Lithium-Ion Battery Recycling Market Size, Trends and Insights By Battery Chemistry (Lithium-Iron Phosphate, Lithium-Manganese Oxide, Lithium-Nickel-Cobalt-Aluminum Oxide, Lithium-Nickel-Manganese Cobalt, Lithium-Titanate Oxide), By Source (Electric Vehicles, Electronics, Power Tools, Others), By Recycling Process (Hydrometallurgical Process, Physical/Mechanical Process, Pyrometallurgy Process), By End Use (Automotive, Non-Automotive), and By Region - Global Industry Overview, Statistical Data, Competitive Analysis, Share, Outlook, and Forecast 2025 – 2034
Report Snapshot
| Study Period: | 2025-2034 |
| Fastest Growing Market: | North America |
| Largest Market: | Asia-Pacific |
Major Players
- ACCUREC RECYCLING GMBH
- Lithion Recycling Inc.
- AMERICAN BATTERY SOURCE CORPORATION
- Duesenfeld GmbH
- Others
Reports Description
As per the Lithium-Ion Battery Recycling Market analysis conducted by CMI Team, the global Lithium-Ion Battery Recycling market is expected to record a CAGR of 25.6% from 2025 to 2034. In 2025, the market size is projected to reach a valuation of USD 13.1 Billion. By 2034, the valuation is anticipated to reach USD 102 Billion.
Overview
Lithium-ion battery recycling is the process of applying mechanical, chemical, and sometimes biological methods to recover usable metals like lithium, cobalt, nickel, and copper out of old or dead lithium-ion batteries. The lithium-ion battery recycling to protect the environment and make sure that resources endure longer. Lithium-ion batteries are used in the electric cars, portable devices, and energy storage that are becoming increasingly popular. This has made people concerned about running out of resources and what to do with old batteries. Recycling these batteries cuts down on pollution, saves important raw materials, and helps the circular economy by making new batteries out of the metals that are recovered.
Key Trends & Drivers
- Rapid growth of Electric Vehicles (EVs): The lithium-ion battery recycling industry is growing because electric vehicles (EVs) are growing quickly. These batteries don’t last long and include valuable but limited raw materials including lithium, cobalt, nickel, and manganese. The quantity of used or dead batteries goes up a lot as more people throughout the world buy and operate electric vehicles (EVs). This makes it very vital to find good ways to recycle rubbish and get back valuable resources that are good for the environment. For example, the International Energy Agency forecasts that sales of electric automobiles would rise by 25% and reach over 17 million worldwide by 2024. In 2024, there will be 3.5 million more cars delivered than there were electric cars sold in 2020.
- Growing installed base of consumer electronics & energy storage: The lithium-ion battery recycling sector is getting bigger because more and more people are buying gadgets and systems that store energy. More batteries are being thrown away from consumer electronics, energy storage systems are getting bigger, resources are running out, and the circular economy is becoming more popular. Because so many people want smartphones, laptops, tablets, and wearable electronics, all of which need lithium-ion batteries, there are a lot of batteries that are no longer useful. It is vitally crucial to recycle these devices correctly when their batteries approach closer to running out. This will help us cope with the rising amount of trash in a way that is good for the environment and helps us get back resources. Lithium-ion batteries are also utilized in solar battery banks and other systems that store renewable energy for houses. As more systems that use renewable energy are built, more batteries will cease working or become close to the end of their useful lives. It is becoming considerably more vital to recycle batteries so that lithium, cobalt, and nickel may be used again.
Challenges
- High capital investment & cost-intensive processes: The high capital investment & cost-intensive process posing a major challenge to the industry growth. For the startup of battery recycling business, one need to buy a lot of land, buildings, specialized equipment, and technology. The counterparts such as lead-acid batteries, lithium-ion recycling facilities have high start-up costs, making more challenging for small enterprises or new companies to get off the ground. The recycling methods such as hydrometallurgical and pyrometallurgical technologies uses a significant amount of resources. This means they need a significant amount of chemicals, energy, and waste management. These raise the costs of running the business all the time, which hamper its profit margins. Thus, posing a major challenge to the industry growth.
- Fluctuating prices of recovered materials: The lithium-ion battery recycling industry experiences a challenge in growing since the pricing of recovered components keep fluctuating. Prices for important metals like cobalt, lithium, and nickel that originate from lithium-ion batteries change a lot. As price swift quickly, recyclers find difficulty in precisely estimating their revenue and plan investment. This is because the way recycling companies can make money changes. The price of cobalt, in particular, has a big effect on how many batteries are recycled. This is because cobalt recovery is what makes recycling worth doing. People are less likely to recycle when prices go down. This could mean that recycled materials are less available exactly when demand rises up.
Opportunities
- Launches of recycling plants: The growing launch of new recycling facility is expected to offer a potential opportunity to the market growth over the forecast period. For instance, in October 2025, NavPrakriti announced the operations at Eastern India’s first lithium-ion battery recycling facility near Kolkata, preparing the region to handle projected battery waste from electric vehicles, consumer electronics, and industrial uses.
- Environmental Regulations & Policy Push: Environmental regulations & policy push offer a potential opportunity to the market growth. For instance, the new European Battery Regulation 2025, state that producers and collectors must meet tight recycling goals, like getting back at least 65% lithium and 70% nickel and cobalt in 2025. EPR legislation say that manufacturers must be fully responsible for collecting and recycling batteries that are no longer useful. These rules make it more important to invest in recycling services and infrastructure.
Category Wise Insights
By Battery Chemistry
- Lithium-Iron Phosphate: The lithium-iron phosphate segment dominates the market as these batteries are safer, cheaper, and last longer than standard lithium-ion batteries. Due to this, many mass-market EVs and stationary energy storage systems now use LFP batteries, which means that more LFP batteries need to be recycled when they reach the end of their life. Thus, driving the market growth.
- Lithium-Manganese Oxide: The lithium-manganese oxide segment is growing at a rapid pace as they are safe, powerful, and stable at high temperatures, LMO batteries are often used in electric cars, power tools, and portable devices. The more people use these batteries, the more batteries that need to be recycled at the end of their lives, which drives up market demand.
- Lithium-Nickel-Cobalt-Aluminum Oxide: The lithium-nickel-cobalt-aluminum oxide segment is growing at a stable rate. NCA batteries are commonly utilized in high-performance electric cars (EVs) and energy storage systems due to their high energy density and long cycle life. The increased demand for EVs and renewable energy storage directly increases the number of wasted NCA batteries that need to be recycled, boosting market growth.
- Lithium-Nickel-Manganese Cobalt: The lithium-nickel-manganese cobalt segment significantly driven by increasing adoption in electric vehicles (EVs), energy storage, and technological advancements in recycling processes.
- Lithium-Titanate Oxide: The lithium-titanate oxide segment is growing rapidly. This is fueled by increasing use in automotive and industrial applications and supported by regulatory and technological factors.
By Source
- Electric Vehicles: The electric vehicles dominate the market over the projected period. The increasing EV adoption by technology breakthroughs that improve battery range, reduce charging time, and cut costs, resulting in a larger installed base and a greater volume of retired batteries suitable for recycling. Moreover, the increasing environmental awareness drives the market growth.
- Electronics: The electronics segment is expected to grow at a significant rate over the forecast period. The increasing usage of lithium-ion batteries in electronics, along with their relatively short lifespan, generates a substantial number of end-of-life batteries that must be collected and recycled. Thus, driving the market growth.
- Power Tools: The power tools segment is expected to capture the largest market share over the projected period. Lithium-ion batteries are commonly used in power tools due to their high energy density, light weight, and ability to be recharged.
- Others: The others segment including energy storage systems (ESS), industrial equipment, manufacturing scrap, and various non-automotive and non-consumer electronics applications.
By Recycling Process
- Hydrometallurgical Process: The hydrometallurgical process segment is expected to capture the highest market share. Hydrometallurgy is becoming more popular as a way to recycle since it gets back more important and valuable metals like lithium, cobalt, nickel, and copper than pyrometallurgy does. This efficiency leads to higher profits for recyclers.
- Physical/Mechanical Process: The physical/mechanical process is growing at a rapid pace due to advantages like shorter recovery routes and enhanced environmental friendliness.
- Pyrometallurgy Process: The pyrometallurgy process segment is growing at fastest rate. Pyrometallurgy is recognized for its capacity to inexpensively recover metals from a diverse spectrum of lithium-ion battery chemistries, including complicated and mixed waste streams.
By End Use
- Automotive: The automotive segment is expected to dominate the market over the forecast period. The market growth is being driven by several factor such as increasing electric vehicle adoption and growing government initiatives.
- Non-Automotive: The non-automotive segment is growing at a rapid rate over the forecast period. This shift is driven by the exponential increase in consumer electronics usage like smartphones, laptops, and tablets, which generate a consistent and sizable volume of spent batteries that require recycling.
Report Scope
| Feature of the Report | Details |
| Market Size in 2025 | USD 13.1 Billion |
| Projected Market Size in 2034 | USD 102 Billion |
| Market Size in 2024 | USD 10.5 Billion |
| CAGR Growth Rate | 25.6% CAGR |
| Base Year | 2024 |
| Forecast Period | 2025-2034 |
| Key Segment | By Battery Chemistry, Source, Recycling Process, End Use and Region |
| Report Coverage | Revenue Estimation and Forecast, Company Profile, Competitive Landscape, Growth Factors and Recent Trends |
| Regional Scope | North America, Europe, Asia Pacific, Middle East & Africa, and South & Central America |
| Buying Options | Request tailored purchasing options to fulfil your requirements for research. |
Regional Analysis
The regional market is divided into North America, Europe, Asia-Pacific, and LAMEA. Here is a brief overview of each region:
- North America: North America dominates the market because in the area lithium-ion batteries need to recycled in the US and Canada drive electric vehicles (EVs). Investing more in recycling infrastructure, especially hydrometallurgical plants, helps build capacity and increase revenue. Also, North American government legislation and environmental rules drive the market growth.
- Europe: Europe capture the largest revenue share owing to the rising adoption of EVs. The expanding recycling capacities for diverse battery chemistries to meet growing post-consumer and manufacturing scrap volumes fueled by booming electronics, power tools, and renewable sectors.
- Asia-Pacific: The Asia Pacific is growing at the fastest rate. This is attributed to the growing consumer electronics and automotive sector. Furthermore, the rising government support is another important factor driving the industry.
- LAMEA: The LAMEA area, which includes Latin America, the Middle East, and Africa, is growing significantly over the forecast period. The rising investment in advanced technology and growing investment in recycling facilities.
Key Developments
The key players operate in the market adopted several strategies including product launch, innovation, merger & acquisition, investment and others. Some of the notable developments are:
- In April 2023, Glencore, FCC Ámbito, and Iberdrola collectively announced that they had partnered to provide lithium-ion battery recycling solutions on a large scale for Spain and Portugal. The aim is to tackle one of the biggest medium to long-term challenges in the sector, recycling of lithium-ion batteries through the establishment of a purpose-built facility.
- In January 2025, Ace Green Recycling, Inc., a leading provider of sustainable battery recycling technology solutions, announced it has finalized a lease agreement for a site to build India’s largest battery recycling facility. To be located in Mundra, Gujarat, the facility will build on Ace’s existing Indian commercial operations, which have been recycling lithium-ion batteries since 2023 including lithium iron phosphate (“LFP”) chemistries. As a part of this expansion, Ace announced plans to establish 10,000 metric tons of LFP battery recycling capacity per year in India by 2026, to meet the growing demand for LFP battery recycling. This strategic deployment of LithiumFirst™ LFP battery recycling technology in India will be phased in along with the planned deployment of the Company’s technology in Texas.
Leading Players
The Lithium-Ion Battery Recycling market is highly competitive, with a large number of service providers globally. Some of the key players in the market include:
- ACCUREC RECYCLING GMBH
- Lithion Recycling Inc.
- AMERICAN BATTERY SOURCE CORPORATION
- Duesenfeld GmbH
- FORTUM
- Umicore
- Retriev Technologies Inc.
- LI-CYCLE CORP.
- GANFENG LITHIUM CO. LTD.
- AKKUSER OY
- Attero
- LOHUM
- ReBAT
- Metastable Materials Private Limited
- Lico
- Exxon Mobil Corporation
- SUNY GROUP
- Others
The Lithium-Ion Battery Recycling Market is segmented as follows:
By Battery Chemistry
- Lithium-Iron Phosphate
- Lithium-Manganese Oxide
- Lithium-Nickel-Cobalt-Aluminum Oxide
- Lithium-Nickel-Manganese Cobalt
- Lithium-Titanate Oxide
By Source
- Electric Vehicles
- Electronics
- Power Tools
- Others
By Recycling Process
- Hydrometallurgical Process
- Physical/Mechanical Process
- Pyrometallurgy Process
By End Use
- Automotive
- Non-Automotive
Regional Coverage:
North America
- U.S.
- Canada
- Mexico
- Rest of North America
Europe
- Germany
- France
- U.K.
- Russia
- Italy
- Spain
- Netherlands
- Rest of Europe
Asia Pacific
- China
- Japan
- India
- New Zealand
- Australia
- South Korea
- Taiwan
- Rest of Asia Pacific
The Middle East & Africa
- Saudi Arabia
- UAE
- Egypt
- Kuwait
- South Africa
- Rest of the Middle East & Africa
Latin America
- Brazil
- Argentina
- Rest of Latin America
Table of Contents
- Chapter 1. Preface
- 1.1 Report Description and Scope
- 1.2 Research scope
- 1.3 Research methodology
- 1.3.1 Market Research Type
- 1.3.2 Market research methodology
- Chapter 2. Executive Summary
- 2.1 Global Lithium-Ion Battery Recycling Market, (2025 – 2034) (USD Billion)
- 2.2 Global Lithium-Ion Battery Recycling Market : snapshot
- Chapter 3. Global Lithium-Ion Battery Recycling Market – Industry Analysis
- 3.1 Lithium-Ion Battery Recycling Market: Market Dynamics
- 3.2 Market Drivers
- 3.2.1 Increasing EVs adoption
- 3.2.2 Growing consumer electronics sector
- 3.2.3 Rising government initiatives.
- 3.3 Market Restraints
- 3.4 Market Opportunities
- 3.5 Market Challenges
- 3.6 Porter’s Five Forces Analysis
- 3.7 Market Attractiveness Analysis
- 3.7.1 Market attractiveness analysis By Battery Chemistry
- 3.7.2 Market attractiveness analysis By Source
- 3.7.3 Market attractiveness analysis By Recycling Process
- 3.7.4 Market attractiveness analysis By End Use
- Chapter 4. Global Lithium-Ion Battery Recycling Market- Competitive Landscape
- 4.1 Company market share analysis
- 4.1.1 Global Lithium-Ion Battery Recycling Market: company market share, 2024
- 4.2 Strategic development
- 4.2.1 Acquisitions & mergers
- 4.2.2 New Product launches
- 4.2.3 Agreements, partnerships, cullaborations, and joint ventures
- 4.2.4 Research and development and Regional expansion
- 4.3 Price trend analysis
- 4.1 Company market share analysis
- Chapter 5. Global Lithium-Ion Battery Recycling Market – Battery Chemistry Analysis
- 5.1 Global Lithium-Ion Battery Recycling Market overview: By Battery Chemistry
- 5.1.1 Global Lithium-Ion Battery Recycling Market share, By Battery Chemistry, 2024 and 2034
- 5.2 Lithium-Iron Phosphate
- 5.2.1 Global Lithium-Ion Battery Recycling Market by Lithium-Iron Phosphate, 2025 – 2034 (USD Billion)
- 5.3 Lithium-Manganese Oxide
- 5.3.1 Global Lithium-Ion Battery Recycling Market by Lithium-Manganese Oxide, 2025 – 2034 (USD Billion)
- 5.4 Lithium-Nickel-Cobalt-Aluminum Oxide
- 5.4.1 Global Lithium-Ion Battery Recycling Market by Lithium-Nickel-Cobalt-Aluminum Oxide, 2025 – 2034 (USD Billion)
- 5.5 Lithium-Nickel-Manganese Cobalt
- 5.5.1 Global Lithium-Ion Battery Recycling Market by Lithium-Nickel-Manganese Cobalt, 2025 – 2034 (USD Billion)
- 5.6 Lithium-Titanate Oxide
- 5.6.1 Global Lithium-Ion Battery Recycling Market by Lithium-Titanate Oxide, 2025 – 2034 (USD Billion)
- 5.1 Global Lithium-Ion Battery Recycling Market overview: By Battery Chemistry
- Chapter 6. Global Lithium-Ion Battery Recycling Market – Source Analysis
- 6.1 Global Lithium-Ion Battery Recycling Market overview: By Source
- 6.1.1 Global Lithium-Ion Battery Recycling Market share, By Source, 2024 and 2034
- 6.2 Electric Vehicles
- 6.2.1 Global Lithium-Ion Battery Recycling Market by Electric Vehicles, 2025 – 2034 (USD Billion)
- 6.3 Electronics
- 6.3.1 Global Lithium-Ion Battery Recycling Market by Electronics, 2025 – 2034 (USD Billion)
- 6.4 Power Tools
- 6.4.1 Global Lithium-Ion Battery Recycling Market by Power Tools, 2025 – 2034 (USD Billion)
- 6.5 Others
- 6.5.1 Global Lithium-Ion Battery Recycling Market by Others, 2025 – 2034 (USD Billion)
- 6.1 Global Lithium-Ion Battery Recycling Market overview: By Source
- Chapter 7. Global Lithium-Ion Battery Recycling Market – Recycling Process Analysis
- 7.1 Global Lithium-Ion Battery Recycling Market overview: By Recycling Process
- 7.1.1 Global Lithium-Ion Battery Recycling Market share, By Recycling Process, 2024 and 2034
- 7.2 Hydrometallurgical Process
- 7.2.1 Global Lithium-Ion Battery Recycling Market by Hydrometallurgical Process, 2025 – 2034 (USD Billion)
- 7.3 Physical/Mechanical Process
- 7.3.1 Global Lithium-Ion Battery Recycling Market by Physical/Mechanical Process, 2025 – 2034 (USD Billion)
- 7.4 Pyrometallurgy Process
- 7.4.1 Global Lithium-Ion Battery Recycling Market by Pyrometallurgy Process, 2025 – 2034 (USD Billion)
- 7.1 Global Lithium-Ion Battery Recycling Market overview: By Recycling Process
- Chapter 8. Global Lithium-Ion Battery Recycling Market – End Use Analysis
- 8.1 Global Lithium-Ion Battery Recycling Market overview: By End Use
- 8.1.1 Global Lithium-Ion Battery Recycling Market share, By End Use, 2024 and 2034
- 8.2 Automotive
- 8.2.1 Global Lithium-Ion Battery Recycling Market by Automotive, 2025 – 2034 (USD Billion)
- 8.3 Non-Automotive
- 8.3.1 Global Lithium-Ion Battery Recycling Market by Non-Automotive, 2025 – 2034 (USD Billion)
- 8.1 Global Lithium-Ion Battery Recycling Market overview: By End Use
- Chapter 9. Lithium-Ion Battery Recyclings Market – Regional Analysis
- 9.1 Global Lithium-Ion Battery Recyclings Market Regional Overview
- 9.2 Global Lithium-Ion Battery Recyclings Market Share, by Region, 2024 & 2034 (USD Billion)
- 9.3. North America
- 9.3.1 North America Lithium-Ion Battery Recyclings Market, 2025 – 2034 (USD Billion)
- 9.3.1.1 North America Lithium-Ion Battery Recyclings Market, by Country, 2025 – 2034 (USD Billion)
- 9.3.1 North America Lithium-Ion Battery Recyclings Market, 2025 – 2034 (USD Billion)
- 9.4 North America Lithium-Ion Battery Recyclings Market, by Battery Chemistry, 2025 – 2034
- 9.4.1 North America Lithium-Ion Battery Recyclings Market, by Battery Chemistry, 2025 – 2034 (USD Billion)
- 9.5 North America Lithium-Ion Battery Recyclings Market, by Source, 2025 – 2034
- 9.5.1 North America Lithium-Ion Battery Recyclings Market, by Source, 2025 – 2034 (USD Billion)
- 9.6 North America Lithium-Ion Battery Recyclings Market, by Recyclings Process, 2025 – 2034
- 9.6.1 North America Lithium-Ion Battery Recyclings Market, by Recyclings Process, 2025 – 2034 (USD Billion)
- 9.7 North America Lithium-Ion Battery Recyclings Market, by End Use, 2025 – 2034
- 9.7.1 North America Lithium-Ion Battery Recyclings Market, by End Use, 2025 – 2034 (USD Billion)
- 9.8. Europe
- 9.8.1 Europe Lithium-Ion Battery Recyclings Market, 2025 – 2034 (USD Billion)
- 9.8.1.1 Europe Lithium-Ion Battery Recyclings Market, by Country, 2025 – 2034 (USD Billion)
- 9.8.1 Europe Lithium-Ion Battery Recyclings Market, 2025 – 2034 (USD Billion)
- 9.9 Europe Lithium-Ion Battery Recyclings Market, by Battery Chemistry, 2025 – 2034
- 9.9.1 Europe Lithium-Ion Battery Recyclings Market, by Battery Chemistry, 2025 – 2034 (USD Billion)
- 9.10 Europe Lithium-Ion Battery Recyclings Market, by Source, 2025 – 2034
- 9.10.1 Europe Lithium-Ion Battery Recyclings Market, by Source, 2025 – 2034 (USD Billion)
- 9.11 Europe Lithium-Ion Battery Recyclings Market, by Recyclings Process, 2025 – 2034
- 9.11.1 Europe Lithium-Ion Battery Recyclings Market, by Recyclings Process, 2025 – 2034 (USD Billion)
- 9.12 Europe Lithium-Ion Battery Recyclings Market, by End Use, 2025 – 2034
- 9.12.1 Europe Lithium-Ion Battery Recyclings Market, by End Use, 2025 – 2034 (USD Billion)
- 9.13. Asia Pacific
- 9.13.1 Asia Pacific Lithium-Ion Battery Recyclings Market, 2025 – 2034 (USD Billion)
- 9.13.1.1 Asia Pacific Lithium-Ion Battery Recyclings Market, by Country, 2025 – 2034 (USD Billion)
- 9.13.1 Asia Pacific Lithium-Ion Battery Recyclings Market, 2025 – 2034 (USD Billion)
- 9.14 Asia Pacific Lithium-Ion Battery Recyclings Market, by Battery Chemistry, 2025 – 2034
- 9.14.1 Asia Pacific Lithium-Ion Battery Recyclings Market, by Battery Chemistry, 2025 – 2034 (USD Billion)
- 9.15 Asia Pacific Lithium-Ion Battery Recyclings Market, by Source, 2025 – 2034
- 9.15.1 Asia Pacific Lithium-Ion Battery Recyclings Market, by Source, 2025 – 2034 (USD Billion)
- 9.16 Asia Pacific Lithium-Ion Battery Recyclings Market, by Recyclings Process, 2025 – 2034
- 9.16.1 Asia Pacific Lithium-Ion Battery Recyclings Market, by Recyclings Process, 2025 – 2034 (USD Billion)
- 9.17 Asia Pacific Lithium-Ion Battery Recyclings Market, by End Use, 2025 – 2034
- 9.17.1 Asia Pacific Lithium-Ion Battery Recyclings Market, by End Use, 2025 – 2034 (USD Billion)
- 9.18. Latin America
- 9.18.1 Latin America Lithium-Ion Battery Recyclings Market, 2025 – 2034 (USD Billion)
- 9.18.1.1 Latin America Lithium-Ion Battery Recyclings Market, by Country, 2025 – 2034 (USD Billion)
- 9.18.1 Latin America Lithium-Ion Battery Recyclings Market, 2025 – 2034 (USD Billion)
- 9.19 Latin America Lithium-Ion Battery Recyclings Market, by Battery Chemistry, 2025 – 2034
- 9.19.1 Latin America Lithium-Ion Battery Recyclings Market, by Battery Chemistry, 2025 – 2034 (USD Billion)
- 9.20 Latin America Lithium-Ion Battery Recyclings Market, by Source, 2025 – 2034
- 9.20.1 Latin America Lithium-Ion Battery Recyclings Market, by Source, 2025 – 2034 (USD Billion)
- 9.21 Latin America Lithium-Ion Battery Recyclings Market, by Recyclings Process, 2025 – 2034
- 9.21.1 Latin America Lithium-Ion Battery Recyclings Market, by Recyclings Process, 2025 – 2034 (USD Billion)
- 9.22 Latin America Lithium-Ion Battery Recyclings Market, by End Use, 2025 – 2034
- 9.22.1 Latin America Lithium-Ion Battery Recyclings Market, by End Use, 2025 – 2034 (USD Billion)
- 9.23. The Middle-East and Africa
- 9.23.1 The Middle-East and Africa Lithium-Ion Battery Recyclings Market, 2025 – 2034 (USD Billion)
- 9.23.1.1 The Middle-East and Africa Lithium-Ion Battery Recyclings Market, by Country, 2025 – 2034 (USD Billion)
- 9.23.1 The Middle-East and Africa Lithium-Ion Battery Recyclings Market, 2025 – 2034 (USD Billion)
- 9.24 The Middle-East and Africa Lithium-Ion Battery Recyclings Market, by Battery Chemistry, 2025 – 2034
- 9.24.1 The Middle-East and Africa Lithium-Ion Battery Recyclings Market, by Battery Chemistry, 2025 – 2034 (USD Billion)
- 9.25 The Middle-East and Africa Lithium-Ion Battery Recyclings Market, by Source, 2025 – 2034
- 9.25.1 The Middle-East and Africa Lithium-Ion Battery Recyclings Market, by Source, 2025 – 2034 (USD Billion)
- 9.26 The Middle-East and Africa Lithium-Ion Battery Recyclings Market, by Recyclings Process, 2025 – 2034
- 9.26.1 The Middle-East and Africa Lithium-Ion Battery Recyclings Market, by Recyclings Process, 2025 – 2034 (USD Billion)
- 9.27 The Middle-East and Africa Lithium-Ion Battery Recyclings Market, by End Use, 2025 – 2034
- 9.27.1 The Middle-East and Africa Lithium-Ion Battery Recyclings Market, by End Use, 2025 – 2034 (USD Billion)
- Chapter 10. Company Profiles
- 10.1 ACCUREC RECYCLING GMBH
- 10.1.1 Overview
- 10.1.2 Financials
- 10.1.3 Product Portfolio
- 10.1.4 Business Strategy
- 10.1.5 Recent Developments
- 10.2 Lithion Recycling Inc.
- 10.2.1 Overview
- 10.2.2 Financials
- 10.2.3 Product Portfolio
- 10.2.4 Business Strategy
- 10.2.5 Recent Developments
- 10.3 AMERICAN BATTERY SOURCE CORPORATION
- 10.3.1 Overview
- 10.3.2 Financials
- 10.3.3 Product Portfolio
- 10.3.4 Business Strategy
- 10.3.5 Recent Developments
- 10.4 Duesenfeld GmbH
- 10.4.1 Overview
- 10.4.2 Financials
- 10.4.3 Product Portfolio
- 10.4.4 Business Strategy
- 10.4.5 Recent Developments
- 10.5 FORTUM
- 10.5.1 Overview
- 10.5.2 Financials
- 10.5.3 Product Portfolio
- 10.5.4 Business Strategy
- 10.5.5 Recent Developments
- 10.6 Umicore
- 10.6.1 Overview
- 10.6.2 Financials
- 10.6.3 Product Portfolio
- 10.6.4 Business Strategy
- 10.6.5 Recent Developments
- 10.7 Retriev Technologies Inc.
- 10.7.1 Overview
- 10.7.2 Financials
- 10.7.3 Product Portfolio
- 10.7.4 Business Strategy
- 10.7.5 Recent Developments
- 10.8 LI-CYCLE CORP.
- 10.8.1 Overview
- 10.8.2 Financials
- 10.8.3 Product Portfolio
- 10.8.4 Business Strategy
- 10.8.5 Recent Developments
- 10.9 GANFENG LITHIUM CO. LTD.
- 10.9.1 Overview
- 10.9.2 Financials
- 10.9.3 Product Portfolio
- 10.9.4 Business Strategy
- 10.9.5 Recent Developments
- 10.10 AKKUSER OY
- 10.10.1 Overview
- 10.10.2 Financials
- 10.10.3 Product Portfolio
- 10.10.4 Business Strategy
- 10.10.5 Recent Developments
- 10.11 Attero
- 10.11.1 Overview
- 10.11.2 Financials
- 10.11.3 Product Portfolio
- 10.11.4 Business Strategy
- 10.11.5 Recent Developments
- 10.12 LOHUM
- 10.12.1 Overview
- 10.12.2 Financials
- 10.12.3 Product Portfolio
- 10.12.4 Business Strategy
- 10.12.5 Recent Developments
- 10.13 ReBAT
- 10.13.1 Overview
- 10.13.2 Financials
- 10.13.3 Product Portfolio
- 10.13.4 Business Strategy
- 10.13.5 Recent Developments
- 10.14 Metastable Materials Private Limited
- 10.14.1 Overview
- 10.14.2 Financials
- 10.14.3 Product Portfolio
- 10.14.4 Business Strategy
- 10.14.5 Recent Developments
- 10.15 Lico
- 10.15.1 Overview
- 10.15.2 Financials
- 10.15.3 Product Portfolio
- 10.15.4 Business Strategy
- 10.15.5 Recent Developments
- 10.16 Exxon Mobil Corporation
- 10.16.1 Overview
- 10.16.2 Financials
- 10.16.3 Product Portfolio
- 10.16.4 Business Strategy
- 10.16.5 Recent Developments
- 10.17 SUNY GROUP
- 10.17.1 Overview
- 10.17.2 Financials
- 10.17.3 Product Portfolio
- 10.17.4 Business Strategy
- 10.17.5 Recent Developments
- 10.18 Others.
- 10.18.1 Overview
- 10.18.2 Financials
- 10.18.3 Product Portfolio
- 10.18.4 Business Strategy
- 10.18.5 Recent Developments
- 10.1 ACCUREC RECYCLING GMBH
List Of Figures
Figures No 1 to 32
List Of Tables
Tables No 1 to 102
Report Methodology
In order to get the most precise estimates and forecasts possible, Custom Market Insights applies a detailed and adaptive research methodology centered on reducing deviations. For segregating and assessing quantitative aspects of the market, the company uses a combination of top-down and bottom-up approaches. Furthermore, data triangulation, which examines the market from three different aspects, is a recurring theme in all of our research reports. The following are critical components of the methodology used in all of our studies:
Preliminary Data Mining
On a broad scale, raw market information is retrieved and compiled. Data is constantly screened to make sure that only substantiated and verified sources are taken into account. Furthermore, data is mined from a plethora of reports in our archive and also a number of reputed & reliable paid databases. To gain a detailed understanding of the business, it is necessary to know the entire product life cycle and to facilitate this, we gather data from different suppliers, distributors, and buyers.
Surveys, technological conferences, and trade magazines are used to identify technical issues and trends. Technical data is also gathered from the standpoint of intellectual property, with a focus on freedom of movement and white space. The dynamics of the industry in terms of drivers, restraints, and valuation trends are also gathered. As a result, the content created contains a diverse range of original data, which is then cross-validated and verified with published sources.
Statistical Model
Simulation models are used to generate our business estimates and forecasts. For each study, a one-of-a-kind model is created. Data gathered for market dynamics, the digital landscape, development services, and valuation patterns are fed into the prototype and analyzed concurrently. These factors are compared, and their effect over the projected timeline is quantified using correlation, regression, and statistical modeling. Market forecasting is accomplished through the use of a combination of economic techniques, technical analysis, industry experience, and domain knowledge.
Short-term forecasting is typically done with econometric models, while long-term forecasting is done with technological market models. These are based on a synthesis of the technological environment, legal frameworks, economic outlook, and business regulations. Bottom-up market evaluation is favored, with crucial regional markets reviewed as distinct entities and data integration to acquire worldwide estimates. This is essential for gaining a thorough knowledge of the industry and ensuring that errors are kept to a minimum.
Some of the variables taken into account for forecasting are as follows:
• Industry drivers and constraints, as well as their current and projected impact
• The raw material case, as well as supply-versus-price trends
• Current volume and projected volume growth through 2030
We allocate weights to these variables and use weighted average analysis to determine the estimated market growth rate.
Primary Validation
This is the final step in our report’s estimating and forecasting process. Extensive primary interviews are carried out, both in-person and over the phone, to validate our findings and the assumptions that led to them.
Leading companies from across the supply chain, including suppliers, technology companies, subject matter experts, and buyers, use techniques like interviewing to ensure a comprehensive and non-biased overview of the business. These interviews are conducted all over the world, with the help of local staff and translators, to overcome language barriers.
Primary interviews not only aid with data validation, but also offer additional important insight into the industry, existing business scenario, and future projections, thereby improving the quality of our reports.
All of our estimates and forecasts are validated through extensive research work with key industry participants (KIPs), which typically include:
• Market leaders
• Suppliers of raw materials
• Suppliers of raw materials
• Buyers.
The following are the primary research objectives:
• To ensure the accuracy and acceptability of our data.
• Gaining an understanding of the current market and future projections.
Data Collection Matrix
| Perspective | Primary research | Secondary research |
| Supply-side |
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| Demand-side |
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Market Analysis Matrix
| Qualitative analysis | Quantitative analysis |
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Prominent Player
- ACCUREC RECYCLING GMBH
- Lithion Recycling Inc.
- AMERICAN BATTERY SOURCE CORPORATION
- Duesenfeld GmbH
- FORTUM
- Umicore
- Retriev Technologies Inc.
- LI-CYCLE CORP.
- GANFENG LITHIUM CO. LTD.
- AKKUSER OY
- Attero
- LOHUM
- ReBAT
- Metastable Materials Private Limited
- Lico
- Exxon Mobil Corporation
- SUNY GROUP
- Others
FAQs
The Lithium-Ion Battery Recycling market is hampered by the high capital cost.
The Lithium-Ion Battery Recycling market is being driven by several factor such as increasing EVs adoption, growing consumer electronics sector and rising government initiatives.
The major players are ACCUREC RECYCLING GMBH, Lithion Recycling, Inc., AMERICAN BATTERY SOURCE CORPORATION, Duesenfeld GmbH, FORTUM, Umicore, Retriev Technologies, Inc., LI-CYCLE CORP., GANFENG LITHIUM CO., LTD., AKKUSER OY, Attero, LOHUM, ReBAT, Metastable Materials Private Limited, Lico, Exxon Mobil Corporation, SUNY GROUP.
The Asia Pacific is expected to grow at the highest CAGR during the forecast period.
North America is expected to dominate the Lithium-Ion Battery Recycling market during the forecast period.
The Lithium-Ion Battery Recycling market is anticipated to reach US$ 102 billion by 2034 growing at a CAGR of 25.6% from 2025 to 2034.
The Lithium-Ion Battery Recycling market is expected to record a CAGR of 25.6% during the forecast period growing from USD 10.5 billion in 2024.