Battery Recycling Market Forecasts to 2032 – Global Analysis By Battery Chemistry (Lead-Acid Batteries, Lithium-Ion Batteries (LIBs), Nickel-Based Batteries, and Other Battery Chemistries), Material Recovered (Metals, Plastics, Electrolytes, and Other Mat
Description
According to Stratistics MRC, the Global Battery Recycling Market is accounted for $29.1 billion in 2025 and is expected to reach $65.3 billion by 2032, growing at a CAGR of 12.2% during the forecast period. Battery recycling involves the collection, disassembly, processing, and material recovery of used batteries from consumer electronics, electric vehicles, and industrial systems. It aims to recover important metals like lithium, cobalt, nickel, and copper using different methods, which helps create a sustainable system, decreases the need for mined materials, lessens environmental harm, and provides a steady supply of essential materials for the expanding energy-storage and transportation industries.
Market Dynamics:
Driver:
Rapid growth in electric vehicles (EVs) and consumer electronics
The exponential adoption of electric vehicles and the relentless consumer demand for electronics like smartphones and laptops are primary engines for the battery recycling market. This surge directly translates into a growing stream of end-of-life lithium-ion batteries, creating a critical and expanding supply of recyclable materials. Furthermore, stringent government regulations and corporate sustainability goals are pressuring manufacturers to secure a responsible end-of-life for these products, thereby formalizing and accelerating the need for robust recycling infrastructure and services on a global scale.
Restraint:
Complex disassembly processes and safety hazards
The intricate and varied designs of modern battery packs, particularly for EVs, pose a significant barrier to efficient recycling. Disassembling these units is highly labor-intensive and requires specialized equipment to mitigate serious risks, including thermal runaway, fires, and exposure to toxic chemicals. These safety hazards necessitate substantial investment in advanced facilities and worker training, which increases operational expenses. Consequently, this economic and technical challenge can hinder market profitability and slow down the scaling of recycling operations for newer battery chemistries.
Opportunity:
Development of advanced hydrometallurgical and direct recycling technologies
Significant opportunity lies in the innovation of next-generation recycling technologies, such as hydrometallurgical processes and direct recycling methods. These advanced techniques promise higher recovery rates of valuable cathode materials like lithium, cobalt, and nickel compared to traditional pyrometallurgy. Moreover, they are often more energy-efficient and generate fewer emissions. This technological leap enhances the economic viability of recycling and supports the creation of a circular economy, making it a key area for strategic investment and competitive differentiation within the market.
Threat:
Volatility in raw material prices
A major threat to the battery recycling market's stability is the inherent volatility in the prices of key raw materials, such as lithium and cobalt. Sharp declines in virgin material prices can suddenly make recycled alternatives less economically attractive, undermining the business case for recyclers. This price uncertainty complicates long-term investment planning and can deter the financing needed for new recycling facilities. Therefore, the unpredictable dynamics of the global commodity markets partially tether the market's profitability, creating a persistent financial risk.
Covid-19 Impact:
The COVID-19 pandemic initially disrupted the battery recycling market through nationwide lockdowns, which caused temporary collection center closures and severe bottlenecks in supply chains and logistics. This led to a constricted supply of end-of-life batteries and delayed recycling operations. However, the market demonstrated resilience and began recovering as restrictions eased. The period also reinforced the strategic importance of establishing localized and secure supply chains for critical battery materials, potentially accelerating long-term policy support for the recycling industry in a post-pandemic era.
The lead-acid batteries segment is expected to be the largest during the forecast period
The lead-acid batteries segment is expected to account for the largest market share during the forecast period, attributed to its well-established, decades-old recycling infrastructure and its ubiquitous use in automotive starter batteries and uninterruptible power supplies. Due to the high value of recovered lead, the recycling process for lead-acid is mature, highly efficient, and economically compelling. Additionally, stringent global regulations mandating the recycling of these batteries ensure a consistent and high-volume feedstock, securing its position as the largest segment for the foreseeable future.
The metals segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the metals segment is predicted to witness the highest growth rate, driven by the urgent need to recover high-value materials like lithium, cobalt, and nickel from spent lithium-ion batteries. These metals are critical for manufacturing new EV batteries, and their procurement from recycled sources is becoming a strategic imperative to mitigate supply chain risks and price volatility. Also, new recycling technologies are making it easier to get more and cleaner metals from old batteries, making it more attractive to invest in metal recovery.
Region with largest share:
During the forecast period, the Europe region is expected to hold the largest market share due to the European Union's proactive and stringent regulatory framework. Policies like the Battery Directive and the ambitious European Green Deal impose extended producer responsibility, setting high collection and recycling targets. This pressure from regulations, along with strong government backing for recycling and advanced recycling facilities, creates a well-organized system that forces companies to follow the rules and helps Europe lead in battery recycling worldwide.
Region with highest CAGR:
Over the forecast period, the Asia Pacific region is anticipated to exhibit the highest CAGR, fueled by a massive and rapidly expanding consumer electronics market and the world's fastest-growing EV fleet, particularly in China, Japan, and South Korea. This generates an immense and growing volume of battery waste. Moreover, governments in the region are increasingly implementing policies to manage this waste stream and secure domestic supplies of critical raw materials, attracting substantial investments in new recycling capacity and driving remarkable market expansion.
Key players in the market
Some of the key players in Battery Recycling Market include Umicore N.V., Li-Cycle Holdings Corp., Redwood Materials, Inc., Glencore plc, Stena Metall AB, Ecobat Limited, Accurec Recycling GmbH, American Battery Technology Company, Inc., RecycLiCo Battery Materials Inc., Neometals Ltd, Duesenfeld GmbH, Retriev Technologies, Inc., Cirba Solutions, LLC, Fortum Corporation, Ganfeng Lithium Group Co., Ltd., LG Energy Solution, Ltd., Call2Recycle, Inc., Aqua Metals, Inc., and East Penn Manufacturing Co.
Key Developments:
In June 2025, Redwood Materials announced a $350M Series E to accelerate critical-materials recovery and published multiple 2025 site expansions and R&D centre openings.
In April 2025, LG Energy Solution announced a battery-recycling joint venture in Europe with Derichebourg (pre-processing facility) and additional US/partner recycling ventures.
In April 2025, Umicore announced new battery-recycling service agreements and continues to publish battery-recycling updates on its Battery Recycling Solutions pages.
Battery Chemistries Covered:
• Lead-Acid Batteries
• Lithium-Ion Batteries (LIBs)
• Nickel-Based Batteries
• Other Battery Chemistries
Material Recovered Covered:
• Metals
• Plastics
• Electrolytes
• Other Materials
Sources Covered:
• Automotive/Transportation Batteries
• Industrial Batteries
• Consumer Electronics Batteries
• Other Sources
Recycling Process Covered:
• Pyrometallurgical Process
• Hydrometallurgical Process
• Direct Physical Recycling
• Mechanical Pre-Treatment
• Other Recycling Process
Regions Covered:
• North America
US
Canada
Mexico
• Europe
Germany
UK
Italy
France
Spain
Rest of Europe
• Asia Pacific
Japan
China
India
Australia
New Zealand
South Korea
Rest of Asia Pacific
• South America
Argentina
Brazil
Chile
Rest of South America
• Middle East & Africa
Saudi Arabia
UAE
Qatar
South Africa
Rest of Middle East & Africa
What our report offers:
- Market share assessments for the regional and country-level segments
- Strategic recommendations for the new entrants
- Covers Market data for the years 2024, 2025, 2026, 2028, and 2032
- Market Trends (Drivers, Constraints, Opportunities, Threats, Challenges, Investment Opportunities, and recommendations)
- Strategic recommendations in key business segments based on the market estimations
- Competitive landscaping mapping the key common trends
- Company profiling with detailed strategies, financials, and recent developments
- Supply chain trends mapping the latest technological advancements
Market Dynamics:
Driver:
Rapid growth in electric vehicles (EVs) and consumer electronics
The exponential adoption of electric vehicles and the relentless consumer demand for electronics like smartphones and laptops are primary engines for the battery recycling market. This surge directly translates into a growing stream of end-of-life lithium-ion batteries, creating a critical and expanding supply of recyclable materials. Furthermore, stringent government regulations and corporate sustainability goals are pressuring manufacturers to secure a responsible end-of-life for these products, thereby formalizing and accelerating the need for robust recycling infrastructure and services on a global scale.
Restraint:
Complex disassembly processes and safety hazards
The intricate and varied designs of modern battery packs, particularly for EVs, pose a significant barrier to efficient recycling. Disassembling these units is highly labor-intensive and requires specialized equipment to mitigate serious risks, including thermal runaway, fires, and exposure to toxic chemicals. These safety hazards necessitate substantial investment in advanced facilities and worker training, which increases operational expenses. Consequently, this economic and technical challenge can hinder market profitability and slow down the scaling of recycling operations for newer battery chemistries.
Opportunity:
Development of advanced hydrometallurgical and direct recycling technologies
Significant opportunity lies in the innovation of next-generation recycling technologies, such as hydrometallurgical processes and direct recycling methods. These advanced techniques promise higher recovery rates of valuable cathode materials like lithium, cobalt, and nickel compared to traditional pyrometallurgy. Moreover, they are often more energy-efficient and generate fewer emissions. This technological leap enhances the economic viability of recycling and supports the creation of a circular economy, making it a key area for strategic investment and competitive differentiation within the market.
Threat:
Volatility in raw material prices
A major threat to the battery recycling market's stability is the inherent volatility in the prices of key raw materials, such as lithium and cobalt. Sharp declines in virgin material prices can suddenly make recycled alternatives less economically attractive, undermining the business case for recyclers. This price uncertainty complicates long-term investment planning and can deter the financing needed for new recycling facilities. Therefore, the unpredictable dynamics of the global commodity markets partially tether the market's profitability, creating a persistent financial risk.
Covid-19 Impact:
The COVID-19 pandemic initially disrupted the battery recycling market through nationwide lockdowns, which caused temporary collection center closures and severe bottlenecks in supply chains and logistics. This led to a constricted supply of end-of-life batteries and delayed recycling operations. However, the market demonstrated resilience and began recovering as restrictions eased. The period also reinforced the strategic importance of establishing localized and secure supply chains for critical battery materials, potentially accelerating long-term policy support for the recycling industry in a post-pandemic era.
The lead-acid batteries segment is expected to be the largest during the forecast period
The lead-acid batteries segment is expected to account for the largest market share during the forecast period, attributed to its well-established, decades-old recycling infrastructure and its ubiquitous use in automotive starter batteries and uninterruptible power supplies. Due to the high value of recovered lead, the recycling process for lead-acid is mature, highly efficient, and economically compelling. Additionally, stringent global regulations mandating the recycling of these batteries ensure a consistent and high-volume feedstock, securing its position as the largest segment for the foreseeable future.
The metals segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the metals segment is predicted to witness the highest growth rate, driven by the urgent need to recover high-value materials like lithium, cobalt, and nickel from spent lithium-ion batteries. These metals are critical for manufacturing new EV batteries, and their procurement from recycled sources is becoming a strategic imperative to mitigate supply chain risks and price volatility. Also, new recycling technologies are making it easier to get more and cleaner metals from old batteries, making it more attractive to invest in metal recovery.
Region with largest share:
During the forecast period, the Europe region is expected to hold the largest market share due to the European Union's proactive and stringent regulatory framework. Policies like the Battery Directive and the ambitious European Green Deal impose extended producer responsibility, setting high collection and recycling targets. This pressure from regulations, along with strong government backing for recycling and advanced recycling facilities, creates a well-organized system that forces companies to follow the rules and helps Europe lead in battery recycling worldwide.
Region with highest CAGR:
Over the forecast period, the Asia Pacific region is anticipated to exhibit the highest CAGR, fueled by a massive and rapidly expanding consumer electronics market and the world's fastest-growing EV fleet, particularly in China, Japan, and South Korea. This generates an immense and growing volume of battery waste. Moreover, governments in the region are increasingly implementing policies to manage this waste stream and secure domestic supplies of critical raw materials, attracting substantial investments in new recycling capacity and driving remarkable market expansion.
Key players in the market
Some of the key players in Battery Recycling Market include Umicore N.V., Li-Cycle Holdings Corp., Redwood Materials, Inc., Glencore plc, Stena Metall AB, Ecobat Limited, Accurec Recycling GmbH, American Battery Technology Company, Inc., RecycLiCo Battery Materials Inc., Neometals Ltd, Duesenfeld GmbH, Retriev Technologies, Inc., Cirba Solutions, LLC, Fortum Corporation, Ganfeng Lithium Group Co., Ltd., LG Energy Solution, Ltd., Call2Recycle, Inc., Aqua Metals, Inc., and East Penn Manufacturing Co.
Key Developments:
In June 2025, Redwood Materials announced a $350M Series E to accelerate critical-materials recovery and published multiple 2025 site expansions and R&D centre openings.
In April 2025, LG Energy Solution announced a battery-recycling joint venture in Europe with Derichebourg (pre-processing facility) and additional US/partner recycling ventures.
In April 2025, Umicore announced new battery-recycling service agreements and continues to publish battery-recycling updates on its Battery Recycling Solutions pages.
Battery Chemistries Covered:
• Lead-Acid Batteries
• Lithium-Ion Batteries (LIBs)
• Nickel-Based Batteries
• Other Battery Chemistries
Material Recovered Covered:
• Metals
• Plastics
• Electrolytes
• Other Materials
Sources Covered:
• Automotive/Transportation Batteries
• Industrial Batteries
• Consumer Electronics Batteries
• Other Sources
Recycling Process Covered:
• Pyrometallurgical Process
• Hydrometallurgical Process
• Direct Physical Recycling
• Mechanical Pre-Treatment
• Other Recycling Process
Regions Covered:
• North America
US
Canada
Mexico
• Europe
Germany
UK
Italy
France
Spain
Rest of Europe
• Asia Pacific
Japan
China
India
Australia
New Zealand
South Korea
Rest of Asia Pacific
• South America
Argentina
Brazil
Chile
Rest of South America
• Middle East & Africa
Saudi Arabia
UAE
Qatar
South Africa
Rest of Middle East & Africa
What our report offers:
- Market share assessments for the regional and country-level segments
- Strategic recommendations for the new entrants
- Covers Market data for the years 2024, 2025, 2026, 2028, and 2032
- Market Trends (Drivers, Constraints, Opportunities, Threats, Challenges, Investment Opportunities, and recommendations)
- Strategic recommendations in key business segments based on the market estimations
- Competitive landscaping mapping the key common trends
- Company profiling with detailed strategies, financials, and recent developments
- Supply chain trends mapping the latest technological advancements
Table of Contents
200 Pages
- 1 Executive Summary
- 2 Preface
- 2.1 Abstract
- 2.2 Stake Holders
- 2.3 Research Scope
- 2.4 Research Methodology
- 2.4.1 Data Mining
- 2.4.2 Data Analysis
- 2.4.3 Data Validation
- 2.4.4 Research Approach
- 2.5 Research Sources
- 2.5.1 Primary Research Sources
- 2.5.2 Secondary Research Sources
- 2.5.3 Assumptions
- 3 Market Trend Analysis
- 3.1 Introduction
- 3.2 Drivers
- 3.3 Restraints
- 3.4 Opportunities
- 3.5 Threats
- 3.6 Emerging Markets
- 3.7 Impact of Covid-19
- 4 Porters Five Force Analysis
- 4.1 Bargaining power of suppliers
- 4.2 Bargaining power of buyers
- 4.3 Threat of substitutes
- 4.4 Threat of new entrants
- 4.5 Competitive rivalry
- 5 Global Battery Recycling Market, By Battery Chemistry
- 5.1 Introduction
- 5.2 Lead-Acid Batteries
- 5.2.1 Starting, Lighting, and Ignition (SLI) Batteries
- 5.2.2 Deep Cycle Batteries
- 5.3 Lithium-Ion Batteries (LIBs)
- 5.3.1 Lithium Nickel Manganese Cobalt (NMC)
- 5.3.2 Lithium Nickel Manganese Cobalt (NMC)
- 5.3.3 Lithium Cobalt Oxide (LCO)
- 5.3.4 Other Lithium-Ion Batteries
- 5.4 Nickel-Based Batteries
- 5.4.1 Nickel-Metal Hydride (NiMH)
- 5.4.2 Nickel-Cadmium (NiCd)
- 5.5 Other Battery Chemistries
- 6 Global Battery Recycling Market, By Material Recovered
- 6.1 Introduction
- 6.2 Metals
- 6.2.1 Lead
- 6.2.2 Lithium
- 6.2.3 Cobalt
- 6.2.4 Nickel
- 6.2.5 Manganese
- 6.2.6 Other Metals
- 6.3 Plastics
- 6.4 Electrolytes
- 6.5 Other Materials
- 7 Global Battery Recycling Market, By Source
- 7.1 Introduction
- 7.2 Automotive/Transportation Batteries
- 7.2.1 Electric Vehicles (EVs)
- 7.2.2 ICE Vehicles
- 7.3 Industrial Batteries
- 7.3.1 Energy Storage Systems (ESS)
- 7.3.2 Uninterruptible Power Supply (UPS)
- 7.3.3 Motive/Forklift Batteries
- 7.4 Consumer Electronics Batteries
- 7.4.1 Laptops and Tablets
- 7.4.2 Mobile Phones
- 7.4.3 Other Consumer Electronics Batteries
- 7.5 Other Sources
- 8 Global Battery Recycling Market, By Recycling Process
- 8.1 Introduction
- 8.2 Pyrometallurgical Process
- 8.3 Hydrometallurgical Process
- 8.4 Direct Physical Recycling
- 8.5 Mechanical Pre-Treatment
- 8.6 Other Recycling Process
- 9 Global Battery Recycling Market, By Geography
- 9.1 Introduction
- 9.2 North America
- 9.2.1 US
- 9.2.2 Canada
- 9.2.3 Mexico
- 9.3 Europe
- 9.3.1 Germany
- 9.3.2 UK
- 9.3.3 Italy
- 9.3.4 France
- 9.3.5 Spain
- 9.3.6 Rest of Europe
- 9.4 Asia Pacific
- 9.4.1 Japan
- 9.4.2 China
- 9.4.3 India
- 9.4.4 Australia
- 9.4.5 New Zealand
- 9.4.6 South Korea
- 9.4.7 Rest of Asia Pacific
- 9.5 South America
- 9.5.1 Argentina
- 9.5.2 Brazil
- 9.5.3 Chile
- 9.5.4 Rest of South America
- 9.6 Middle East & Africa
- 9.6.1 Saudi Arabia
- 9.6.2 UAE
- 9.6.3 Qatar
- 9.6.4 South Africa
- 9.6.5 Rest of Middle East & Africa
- 10 Key Developments
- 10.1 Agreements, Partnerships, Collaborations and Joint Ventures
- 10.2 Acquisitions & Mergers
- 10.3 New Product Launch
- 10.4 Expansions
- 10.5 Other Key Strategies
- 11 Company Profiling
- 11.1 Umicore N.V.
- 11.2 Li-Cycle Holdings Corp.
- 11.3 Redwood Materials, Inc.
- 11.4 Glencore plc
- 11.5 Stena Metall AB
- 11.6 Ecobat Limited
- 11.7 Accurec Recycling GmbH
- 11.8 American Battery Technology Company, Inc.
- 11.9 RecycLiCo Battery Materials Inc.
- 11.10 Neometals Ltd
- 11.11 Duesenfeld GmbH
- 11.12 Retriev Technologies, Inc.
- 11.13 Cirba Solutions, LLC
- 11.14 Fortum Corporation
- 11.15 Ganfeng Lithium Group Co., Ltd.
- 11.16 LG Energy Solution, Ltd.
- 11.17 Call2Recycle, Inc.
- 11.18 Aqua Metals, Inc.
- 11.19 East Penn Manufacturing Co.
- List of Tables
- Table 1 Global Battery Recycling Market Outlook, By Region (2024–2032) ($MN)
- Table 2 Global Battery Recycling Market Outlook, By Battery Chemistry (2024–2032) ($MN)
- Table 3 Global Battery Recycling Market Outlook, By Lead-Acid Batteries (2024–2032) ($MN)
- Table 4 Global Battery Recycling Market Outlook, By Starting, Lighting, and Ignition (SLI) Batteries (2024–2032) ($MN)
- Table 5 Global Battery Recycling Market Outlook, By Deep Cycle Batteries (2024–2032) ($MN)
- Table 6 Global Battery Recycling Market Outlook, By Lithium-Ion Batteries (LIBs) (2024–2032) ($MN)
- Table 7 Global Battery Recycling Market Outlook, By Lithium Nickel Manganese Cobalt (NMC) (2024–2032) ($MN)
- Table 8 Global Battery Recycling Market Outlook, By Lithium Cobalt Oxide (LCO) (2024–2032) ($MN)
- Table 9 Global Battery Recycling Market Outlook, By Other Lithium-Ion Batteries (2024–2032) ($MN)
- Table 10 Global Battery Recycling Market Outlook, By Nickel-Based Batteries (2024–2032) ($MN)
- Table 11 Global Battery Recycling Market Outlook, By Nickel-Metal Hydride (NiMH) (2024–2032) ($MN)
- Table 12 Global Battery Recycling Market Outlook, By Nickel-Cadmium (NiCd) (2024–2032) ($MN)
- Table 13 Global Battery Recycling Market Outlook, By Other Battery Chemistries (2024–2032) ($MN)
- Table 14 Global Battery Recycling Market Outlook, By Material Recovered (2024–2032) ($MN)
- Table 15 Global Battery Recycling Market Outlook, By Metals (2024–2032) ($MN)
- Table 16 Global Battery Recycling Market Outlook, By Lead (2024–2032) ($MN)
- Table 17 Global Battery Recycling Market Outlook, By Lithium (2024–2032) ($MN)
- Table 18 Global Battery Recycling Market Outlook, By Cobalt (2024–2032) ($MN)
- Table 19 Global Battery Recycling Market Outlook, By Nickel (2024–2032) ($MN)
- Table 20 Global Battery Recycling Market Outlook, By Manganese (2024–2032) ($MN)
- Table 21 Global Battery Recycling Market Outlook, By Other Metals (2024–2032) ($MN)
- Table 22 Global Battery Recycling Market Outlook, By Plastics (2024–2032) ($MN)
- Table 23 Global Battery Recycling Market Outlook, By Electrolytes (2024–2032) ($MN)
- Table 24 Global Battery Recycling Market Outlook, By Other Materials (2024–2032) ($MN)
- Table 25 Global Battery Recycling Market Outlook, By Source (2024–2032) ($MN)
- Table 26 Global Battery Recycling Market Outlook, By Automotive/Transportation Batteries (2024–2032) ($MN)
- Table 27 Global Battery Recycling Market Outlook, By Electric Vehicles (EVs) (2024–2032) ($MN)
- Table 28 Global Battery Recycling Market Outlook, By ICE Vehicles (2024–2032) ($MN)
- Table 29 Global Battery Recycling Market Outlook, By Industrial Batteries (2024–2032) ($MN)
- Table 30 Global Battery Recycling Market Outlook, By Energy Storage Systems (ESS) (2024–2032) ($MN)
- Table 31 Global Battery Recycling Market Outlook, By Uninterruptible Power Supply (UPS) (2024–2032) ($MN)
- Table 32 Global Battery Recycling Market Outlook, By Motive/Forklift Batteries (2024–2032) ($MN)
- Table 33 Global Battery Recycling Market Outlook, By Consumer Electronics Batteries (2024–2032) ($MN)
- Table 34 Global Battery Recycling Market Outlook, By Laptops and Tablets (2024–2032) ($MN)
- Table 35 Global Battery Recycling Market Outlook, By Mobile Phones (2024–2032) ($MN)
- Table 36 Global Battery Recycling Market Outlook, By Other Consumer Electronics Batteries (2024–2032) ($MN)
- Table 37 Global Battery Recycling Market Outlook, By Other Sources (2024–2032) ($MN)
- Table 38 Global Battery Recycling Market Outlook, By Recycling Process (2024–2032) ($MN)
- Table 39 Global Battery Recycling Market Outlook, By Pyrometallurgical Process (2024–2032) ($MN)
- Table 40 Global Battery Recycling Market Outlook, By Hydrometallurgical Process (2024–2032) ($MN)
- Table 41 Global Battery Recycling Market Outlook, By Direct Physical Recycling (2024–2032) ($MN)
- Table 42 Global Battery Recycling Market Outlook, By Mechanical Pre-Treatment (2024–2032) ($MN)
- Table 43 Global Battery Recycling Market Outlook, By Other Recycling Process (2024–2032) ($MN)
- Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.
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