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電気自動車用バッテリーの世界市場


Global Electrical Vehicle Battery Market

レポートの範囲 本レポートは、電気自動車用電池の世界市場を分析したものである。2022年を基準年として、2023年から2028年までの推定市場データを提供しています。また、一次調査および二次調査を通じて収集... もっと見る

 

 

出版社 出版年月 電子版価格 ページ数 言語
BCC Research
BCCリサーチ
2023年8月1日 US$5,500
シングルユーザライセンス(印刷不可)
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注文方法はこちら
302 英語

 

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レポートの範囲

本レポートは、電気自動車用電池の世界市場を分析したものである。2022年を基準年として、2023年から2028年までの推定市場データを提供しています。また、一次調査および二次調査を通じて収集した市場の促進要因と機会に関する洞察も提供しています。また、COVID-19の影響、ロシア・ウクライナ戦争、ポーターの5つの力、ユースケース分析、規制情勢など、様々な市場要因についても取り上げています。

本レポートは、いくつかの表と図表を用い、シンプルで分かりやすい形式で作成されている。本レポートの調査範囲は、電池タイプ、推進力、車両タイプ、方式、電池容量、電池形態、材料タイプに関する世界および地域市場の詳細な調査である。全セグメントの質的・量的データを掲載しています。各セグメントを調査し、現在の市場規模を割り出し、将来の市場規模を年平均成長率(CAGR)で予測しています。

また、主要な電気自動車用電池メーカーの詳細なプロフィールと、市場での存在感を高めるための戦略も掲載しています。また、2022年における電気自動車用バッテリーのトッププロバイダーの市場エコシステムについて論じた競争環境の章も含まれています。

レポート内容

- 47のデータ表と51の追加表
- 電気自動車用バッテリーの世界市場の概要
- 2022年のデータ、2023年と2024年の推定値、2028年までの複合年間成長率(CAGR)の予測による市場規模の推定と世界市場動向の分析
- 電池タイプ、推進力、車種、方式、電池容量、電池形態、材料タイプ、地域別の電気自動車用電池市場の可能性と特徴をハイライトで紹介
- 電気自動車の利用を促進するための政府の取り組み、法律、インセンティブに関する洞察と、電池化学、材料、製造技術の大幅な改善に関する情報
- ギガファクトリー、それを運営する企業、およびそれらが電池生産能力の向上にどのように貢献し、電気自動車用電池の低コスト化と容易な入手を可能にしているかについての考察。
- 業界の新たな技術や開発についての解説
- 業界の主要な買収と戦略的提携の評価、業界の主要サプライヤーの市場シェア分析
- BYD Co.Ltd.、LG Chem.、三菱商事株式会社、パナソニックホールディングス株式会社、株式会社東芝など。

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目次

Table of Contents Chapter 1 Introduction Overview Study Goals and Objectives Reasons for Doing This Study Scope of Report Methodology Information Sources Geographic Breakdown Chapter 2 Summary and Highlights Market Overview Chapter 3 Market Overview Introduction Evolution of Electric Vehicle Batteries Value Chain AnalysisValue Chain Analysis Raw and Processed Materials Cell Component Manufacturing Cell Manufacturing Battery Pack Manufacturing Electric Vehicles Manufacturing Recycling Porter's Five Forces Model Supplier Power Buyer Power Threat of New Entrants Threat of Substitute Competitive Rivalry Impact of COVID-19 and Ukraine-Russia War on the Global Market COVID-19 Impact Impact of the Russia-Ukraine War Chapter 4 Market Dynamics Overview Key Market Drivers Increase in Demand for Electric Vehicles (HEVs, PHEVs, Pure EVs, and FCEVs) Cost Reductions for EV Batteries Growing Demand for Clean Energy Reduction of Carbon Emissions Market Restraints High Capital Cost for Electric Vehicles Compared to Conventional ICE Vehicles Inadequate Electric Vehicle Charging Infrastructure Key Challenges in the Market for Electric Vehicle Batteries Battery Capacity is Limited Inadequate Uniformity of Electric Vehicle Charging Infrastructure Market Opportunities Government Efforts Relating to Electric Vehicles Government Agencies are Promoting the Establishment of Electric Charging Stations To Feed the Market, Researchers are Developing Wireless EV Charging Technologies for On-the-Go Charging Short-Term and Long-Term Impact of Market Dynamics Chapter 5 Market Breakdown by Type of Battery Overview Lithium-Ion Batteries and Advanced Batteries Lithium Battery Chemistry Construction of Lithium-Ion Batteries Advance Battery Solid-State Batteries Sodium-Ion Battery Nickel-Metal Hydride Batteries Lead-Acid Batteries Chapter 6 Market Breakdown by Type of Propulsion Overview Battery Electric Vehicle (BEV) Market Drivers for Battery Electric Vehicles Key Components of Battery Electric Vehicle (BEV) Hybrid Electric Vehicle (HEV) Market Drivers for Hybrid Electric Vehicles Operation of Hybrid Electric Vehicles Key Components of a Hybrid Electric Vehicle (HEV) Plug-in Hybrid Electric Vehicle (PHEV) Operation of Plug-in Hybrid Electric Vehicles Market Drivers for Plug-in Hybrid Electric Vehicle Key Components of a Plug-in Hybrid Electric Car (PHEV) Fuel Cell Electric Vehicle (FCEV) Key Components of a Fuel Cell Electric Vehicle (FCEV) Chapter 7 Market Breakdown by Type of Vehicle Overview Passenger Cars Passenger Vehicle Market Summary Vans Bus Electric Bus Market Summary Truck Other Types of Vehicles Two-Wheeler Off-Highway Vehicle Chapter 8 Market Breakdown by Bonding Method Overview Wire Bonding Laser Bonding Chapter 9 Market Breakdown by Battery Capacity Overview <50 kWh 50-100 kWh 100-200 kWh 200-300 kWh >300 kWh Chapter 10 Market Breakdown by Battery Form Overview Prismatic Cylindrical Pouch Chapter 11 Market Breakdown by Type of Material Overview Lithium Cobalt Nickel Other Types of Materials Manganese Natural Graphite Chapter 12 Market Breakdown by Region Overview North America U.S. Canada Europe Germany France Norway U.K. Rest of Europe Asia-Pacific China Japan South Korea India Rest of Asia-Pacific Rest of the World Middle East and Africa South America Chapter 13 ESG Development Overview Electric Vehicle Batteries and ESG are Closely Related Importance of ESG in the Electric Vehicle Battery Industry Approach by Electric Vehicle Batteries to Achieve ESG Goals ESG Penetration for EV Battery Manufactures Current Status of ESG in the Market for Electric Vehicle Batteries Future of ESG with Electric Vehicle Battery Industry Case Study: Examples of Successful Implementation of ESG Concluding Remarks from BCC Chapter 14 Emerging Technologies and Developments Introduction Current Market Trends Increased Energy Density Cost Reduction Extended Battery Life Fast-Charging Infrastructure Sustainable and Recyclable Batteries Emerging and Upcoming Trends in Electric Vehicle Batteries Technological Background Advancements in Electric Vehicle Batteries Technology Longer Battery Lifespan Recycling and Second-Life Applications Integration of Battery and Vehicle Systems Sustainable Battery Materials Collaborations and Partnerships Chapter 15 Patent Analysis Overview Key Patents Chapter 16 M&A and Funding Outlook M&A Analysis Start-up Funding in Electric Vehicle Batteries Chapter 17 Competitive Landscape Overview Market Share Analysis Market Strategy Analysis for Electric Vehicle Batteries Agreements Partnerships Product Launches Expansions Investments Key Market Developments Agreement Partnership Product Launch Expansion Investment Chapter 18 Company Profiles BYD CO. LTD. CONTEMPORARY AMPEREX TECHNOLOGY LTD. (CATL) CHINA LITHIUM BATTERY TECHNOLOGY CO. LTD. (CALB) CLARIOSNO ENERSYS ENVISION AUTOMOTIVE ENERGY SUPPLY CORP. (AESC) LG CHEM MITSUBISHI CORP. MOLICEL PANASONIC HOLDINGS CORP. SAMSUNG SDI CO. LTD. SK ON CO. LTD. TOSHIBA CORP. VEHICLE ENERGY JAPAN INC. PRIMEARTH EV ENERGY CO. LTD. Chapter 19 Appendix: Acronyms

 

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Summary

Report Scope:

This report provides an analysis of the global market for electric vehicle batteries. Using 2022 as the base year, the report provides estimated market data for 2023 through 2028. This report also offers insights on drivers and opportunities for the market, which were gathered through primary and secondary research. It also covers various market factors, including COVID-19 impact, the Russia-Ukraine war, Porter’s five forces, use case analysis, and the regulatory landscape.

The report has been prepared in a simple, easy-to-understand format, with some tables and charts/figures. The report’s scope includes a detailed study of global and regional markets for battery type, propulsion, vehicle type, method, battery capacity, battery form, and material type. The qualitative and quantitative data of all segments are provided in the report. The report examines each segment, determines its current market size, and estimates its future market size with compound annual growth rates (CAGR).

The report also provides detailed profiles of the significant electric vehicle battery players and their strategies to enhance their market presence. The report also includes a competitive landscape chapter that discusses the market ecosystem of the top electric vehicle battery provider in 2022.

Report Includes:

- 47 data tables and 51 additional tables
- An overview of the global markets for electrical vehicle battery
- Estimation of market size and analyses of global market trends, with data from 2022, estimates for 2023 and 2024, and projections of compound annual growth rates (CAGRs) through 2028
- Highlights of the market potential and characterization of electrical vehicle battery market by battery type, propulsion, vehicle type, method, battery capacity, battery form, material type and region
- Insights into government initiatives, laws, and incentives to encourage electric vehicle usage and information on significant improvements in battery chemistry, materials, and manufacturing techniques
- Description of gigafactories, the companies who run them and discussion on how they help in improving battery production capacity resulting in low cost and easy availability of EV batteries
- Coverage of emerging technologies and developments of the industry
- Evaluation of key industry acquisitions and strategic alliances and market share analysis of the leading suppliers of the industry
- Profiles of the key companies of the industry, including BYD Co. Ltd., LG Chem, Mitsubishi Corp., Panasonic Holdings Corp. and Toshiba Corp.



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Table of Contents

Table of Contents Chapter 1 Introduction Overview Study Goals and Objectives Reasons for Doing This Study Scope of Report Methodology Information Sources Geographic Breakdown Chapter 2 Summary and Highlights Market Overview Chapter 3 Market Overview Introduction Evolution of Electric Vehicle Batteries Value Chain AnalysisValue Chain Analysis Raw and Processed Materials Cell Component Manufacturing Cell Manufacturing Battery Pack Manufacturing Electric Vehicles Manufacturing Recycling Porter's Five Forces Model Supplier Power Buyer Power Threat of New Entrants Threat of Substitute Competitive Rivalry Impact of COVID-19 and Ukraine-Russia War on the Global Market COVID-19 Impact Impact of the Russia-Ukraine War Chapter 4 Market Dynamics Overview Key Market Drivers Increase in Demand for Electric Vehicles (HEVs, PHEVs, Pure EVs, and FCEVs) Cost Reductions for EV Batteries Growing Demand for Clean Energy Reduction of Carbon Emissions Market Restraints High Capital Cost for Electric Vehicles Compared to Conventional ICE Vehicles Inadequate Electric Vehicle Charging Infrastructure Key Challenges in the Market for Electric Vehicle Batteries Battery Capacity is Limited Inadequate Uniformity of Electric Vehicle Charging Infrastructure Market Opportunities Government Efforts Relating to Electric Vehicles Government Agencies are Promoting the Establishment of Electric Charging Stations To Feed the Market, Researchers are Developing Wireless EV Charging Technologies for On-the-Go Charging Short-Term and Long-Term Impact of Market Dynamics Chapter 5 Market Breakdown by Type of Battery Overview Lithium-Ion Batteries and Advanced Batteries Lithium Battery Chemistry Construction of Lithium-Ion Batteries Advance Battery Solid-State Batteries Sodium-Ion Battery Nickel-Metal Hydride Batteries Lead-Acid Batteries Chapter 6 Market Breakdown by Type of Propulsion Overview Battery Electric Vehicle (BEV) Market Drivers for Battery Electric Vehicles Key Components of Battery Electric Vehicle (BEV) Hybrid Electric Vehicle (HEV) Market Drivers for Hybrid Electric Vehicles Operation of Hybrid Electric Vehicles Key Components of a Hybrid Electric Vehicle (HEV) Plug-in Hybrid Electric Vehicle (PHEV) Operation of Plug-in Hybrid Electric Vehicles Market Drivers for Plug-in Hybrid Electric Vehicle Key Components of a Plug-in Hybrid Electric Car (PHEV) Fuel Cell Electric Vehicle (FCEV) Key Components of a Fuel Cell Electric Vehicle (FCEV) Chapter 7 Market Breakdown by Type of Vehicle Overview Passenger Cars Passenger Vehicle Market Summary Vans Bus Electric Bus Market Summary Truck Other Types of Vehicles Two-Wheeler Off-Highway Vehicle Chapter 8 Market Breakdown by Bonding Method Overview Wire Bonding Laser Bonding Chapter 9 Market Breakdown by Battery Capacity Overview <50 kWh 50-100 kWh 100-200 kWh 200-300 kWh >300 kWh Chapter 10 Market Breakdown by Battery Form Overview Prismatic Cylindrical Pouch Chapter 11 Market Breakdown by Type of Material Overview Lithium Cobalt Nickel Other Types of Materials Manganese Natural Graphite Chapter 12 Market Breakdown by Region Overview North America U.S. Canada Europe Germany France Norway U.K. Rest of Europe Asia-Pacific China Japan South Korea India Rest of Asia-Pacific Rest of the World Middle East and Africa South America Chapter 13 ESG Development Overview Electric Vehicle Batteries and ESG are Closely Related Importance of ESG in the Electric Vehicle Battery Industry Approach by Electric Vehicle Batteries to Achieve ESG Goals ESG Penetration for EV Battery Manufactures Current Status of ESG in the Market for Electric Vehicle Batteries Future of ESG with Electric Vehicle Battery Industry Case Study: Examples of Successful Implementation of ESG Concluding Remarks from BCC Chapter 14 Emerging Technologies and Developments Introduction Current Market Trends Increased Energy Density Cost Reduction Extended Battery Life Fast-Charging Infrastructure Sustainable and Recyclable Batteries Emerging and Upcoming Trends in Electric Vehicle Batteries Technological Background Advancements in Electric Vehicle Batteries Technology Longer Battery Lifespan Recycling and Second-Life Applications Integration of Battery and Vehicle Systems Sustainable Battery Materials Collaborations and Partnerships Chapter 15 Patent Analysis Overview Key Patents Chapter 16 M&A and Funding Outlook M&A Analysis Start-up Funding in Electric Vehicle Batteries Chapter 17 Competitive Landscape Overview Market Share Analysis Market Strategy Analysis for Electric Vehicle Batteries Agreements Partnerships Product Launches Expansions Investments Key Market Developments Agreement Partnership Product Launch Expansion Investment Chapter 18 Company Profiles BYD CO. LTD. CONTEMPORARY AMPEREX TECHNOLOGY LTD. (CATL) CHINA LITHIUM BATTERY TECHNOLOGY CO. LTD. (CALB) CLARIOSNO ENERSYS ENVISION AUTOMOTIVE ENERGY SUPPLY CORP. (AESC) LG CHEM MITSUBISHI CORP. MOLICEL PANASONIC HOLDINGS CORP. SAMSUNG SDI CO. LTD. SK ON CO. LTD. TOSHIBA CORP. VEHICLE ENERGY JAPAN INC. PRIMEARTH EV ENERGY CO. LTD. Chapter 19 Appendix: Acronyms

 

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