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市場調査レポート
商品コード
1702236
電気自動車用バッテリーリサイクルの市場規模、シェア、動向、予測:タイプ別、車両タイプ別、用途別、地域別、2025年~2033年Electric Vehicle Battery Recycling Market Size, Share, and Trends by Type, Vehicle Type, Application, Region, and Forecast 2025-2033 |
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電気自動車用バッテリーリサイクルの市場規模、シェア、動向、予測:タイプ別、車両タイプ別、用途別、地域別、2025年~2033年 |
出版日: 2025年04月01日
発行: IMARC
ページ情報: 英文 135 Pages
納期: 2~3営業日
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電気自動車用バッテリーリサイクルの世界市場規模は2024年に36億米ドルとなりました。今後、IMARC Groupは、市場は2033年までに249億米ドルに達し、2025年から2033年にかけて23.9%のCAGRを示すと予測しています。現在、アジア太平洋地域が市場を独占しており、2024年には50%を超える大きな市場シェアを占めています。電気自動車(EV)の採用が増加していること、持続可能性に対する消費者の意識が高まっていること、広範な研究開発(R&D)活動、厳しい政府規制の賦課などが、市場成長を後押しする主な要因となっています。
電気自動車(EV)バッテリーのリサイクルとは、使用済みまたは使用済みの電気自動車バッテリーから貴重な材料を回収するプロセスを指します。バッテリーの回収、選別、検査、改修、分解、破砕、化学物質の回収、材料の精製など、複数の工程が含まれます。EVバッテリーのリサイクルは、バッテリー製造、エネルギー貯蔵、セカンドライフ・アプリケーション、家電製品、資源保護に広く利用されています。貴重な材料を効率的に回収して再利用することができ、原材料の採取に伴う環境への影響を最小限に抑えることができます。EVバッテリーのリサイクルは、コスト削減、エネルギー効率の改善、持続可能な慣行の促進にも役立ちます。
炭素排出を最小限に抑え、循環型経済を推進するためにいくつかの政府が厳しい規制を課していることは、廃棄物を最小限に抑え、資源を節約し、電池の生産と廃棄に伴う生態系への影響を軽減するのに役立つため、プロセス需要を促進しています。さらに、リチウム、コバルト、ニッケルなどの希少資源の効率的な回収と再利用を可能にするプロセス利用の増加が、市場の成長に寄与しています。さらに、持続可能なサプライチェーン管理が重視されるようになったことで、電池メーカーや自動車メーカーは新しい電池の生産にリサイクル材料を取り入れるようになり、これが市場の成長をさらに促進しています。その他、資源不足の深刻化、高度なリサイクル手法の開発への投資の増加、EVバッテリーのリサイクルの利点に関する意識の高まりなどが、市場成長を促進すると予想されます。
電気自動車(EV)の普及拡大
EV用バッテリーには、リチウム、コバルト、ニッケル、その他の金属など、貴重で希少な資源が含まれています。EVの需要が高まるにつれて、これらの資源の利用可能性が重要になります。EVバッテリーのリサイクルは、これらの貴重な材料の回収と再利用を可能にするため、一次採掘活動への依存を減らすことができます。さらに、EVバッテリーのリサイクルは、バッテリーのサプライチェーンの安全性と安定性に貢献し、EV産業の脆弱性を軽減します。さらに、自動車メーカーにとってはコスト削減の可能性があり、EVがより手頃な価格で市場競争力を持つようになります。さらに、バッテリーの適切なリサイクルと廃棄は、環境汚染の防止と循環型経済の促進に役立ちます。
持続可能性に対する消費者の意識の高まり
EVバッテリーのリサイクルは、EVバッテリーに不可欠なリチウム、コバルト、ニッケル、その他の金属などの貴重な資源の保護に貢献します。この保全は、資源管理に対するより持続可能で責任あるアプローチをサポートします。さらに、EVバッテリーのリサイクルは、バッテリーが適切に管理され、貴重な材料が回収されることで、廃棄物の発生を最小限に抑えます。これとともに、バッテリー素材のループを閉じ、新たな資源採取の必要性を最小限に抑えることで、循環型経済にも貢献しています。さらに、EVバッテリーのリサイクルは、有害物質が土壌や水に放出され、汚染や生態系の破壊につながるのを防ぐことで、環境保護に重要な役割を果たしています。また、バッテリー生産に伴うエネルギーと排出を最小限に抑えることで、カーボンフットプリントの削減にも間接的に貢献しています。
広範な研究開発(R&D)活動
最近のカソード直接リサイクル法の開発は、使用済みEVバッテリーからカソード材料を直接リサイクルすることに重点を置いているため、コストを節約し、リサイクル工程を簡素化し、大規模なバッテリー解体の必要性を排除することができ、市場拡大に寄与しています。さらに、選択的回収プロセスの導入により、的を絞った材料抽出が可能になり、資源効率が向上し、リサイクルによる環境への影響が低減されることも、市場成長にプラスの影響を与えています。さらに、マシンビジョン、ロボット工学、人工知能(AI)を活用して効率を改善し、作業員の安全性を高め、電池部品の選別と分離を可能にすることが、市場の成長を強化しています。さらに、抽出効率を高め、必要なエネルギーを削減し、材料回収率を最適化する電気化学的および高温冶金的手法の開発が、市場成長を促進しています。
The global electric vehicle battery recycling market size was valued at USD 3.6 Billion in 2024. Looking forward, IMARC Group estimates the market to reach USD 24.9 Billion by 2033, exhibiting a CAGR of 23.9% during 2025-2033. Asia Pacific currently dominates the market, holding a significant market share of over 50% in 2024. The increasing adoption of electric vehicles (EVs), growing consumer awareness towards sustainability, extensive research and development (R&D) activities, and the imposition of stringent government regulations are some of the major factors propelling the market growth.
Electric vehicle (EV) battery recycling refers to the process of recovering valuable materials from used or end-of-life electric vehicle batteries. It involves multiple steps, including battery collection, sorting and testing, refurbishment, disassembly, shredding, chemical recovery, and material purification. EV battery recycling is widely used in battery manufacturing, energy storage, second-life applications, consumer electronics, and resource conservation. It allows efficient recovery and reuse of valuable materials and minimizes the environmental impact associated with raw material extraction. EV battery recycling also aids in saving costs, improving energy efficiency, and promoting sustainable practices.
The imposition of stringent regulations by several governments to minimize carbon emissions and promote a circular economy is facilitating the process demand, as it aids in minimizing waste, conserving resources, and reducing the ecological impact of battery production and disposal. Furthermore, the increasing process utilization to enable efficient recovery and reuse of scarce resources, such as lithium, cobalt, and nickel, is contributing to the market growth. Additionally, the growing emphasis on sustainable supply chain management has prompted battery manufacturers and automakers to incorporate recycled materials in the production of new batteries, which is further catalyzing the market growth. Other factors, including rising scarcity of resources, increasing investment in the development of advanced recycling methods, and growing awareness regarding the benefits of EV battery recycling, are anticipated to drive the market growth.
The increasing adoption of electric vehicles (EVs)
EV batteries contain valuable and scarce resources such as lithium, cobalt, nickel, and other metals. As the demand for EVs rises, the availability of these resources becomes critical. EV battery recycling enables the recovery and reuse of these valuable materials, thus reducing the dependence on primary mining activities. Furthermore, EV battery recycling contributes to the security and stability of the battery supply chain, which reduces the vulnerability of the EV industry. Additionally, it offers potential cost savings for automotive manufacturers, making EVs more affordable and competitive in the market. Moreover, proper recycling and disposal of the batteries assist in preventing environmental pollution and promoting a circular economy.
The growing consumer awareness towards sustainability
EV battery recycling contributes to the conservation of valuable resources, such as lithium, cobalt, nickel, and other metals, which are essential components of EV batteries. This conservation supports a more sustainable and responsible approach to resource management. Furthermore, EV battery recycling aids in minimizing waste generation by ensuring that batteries are properly managed, and valuable materials are recovered. Along with this, it contributes to the circular economy by closing the loop on battery materials and minimizing the need for new resource extraction. Additionally, EV battery recycling plays a crucial role in protecting the environment by preventing the release of hazardous substances into the soil and water, leading to pollution and ecological damage. It also indirectly contributes to carbon footprint reduction by minimizing the energy and emissions associated with battery production.
Extensive research and development (R&D) activities
The recent development of direct cathode recycling methods, which focuses on recycling the cathode materials directly from spent EV batteries, thus saving costs, simplifying the recycling process, and eliminating the need for extensive battery disassembly, is contributing to the market growth. Furthermore, the introduction of selective recovery processes, which enable targeted material extraction, improve resource efficiency, and reduce the environmental impact of recycling, is positively influencing the market growth. Additionally, the utilization of machine vision, robotics, and artificial intelligence (AI) to improve efficiency, enhance worker safety, and enable sorting and separation of battery components is strengthening the market growth. Moreover, the development of electrochemical and pyrometallurgical methods that enhance extraction efficiency, reduce energy requirements, and optimize material recovery rates are propelling the market growth.
Lithium-ion dominates the market
Lithium-ion batteries are dominating the market as they are widely used in electric vehicles (EVs) owing to their high energy density, long cycle life, and excellent power-to-weight ratio. Furthermore, the increasing volume of end-of-life lithium-ion batteries is creating a strong demand for recycling services specifically tailored to this battery chemistry. Additionally, lithium-ion batteries contain valuable resources, including lithium, cobalt, nickel, and other metals that are in high demand for the production of new batteries, consumer electronics, and renewable energy storage. Moreover, the recent advancements in sorting, disassembly, and material recovery techniques have made it increasingly efficient and economically viable to recycle lithium-ion batteries, which is further driving the market growth. Apart from this, the presence of a well-established recycling infrastructure for lithium-ion batteries is acting as another growth-inducing factor.
Hydrometallurgical dominates the market
Hydrometallurgical processes offer efficient extraction of valuable metals from EV batteries. These processes involve the use of aqueous solutions, such as acids or leaching agents, to dissolve the metals present in the batteries. Furthermore, it is a highly versatile process that can be applied to multiple battery chemistries, including lithium-ion (Li-ion) batteries, thus contributing to the market growth. Additionally, the hydrometallurgical process is effective in recovering valuable metals, such as cobalt, lithium, nickel, and manganese, from EV batteries that are essential for the production of new batteries and have significant economic value. Moreover, it is considered an environmentally friendly process as it involves milder reaction conditions, lower energy consumption, and reduced emissions of greenhouse gases (GHGs). Apart from this, hydrometallurgical processes provide excellent selectivity for recovering specific metals from batteries, which aids in maximizing resource efficiency and purity of the recovered metals.
Passenger cars are widely used by consumers, which leads to a larger volume of passenger car batteries reaching the end of their life cycle and entering the recycling market. Furthermore, passenger car owners often replace their vehicles within a shorter time frame to maintain the efficiency and mileage of the car, which is further driving the market growth. Additionally, the rising demand for new models of passenger cars among consumers is acting as another growth-inducing factor.
Commercial vehicles are extensively used, covering longer distances and operating for extended periods. This leads to faster depletion of battery capacity and a shorter lifespan for commercial vehicle batteries. As a result, they require battery replacements more frequently, leading to a higher recycling rate. Furthermore, commercial vehicles are operated in fleets, managed by transit agencies, logistics companies, or businesses, which enables more streamlined battery collection and recycling processes.
Electric cars have achieved significant market penetration and are increasingly popular among consumers, which is contributing to a higher volume of electric vehicle batteries reaching the end of their life cycle. Furthermore, the imposition of strict government regulations to encourage the recycling and responsible disposal of electric vehicle batteries is positively influencing the market growth. Additionally, the rapid development of infrastructure for collecting, handling, and recycling electric car batteries is acting as another growth-inducing factor.
Electric buses are equipped with larger battery packs compared to passenger electric cars, which translates to a higher volume of batteries being recycled when electric buses reach the end of their life cycle. Furthermore, they are widely used in public transportation systems and have higher mileage compared to passenger electric cars. This intensive use results in a faster depletion of battery capacity which further increases the need for replacements, which is acting as another growth-inducing factor.
Asia Pacific exhibits a clear dominance in the market, accounting for the largest electric vehicle battery recycling market share
The report has also provided a comprehensive analysis of all the major regional markets, which includes North America (the United States and Canada); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa. According to the report, Asia Pacific represented the largest market segment.
The Asia Pacific region holds the majority of the market share as it has witnessed significant growth in the adoption of electric vehicles (EVs). Furthermore, it is a major hub for battery production, with several leading battery manufacturers located in the region. This proximity to battery manufacturers enables efficient collection and recycling of batteries, reducing logistical challenges and costs. Additionally, Asia Pacific is at the forefront of developing and implementing advanced recycling technologies for lithium-ion batteries, which is further strengthening its dominance in the market. Moreover, the imposition of favorable policies by the regional governments to mandate the responsible management and recycling of end-of-life batteries is contributing to the market growth. Apart from this, easy access to the raw materials required for battery production and recycling, such as lithium, cobalt, and nickel, is favoring the market growth.
The leading companies in the market are investing in research and development to advance recycling technologies and processes. They are focusing on improving the efficiency, cost-effectiveness, and environmental sustainability of EV battery recycling. Furthermore, several key players are forming partnerships with battery manufacturers, automakers, and other stakeholders in the EV industry to establish a reliable supply chain and gain continuous access to end-of-life batteries. Additionally, companies are expanding their operations and presence in different regions to tap into emerging opportunities and cater to the growing demand for EV battery recycling services across the globe. Moreover, top companies are implementing eco-friendly processes, reducing waste generation, and ensuring compliance with environmental regulations to strengthen their market presence and gain advantages over competitors.
ACCUREC-Recycling GmbH
American Manganese Inc.
Battery Solutions
G & P Batteries Limited
Li-Cycle Corp.
Retriev Technologies
SITRASA
SNAM Groupe (Floridienne)
TES-Amm
Umicore N.V.