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Beschreibung
A systematic reference on battery swap technology across transportation modes Long charging times, high upfront vehicle costs, and peak-demand grid strain remain barriers in electric mobility. Battery Swapping for Sustainable Transportation examines the techni...A systematic reference on battery swap technology across transportation modes
Long charging times, high upfront vehicle costs, and peak-demand grid strain remain barriers in electric mobility. Battery Swapping for Sustainable Transportation examines the technical, commercial, and regulatory dimensions of swap-based solutions. Written by a team of specialists in battery recycling, sustainability consulting, and energy transition, this reference addresses market dynamics, business models, and policy frameworks shaping the sector.
The book extends beyond passenger electric vehicles to cover two- and three-wheelers, commercial vehicles, maritime applications, and aviation. It explores interoperability challenges, advanced safety measures, and operational efficiencies at swapping stations. Coverage includes power grid integration, standardized battery condition assessment for used vehicle valuation, and the role of swapping infrastructure in circular EV economy development.
Readers will also find:
Battery Swapping for Sustainable Transportation serves materials scientists, electrical engineers, engineers in power technology, environmental chemists, environmental officers, and energy supplying companies seeking a thorough treatment of swap technology, its integration with existing energy systems, and its implications for transportation planning.
Autorentext
Dr. Xiao Lin is Founder and CEO of Botree Recycling Technologies, China, and a professor-level senior engineer specializing in critical battery metals separation and purification. A member of National Technical Committee SAC/TC294 and steering committee member of the Global Battery Alliance battery passport initiative.
Dr. Xue Wang, Co-founder and COO of Botree Recycling Technologies, She manages routine operations of IEA HEV TCP Task 48 Battery Swapping and serves as a task manager for Task 54 Recycled Materials for Electric Vehicles.
Bin Wu is Director of Sustainability Consulting at Botree Recycling Technologies, holding a master's degree in material science from KU Leuven. An expert in Product Life Cycle Assessment, he has contributed to EU JRC, UN/WP.29, and GBA carbon footprint standards.
Yingying Wang is a master's graduate of Southwest University and a Senior Engineer of the Chinese Academy of Sciences. She currently serves as Senior Manager at Botree Recycling Technologies, China, with core expertise in carbon trading mechanisms, lithium battery industry chain sustainability, and ESG compliance.
Shuoyuan Zhang earned his Master's degree from the University of Glasgow in the United Kingdom, majoring in International Economics and Finance. His research interests focus on economics and industrial finance, mainly concentrating on the new energy sector, including photovoltaics, charging, and battery swapping industries.
Inhalt
Introduction
1.1 Background and Significance of the Report
1.2 Overview of the Battery Swapping Industry Development
1.3 Scope of Research and Main Contents (Two and Three-Wheelers, Passenger Vehicles, Commercial Vehicles, Electric Ships, and eVTOL)
Impact of Battery Swapping on Global Energy Transition
2.1 Sustainable Development Goals and Pathways to Carbon Neutrality
2.2 Role of Battery Swapping in Reducing Greenhouse Gas Emissions
2.3 The Shift from Fossil Fuels to Electric Vehicles
2.4 Role of Battery Swapping in Vehicle-to-Grid (V2G) Integration
Market Overview of the Battery Swapping Industry
3.1 Analysis of Global Market Size and Growth Potential
3.2 Analysis of Key Regional Policy Environments
Advances in Battery Swapping Technology and Standardization
4.1 Core Breakthroughs and Latest R&D Dynamics in Battery Swapping Technology
4.2 Current Status and Development of Domestic and International Swapping Standards
4.3 Discussion on Interoperability Between International and Domestic Swapping Standards
4.4 Construction of Security Assurance System and Operation & Maintenance Management Mechanisms
Electric Two and Three-Wheeler Battery Swapping Business Models and Case Studies
5.1 Overview of Battery Swapping Business Models for Electric Two and Three-Wheelers
5.2 Key Enterprises and Battery Swapping Technologies
5.3 Case Studies of Representative Practices
5.4 Discussion on the Profitability of Business Models
5.5 Challenges and Development Trends
Passenger EVs Battery Swapping Business Models and Case Studies
6.1 Introduction to Battery Swapping Business Models for Passenger EVs
6.2 Core Enterprise Practices and Key Technologies
6.3 Analysis of Representative Cases
6.4 Examination of Business Model Profitability
6.5 Challenges and Future Directions
Commercial Vehicle Battery Swapping Business Models and Case Studies
7.1 Overview of Battery Swapping Modes for Commercial Vehicles
7.2 Practical Applications by Key Enterprises and Core Technologies
7.3 In-depth Case Studies
7.4 Evaluation of Business Model Financial Viability
7.5 Challenges and Growth Prospects
Electric Ship and Aviation Battery Swapping Business Models and Case Studies
8.1 Introduction to Battery Swapping Business Models for Electric ship and Aviation
8.2 Central Enterprise Practices and Critical Technologies
8.3 Study of Representative Cases
8.4 Assessment of Business Model Profitability
8.5 Challenges and Emerging Trends
Key Players and Strategic Positions in the Battery Swapping Ecosystem
9.1 Upstream Hardware and Software Suppliers
9.2 Midstream Battery Swapping Operators and Electric Transportation Equipment Manufacturers
9.3 Downstream Market Applications and Services
Challenges and Opportunities
10.1 Challenges Faced by the Industry (Infrastructure Construction, Costs, Safety, etc.)
10.2 Battery Swapping Industry Standardization
10.3 Technological Advancements and Policy Support Bringing Development Opportunities
10.4 Future Market Demand Forecast and Market Penetration Rate Outlook
Policy Recommendations and Prospects
11.1 Policy Guidance and Incentive Measures Suggestions
11.2 Ways to Promote Technological Innovation and Market Expansion
11.3 Predictions and Speculations on the Future Development Trends of the Global Battery Swapping Industry
11.4 Predictions and Speculations on the Future Development Trends of the Global Battery Swapping Industry