling Companies 1433.5.6 Cost–Benefit Analysis for Stakeholders 1473.6 Strategic Recommendations for Economic Adaptation 1493.6.1 Strategic Recommendations for Governments 1493.6.2 Strategic Recommendations for Businesses 1544 Policy and Regulatory Framework: Enabling and Constraining the Battery Passport 1614.1 Minimizing Compliance Costs and Enhancing Data Accuracy 1614.2 Economic Benefits Through Coordination 1614.3 Fostering Stakeholder Trust and Transparency 1614.4 Supporting Circular Economy Initiatives 1624.5 Reducing Regulatory Barriers to Trade 1624.6 Risks of Overregulation 1624.7 Global Fragmentation 1634.7.1 China's Policy Vision 1634.7.2 North American Vision 1674.7.3 African Battery Initiatives 1724.7.4 Latin American Initiatives 1784.7.5 Asia-Pacific (APAC) Region Initiatives 1804.7.5.1 Harmonizing Regulations in Asia-Pacific 1804.8 Key Challenges 1814.8.1 Fragmented Regulatory Environments 1814.8.2 Lack of Coordination Between Developing and Developed Nations 1814.8.3 Opportunities for Harmonization Through Regional Cooperation 1814.8.4 Impact of this Policy Fragmentation 1864.9 Solutions for the Fragmentation and Battery Passport Uptake 1914.9.1 Harmonizing Global Standards for Battery Lifecycle Management 1914.9.2 The Role of Regional Trade Agreements 1944.10 Further Challenges 1954.10.1 Legal Challenges 1954.10.2 Ethical Considerations in Policymaking 1964.10.3 Compliance Challenges 1984.11 Future Policy Trends and Directions 199xii Contents4.11.1 Implementation Challenges Across the Value Chain 1994.11.2 Adapting to Future Policy Developments 2014.11.2.5 Acknowledging Implementation Challenges 2024.12 Conclusions 2034.12.1 Strengthening the Global Framework with UNECE Regulations 2034.12.2 The Role of Government Incentives in Driving Adoption 2034.12.3 Addressing Compliance Challenges with Collaboration and Innovation 2034.12.4 Ethical and Legal Considerations: Balancing Transparency and Privacy 2044.12.5 Anticipating Future Trends and Implementation Challenges 2044.12.6 A Unified Vision for Sustainability 2045 Addressing Greenhouse Gas Emissions and Closed-Loop Recycling in the Battery Industry: The Role of Battery Passports 2075.1 The Environmental Challenges of Battery Production and Disposal 2075.1.1 Greenhouse Gas Emissions 2075.1.2 Resource Depletion and Unsustainable Mining 2075.1.3 Inadequate End-of-Life Management 2085.2 Mitigating GHG Emissions Through Supply Chain Transparency 2095.2.1 Raw Material Extraction/Processing and Cell Production 2095.2.2 Optimizing the Battery Lifecycle 2105.2.3 Encouraging Sustainable Sourcing 2145.3 The Role of Battery Passports in Achieving Closed-Loop Recycling 2155.3.1 Improving Collection and Sorting 2155.3.2 Enabling Second-Life Applications 2155.3.3 Facilitating Efficient Recycling 2175.3.4 Promoting the Use of Recycled Materials 2195.4 Conclusion 2216 Global Battery Passports Case Study: A Comprehensive Analysis of Initiatives 2256.1 GBA Battery Passport Initiative 2256.1.1 The Vision of GBA 2256.1.2 Sustainability Indicator Framework and Scoring Logic 226Contents xiii6.1.3 2023 GBA Battery Passport POC (Proof of Concept) Pilot 2286.1.4 2024 GBA Battery Passport MVP Pilot 2286.2 Battery Pass Initiative 2306.2.1 Project Briefing 2306.2.2 Battery Passport Architecture Design from Battery Pass 2316.2.3 Data Framework and Functions 2326.2.4 Battery Passport Demonstrator from Battery Pass 2356.3 Catena-X Initiative 2366.3.1 Introduction to Catena-X 2366.3.2 Core Technical Capabilities 2366.3.3 Implementation Path 2386.4 Ouranos Ecosystem and Battery Passport 2426.4.1 Introduction to Ouranos Ecosystem 2426.4.2 Technical Architecture of the Ouranos Ecosystem Data Space 2426.5 Battery ID 2476.5.1 Background Introduction 2476.5.2 Technical Framework of China Battery ID 2486.5.3 Example of China Battery ID 2506.6 Automaker and Technology Provider Initiatives 2526.6.1 Volvo's Battery Passport 2526.6.2 Siemens's Battery Passport 2526.7 Conclusions 253References 254Epilogue 257Index 265