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リチウムイオン電池リサイクルの世界市場:電池種類別、電池エンドユーズ別2030年予測

Lithium-ion Battery Recycling Market by Battery Chemistry (Lithium-nickel Manganese Cobalt, Lithium-iron Phosphate, Lithium-Manganese Oxide, LTO, NCA, LCO), Industry (Automotive, Marine, Industrial, and Power), and Region - Global Forecast to 2030

出版元:MarketsandMarketsLinkIcon出版元について
発行年:2020年2月
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【レポート紹介】
リチウムイオン電池リサイクルの世界市場規模は、2019年の推計15億ドルから2025年には122億ドル、さらに今後2030年段階では181億ドルに達するとレポートでは予測しています。当レポートでは、2030年に至るリチウムイオン電池リサイクルの世界市場予測(市場規模US$)、エンドユーズ別市場(自動車、非自動車各種)、自動車用リチウムイオン電池リサイクル市場(Li-NMC、LFP、LMO、LTO、NCA)、主要国地域別市場など、詳細な市場予測データと分析を掲載しています。また市場分析、競合状況、主要メーカー企業15社プロフィール動向などの情報も交えて、リチウムイオン電池リサイクル市場の現在と今後展開を予測分析していきます。

【レポート構成概要】
◆リチウムイオン電池リサイクルの世界市場予測2017-2030年
・市場規模(US$)

◆エンドユーズ別、市場-2030年
自動車
非自動車
・インダストリアル
・電力
・船舶
※(市場規模US$) 

◆自動車用リチウムイオン電池リサイクル市場、種類別2030年
・Li-NMC
・LFP
・LMO
・LTO
・NCA
※(量ベースUnits)

◆主要国地域別市場-2030年
北米
・米国、カナダ
欧州
アジア太平洋
※地域別に全セグメントの細分化データ掲載、詳細は目次参照

◆市場分析
・市場ダイナミクス分析(ドライバー、障壁、機会、課題)
・バリューチェーン分析
・規制動向
・EV市場概要(主要国別、補助金/税制)
・競合状況

◆リチウムイオン電池リサイクルの主要企業プロフィール動向
・UMICORE      
・GLENCORE INTERNATIONAL AG       
・RETRIEV TECHNOLOGIES INC.           
・RAW MATERIALS COMPANY INC. (RMC)         
・INTERNATIONAL METALS RECLAMATION COMPANY, LLC (INMETCO)             
・AMERICAN MANGANESE INC.
・SITRASA        
・LI-CYCLE CORP.        
・NEOMETALS LTD     
・RECUPYL SAS
・METAL CONVERSION TECHNOLOGIES (MCT)            
・TES-AMM SINGAPORE PTE LTD         
・FORTUM OYJ
・GEM CO., LTD            
・CONTEMPORARY AMPEREX TECHNOLOGY CO. LTD (CATL)

(その他企業)  
・TATA CHEMICALS LIMITED  
・ONTO TECHNOLOGY, LLC   
・LITHION RECYCLING INC.     
・ECOBAT TECHNOLOGIES LTD.          
・BATTERY RECYCLING MADE EASY (BRME)    
・EURO DIEUZE INDUSTRIE (E.D.I.)      
・BATREC INDUSTRIE AG         
・URECYCLE GROUP OY
(全147頁)



【レポート詳細目次、データ項目一覧は当ページ下を参照ください】

英文詳細目次(table of contents)

【原文詳細目次】

Lithium-ion Battery Recycling Market by Battery Chemistry (Lithium-nickel Manganese Cobalt, Lithium-iron Phosphate, Lithium-Manganese Oxide, LTO, NCA, LCO), Industry (Automotive, Marine, Industrial, and Power), and Region - Global Forecast to 2030

Table of Contents

1.... INTRODUCTION

1.1             OBJECTIVES OF THE STUDY
1.2             MARKET DEFINITION
1.3             STUDY SCOPE
1.3.1              YEARS CONSIDERED FOR THE STUDY
1.4             CURRENCY
1.5             LIMITATIONS
1.6             STAKEHOLDERS

2.... RESEARCH METHODOLOGY

2.1             RESEARCH DATA
2.1.1              SECONDARY DATA
2.1.1.1            KEY DATA FROM SECONDARY SOURCES
2.1.2              PRIMARY DATA
2.1.2.1            KEY DATA FROM PRIMARY SOURCES
2.1.2.2            KEY INDUSTRY INSIGHTS
2.1.2.3            BREAKDOWN OF PRIMARY INTERVIEWS
2.2             MARKET SIZE ESTIMATION
2.3             PRIMARY AND SECONDARY RESEARCH
2.4             MARKET BREAKDOWN AND DATA TRIANGULATION
2.5             RESEARCH ASSUMPTIONS

3.... EXECUTIVE SUMMARY

4.... PREMIUM INSIGHTS

4.1             INTRODUCTION
4.2             LIFE EXPECTANCIES OF BATTERIES IN AUTOMOTIVE AND STATIONARY APPLICATIONS
4.2.1              EXPORT OF LITHIUM-ION BATTERIES
4.3             MATERIALS PRESENT IN SPENT BATTERIES.. 31

5.... MARKET OVERVIEW

5.1             INTRODUCTION
5.2             MARKET DYNAMICS
5.2.1              DRIVERS
5.2.1.1            INCREASE IN DEMAND FOR ELECTRIC VEHICLES
5.2.1.2            STRINGENT LOCAL AND STATE GOVERNMENT REGULATIONS AND EPA GUIDELINES
5.2.1.3            RISING DEMAND FOR RECYCLED PRODUCTS AND MATERIALS
5.2.1.4            DEPLETION OF EARTH METALS
5.2.2              RESTRAINTS
5.2.2.1            SAFETY ISSUES RELATED TO THE STORAGE AND TRANSPORTATION OF SPENT BATTERIES
5.2.3              OPPORTUNITIES
5.2.3.1            SUBSIDIES TO ENCOURAGE BATTERY RECYCLING
5.2.3.2            INCREASING PRODUCTION EXPECTED TO LEAD TO A DECLINE IN PRICES OF LITHIUM-ION BATTERIES, RISING ADOPTION IN NEW APPLICATIONS, AND RECYCLING AFTER END-OF-LIFE
5.2.3.3            GEOGRAPHICALLY CONCENTRATED SOURCES OF LITHIUM AND COBALT
5.2.4              CHALLENGES
5.2.4.1            HIGH COST OF RECYCLING AND DEARTH OF TECHNOLOGIES FOR THE EXTRACTION OF LITHIUM FROM SPENT LITHIUM-BASED BATTERIES

6.... VALUE CHAIN OF LITHIUM-ION BATTERIES. 39

6.1             VALUE CHAIN OF LI-ION BATTERIES, WITH MAJOR GLOBAL PLAYERS
6.2             LITHIUM-ION BATTERY RECYCLING PROCESS.. 40
6.3             ESTIMATED LI-ION BATTERY RECYCLING CAPACITIES OF KEY RECYCLERS

7.... LITHIUM-ION BATTERY RECYCLING MARKET REGULATIONS

7.1             NORTH AMERICA BATTERY RECYCLING REGULATIONS
7.1.1              US
7.1.2              CANADA
7.2             EUROPE BATTERY RECYCLING REGULATIONS.. 49
7.3             ASIA PACIFIC BATTERY RECYCLING REGULATIONS

8.... ELECTRIC VEHICLE MARKET OUTLOOK (EXISTING SUBSIDIES,
AND TAX STRUCTURES)

8.1             INTRODUCTION
8.2             CANADA
8.3             CHINA
8.4             DENMARK
8.5             FRANCE
8.6             GERMANY
8.7             INDIA
8.8             JAPAN
8.9             NORWAY
8.10          SWEDEN
8.11          THE NETHERLANDS
8.12          UK
8.13          US


9.... LITHIUM-ION BATTERY RECYCLING MARKET, BY END USE

9.1             INTRODUCTION
9.2             AUTOMOTIVE
9.2.1              HIGH DEMAND FOR ELECTRIC VEHICLES PROJECTED TO LEAD TO THE GROWTH OF THE MARKET
9.3             NON-AUTOMOTIVE
9.3.1              EUROPE LED THE NON-AUTOMOTIVE SEGMENT IN 2018
9.3.2              INDUSTRIAL
9.3.3              POWER
9.3.4              MARINE

10.. AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET,
BY BATTERY CHEMISTRY

10.1          INTRODUCTION
10.2          LITHIUM-NICKEL MANGANESE COBALT (LI-NMC)
10.2.1            LITHIUM-NICKEL MANGANESE COBALT (LI-NMC) ACCOUNTED FOR THE LARGEST SHARE OF THE MARKET IN 2018
10.3          LITHIUM-IRON PHOSPHATE (LFP)
10.3.1            LITHIUM IRON PHOSPHATE (LFP), ACCOUNTED FOR THE SECOND-LARGEST SHARE OF THE MARKET IN 2018
10.4          LITHIUM-MANGANESE OXIDE (LMO)
10.4.1            ADVANTAGES, SUCH AS LOWER INTERNAL RESISTANCE, HIGH THERMAL STABILITY, IMPROVED HANDLING OF CURRENT, ARE FACTORS PROPELLING DEMAND FOR LMO BATTERIES
10.5          LITHIUM-TITANATE OXIDE (LTO)
10.5.1            THE DEMAND FOR LTO BATTERIES ACCOUNTED FOR THE LARGEST SHARE OF THE NORTH AMERICA REGION IN 2018
10.6          LITHIUM-NICKEL COBALT ALUMINUM OXIDE (NCA)
10.6.1            NCA BATTERIES ARE PROJECTED TO GROW AT THE HIGHEST CAGR IN EUROPE, DURING THE FORECAST PERIOD, 2025-2030
10.7          MATERIALS PRESENT IN BATTERIES FOR RECYCLING

11.. LITHIUM-ION BATTERY RECYCLING PROCESS. 85

11.1          INTRODUCTION
11.1.1            HYDROMETALLURGICAL PROCESS
11.1.2            PYROMETALLURGY PROCESS
11.1.3            PHYSICAL/MECHANICAL PROCESS

12.. LI-ION BATTERY RECYCLING MARKET, BY REGION

12.1          INTRODUCTION
12.2          NORTH AMERICA
12.2.1            US
12.2.1.1          US DOMINATED THE LIB RECYCLING MARKET IN NORTH AMERICA
REGION IN 2018
12.2.2            CANADA
12.2.2.1          STRINGENT IMPLEMENTATION OF THE CANADIAN ENVIRONMENTAL PROTECTION ACT (CEPA) IN CANADA IS SUPPORTING MARKET GROWTH IN THE COUNTRY
12.3          EUROPE
12.3.1            EUROPE WAS THE SECOND-LARGEST LITHIUM-ION BATTERY RECYCLING MARKET GLOBALLY IN 2019
12.4          ASIA PACIFIC
12.4.1            IN THE ASIA PACIFIC, JAPAN LED THE AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET IN 2019.. 100

13.. COMPETITIVE LANDSCAPE

13.1          OVERVIEW
13.2          COMPETITIVE LANDSCAPE MAPPING, 2019
13.2.1            VISIONARY LEADERS
13.2.2            INNOVATORS
13.2.3            DYNAMIC DIFFERENTIATORS
13.2.4            EMERGING COMPANIES
13.3          COMPETITIVE BENCHMARKING
13.3.1            STRENGTH OF PRODUCT PORTFOLIO
13.3.2            BUSINESS STRATEGY EXCELLENCE
13.4          MARKET RANKING OF KEY PLAYERS
13.5          COMPETITIVE SCENARIO
13.5.1            ACQUISITIONS
13.5.2            EXPANSIONS
13.5.3            AGREEMENTS
13.5.4            PARTNERSHIPS
13.5.5            COLLABORATIONS
13.5.6            NEW TECHNOLOGY LAUNCHES
13.5.7            NEW TECHNOLOGY DEVELOPMENTS
13.5.8            INVESTMENTS
13.5.9            CONTRACTS
13.5.10         NEW PROCESS LAUNCHES

14.. COMPANY PROFILES

(BUSINESS OVERVIEW, PRODUCTS OFFERED, RECENT DEVELOPMENTS, SWOT ANALYSIS, MNM VIEW)*
14.1          UMICORE
14.2          GLENCORE INTERNATIONAL AG
14.3          RETRIEV TECHNOLOGIES INC.
14.4          RAW MATERIALS COMPANY INC. (RMC)
14.5          INTERNATIONAL METALS RECLAMATION COMPANY, LLC (INMETCO)
14.6          AMERICAN MANGANESE INC.
14.7          SITRASA
14.8          LI-CYCLE CORP.
14.9          NEOMETALS LTD
14.10        RECUPYL SAS
14.11        METAL CONVERSION TECHNOLOGIES (MCT)
14.12        TES-AMM SINGAPORE PTE LTD
14.13        FORTUM OYJ
14.14        GEM CO., LTD
14.15        CONTEMPORARY AMPEREX TECHNOLOGY CO. LTD (CATL)
14.16        OTHER COMPANIES
14.16.1         TATA CHEMICALS LIMITED
14.16.2         ONTO TECHNOLOGY, LLC
14.16.3         LITHION RECYCLING INC.
14.16.4         ECOBAT TECHNOLOGIES LTD.
14.16.5         BATTERY RECYCLING MADE EASY (BRME)
14.16.6         EURO DIEUZE INDUSTRIE (E.D.I.)
14.16.7         BATREC INDUSTRIE AG
14.16.8         URECYCLE GROUP OY
*DETAILS ON BUSINESS OVERVIEW, PRODUCTS OFFERED, RECENT DEVELOPMENTS, SWOT ANALYSIS, MNM VIEW MIGHT NOT BE CAPTURED IN CASE OF UNLISTED COMPANIES.
15.. APPENDIX

LIST OF TABLES

TABLE 1              SHARE OF TOP COUNTRIES THAT RECEIVED HIGH REVENUE FROM THE EXPORT
OF LITHIUM-ION BATTERIES DURING 2018
TABLE 2              AVERAGE COMPOSITION OF VARIOUS COMPONENTS OF LITHIUM-ION BATTERIES, BY MATERIAL  32
TABLE 3              METALS IN COMMONLY RECYCLED BATTERIES AS A PERCENTAGE OF THE OVERALL CONTENT
TABLE 4              MAJOR RECOVERABLE METALS FROM VARIOUS BATTERY CHEMISTRIES AFTER RECYCLING   33
TABLE 5              EXISTING SUBSIDIES AND TAX STRUCTURE, CANADA, 2016
TABLE 6              EXISTING SUBSIDIES AND TAX STRUCTURE, CHINA, 2016
TABLE 7              OTHER EXISTING BENEFITS
TABLE 8              EXISTING SUBSIDIES AND TAXES
TABLE 9              EXISTING SUBSIDIES AND TAX STRUCTURE, DENMARK, 2016
TABLE 10            EXISTING SUBSIDIES AND TAX STRUCTURE, FRANCE, 2016
TABLE 11            EXISTING SUBSIDIES AND TAX STRUCTURE, GERMANY, 2016
TABLE 12            EXISTING SUBSIDIES AND TAX STRUCTURE, INDIA, 2016
TABLE 13            EXISTING PASSENGER SAFETY REGULATIONS, JAPAN, 2016
TABLE 14            EXISTING SUBSIDIES AND TAX STRUCTURE, JAPAN, 2016
TABLE 15            EXISTING SUBSIDIES AND TAX STRUCTURE, NORWAY, 2016
TABLE 16            EXISTING SUBSIDIES AND TAX STRUCTURE, SWEDEN, 2016
TABLE 17            EXISTING SUBSIDIES AND TAX STRUCTURE, THE NETHERLANDS, 2016
TABLE 18            EXISTING SUBSIDIES AND TAX STRUCTURE, UK, 2016
TABLE 19            VEHICLE CATEGORIES ELIGIBLE FOR SUBSIDIES IN THE UK
TABLE 20            EXISTING SUBSIDIES AND TAX STRUCTURE, US, 2016
TABLE 21            STATE-WISE INCENTIVE AND TAX STRUCTURE FOR ELECTRIC VEHICLES
TABLE 22            LITHIUM-ION BATTERY RECYCLING MARKET, BY END USE, “
2017-2030 (USD MILLION)
TABLE 23            EXPECTED ELECTRIC VEHICLE OFFERINGS, 2017–2030
TABLE 24            ELECTRIC DRIVEN VEHICLE BATTERIES EXPECTED FOR RECYCLING
TABLE 25            ELECTRIC VEHICLE STARTUP INVESTMENTS, 2015–2016
TABLE 26            LITHIUM-ION BATTERY RECYCLING MARKET FOR AUTOMOTIVE END USE,
BY REGION, 2017-2030 (USD MILLION)
TABLE 27            LITHIUM-ION BATTERY RECYCLING MARKET FOR NON-AUTOMOTIVE END USE,
BY SUBSEGMENT, 2017–2030 (USD MILLION)
TABLE 28            INDUSTRIAL SUBSEGMENT MARKET IN NON-AUTOMOTIVE END USE, BY REGION, 2017-2030 (USD MILLION)
TABLE 29            POWER SEGMENT MARKET IN NON-AUTOMOTIVE END USE, BY REGION,
2017-2030 (USD MILLION)
TABLE 30            MARINE SUBSEGMENT MARKET IN NON-AUTOMOTIVE END USE, BY REGION, 2017-2030 (USD MILLION)
TABLE 31            AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET, BY BATTERY CHEMISTRY, 2017–2030 (UNITS)
TABLE 32            AUTOMOTIVE LITHIUM-NICKEL MANGANESE COBALT (LI-NMC): LITHIUM-ION BATTERY RECYCLING MARKET, 2017–2030 (UNITS)
TABLE 33            AUTOMOTIVE LITHIUM-IRON PHOSPHATE (LFP): LITHIUM-ION BATTERY RECYCLING MARKET, 2017–2030 (UNITS)
TABLE 34            AUTOMOTIVE LITHIUM-MANGANESE OXIDE (LMO): LITHIUM-ION BATTERY RECYCLING MARKET, 2017–2030 (UNITS)
TABLE 35            AUTOMOTIVE LITHIUM-TITANATE OXIDE (LTO): LITHIUM-ION BATTERY RECYCLING MARKET, 2017–2030 (UNITS)
TABLE 36            AUTOMOTIVE LITHIUM-NICKEL COBALT ALUMINUM OXIDE (NCA): LITHIUM-ION BATTERY RECYCLING MARKET, 2017–2030 (UNITS)
TABLE 37            AVERAGE COMPOSITION OF VARIOUS COMPONENTS OF LITHIUM-ION BATTERIES, BY MATERIAL  83
TABLE 38            METAL CONTENT OF RECYCLED BATTERIES
TABLE 39            MAJOR RECOVERABLE METALS FROM VARIOUS BATTERY CHEMISTRIES
AFTER RECYCLING
TABLE 40            COMPARISON OF PROCESSES INVOLVED IN RECYCLING LI-ION BATTERIES
TABLE 41            ADVANTAGES AND DISADVANTAGES OF THE HYDROMETALLURGICAL PROCESS
TABLE 42            ADVANTAGES AND DISADVANTAGES OF THE PYROMETALLURGICAL PROCESS
TABLE 43            ADVANTAGES AND DISADVANTAGES OF THE PHYSICAL/MECHANICAL PROCESS
TABLE 44            LITHIUM-ION BATTERY RECYCLING MARKET, BY REGION,
2017–2030 (USD MILLION)
TABLE 45            AUTOMOTIVE LITHIUM ION BATTERY RECYCLING MARKET, BY REGION,
2017–2030 (USD MILLION)
TABLE 46            AUTOMOTIVE LITHIUM ION BATTERY RECYCLING MARKET, BY REGION,
2017–2030 (UNITS)
TABLE 47            NON-AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET, BY SUBSEGMENT, 2017–2030 (USD MILLION)
TABLE 48            AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET, BY BATTERY CHEMISTRY, 2017–2030 (UNITS)
TABLE 49            NORTH AMERICA AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET,
BY COUNTRY, 2017–2030 (USD MILLION)
TABLE 50            NORTH AMERICA AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET,
BY COUNTRY, 2017–2030 (UNITS)
TABLE 51            NORTH AMERICA NON-AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET, BY SUBSEGMENT, 2017–2030 (USD MILLION)
TABLE 52            NORTH AMERICA AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET,
BY BATTERY CHEMISTRY, 2017–2030 (UNITS)
TABLE 53            US LITHIUM-ION BATTERY RECYCLING MARKET SNAPSHOT (UNITS)
TABLE 54            CANADA LITHIUM-ION BATTERY RECYCLING MARKET SNAPSHOT (UNITS)
TABLE 55            EUROPE AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET,
BY COUNTRY, 2017–2030 (USD MILLION)
TABLE 56            EUROPE AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET, BY COUNTRY, 2017–2030 (UNITS)
TABLE 57            EUROPE NON-AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET,
BY SUBSEGMENT, 2017–2030 (USD MILLION)
TABLE 58            EUROPE LITHIUM-ION BATTERY RECYCLING MARKET, BY BATTERY CHEMISTRY, 2017–2030 (UNITS)
TABLE 59            ASIA PACIFIC AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET,
BY COUNTRY, 2017–2030 (USD MILLION)
TABLE 60            ASIA PACIFIC AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET,
BY COUNTRY, 2017–2030 (UNITS)
TABLE 61            ASIA PACIFIC NON-AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET,
BY SUBSEGMENT, 2017–2030 (USD MILLION)
TABLE 62            ASIA PACIFIC AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET,
BY BATTERY CHEMISTRY, 2017–2030 (UNITS)
TABLE 63            ACQUISITIONS, 2016–2019
TABLE 64            EXPANSIONS, 2016–2019
TABLE 65            AGREEMENTS, 2016–2019
TABLE 66            PARTNERSHIPS, 2016–2019
TABLE 67            COLLABORATIONS, 2016–2019
TABLE 68            NEW TECHNOLOGY LAUNCHES, 2016–2019
TABLE 69            NEW TECHNOLOGY DEVELOPMENTS, 2016–2019
TABLE 70            INVESTMENTS, 2016–2019
TABLE 71            CONTRACTS, 2016–2019
TABLE 72            NEW PROCESS LAUNCHES, 2016–2019

LIST OF FIGURES

FIGURE 1            LITHIUM-ION BATTERY RECYCLING MARKET: RESEARCH DESIGN
FIGURE 2            BOTTOM-UP APPROACH
FIGURE 3            TOP-DOWN APPROACH
FIGURE 4            MARKET SIZE ESTIMATION
FIGURE 5            FORECAST NUMBER CALCULATION
FIGURE 6            LITHIUM-ION BATTERY RECYCLING MARKET: DATA TRIANGULATION
FIGURE 7            NON-AUTOMOTIVE POWER SUBSEGMENT PROJECTED TO GROW AT HIGHEST CAGR DURING FORECAST PERIOD, 2025-2030
FIGURE 8            ASIA PACIFIC PROJECTED TO ACCOUNT FOR LARGEST SHARE OF LITHIUM-ION BATTERY RECYCLING MARKET IN 2025
FIGURE 9            LITHIUM-ION BATTERY RECYCLING MARKET IS DRIVEN BY THE HIGH OUTPUT OF SPENT BATTERIES FROM EDVS
FIGURE 10          AUTOMOTIVE LITHIUM-MANGANESE OXIDE (LMO) SEGMENT TO GROW AT THE HIGHEST CAGR FROM 2025 TO 2030
FIGURE 11          INCREASE IN DEMAND FOR ELECTRIC VEHICLES EXPECTED TO DRIVE THE GLOBAL LITHIUM-ION BATTERY MARKET
FIGURE 12          AUTOMOTIVE TO BE THE LARGEST END USE SEGMENT OF THE LITHIUM-ION BATTERY RECYCLING MARKET DURING THE FORECAST PERIOD
FIGURE 13          TYPES OF LITHIUM-ION BATTERIES BASED ON MATERIALS USED AS ELECTRODES
FIGURE 14          LITHIUM-NICKEL MANGANESE COBALT (LI-NMC) SEGMENT PROJECTED TO LEAD THE AUTOMOTIVE LITHIUM-ION BATTERY RECYCLING MARKET
FIGURE 15          LI-NMC ARE HIGH ENERGY DENSITY BATTERIES
FIGURE 16          HIGH POWER DENSITY AND STABILITY BOOSTS ADOPTION OF LFP BATTERIES
FIGURE 17          COST FACTOR BOOSTS THE GROWTH OF THE LMO BATTERY MARKET
FIGURE 18          HIGH STABILITY, ENERGY, AND POWER DENSITY EXPECTED TO CREATE DEMAND FOR LTO BATTERIES
FIGURE 19          HIGH ENERGY DENSITY OF NCA BATTERIES INCREASES DEMAND IN THE AUTOMOTIVE INDUSTRY
FIGURE 20          EUROPE MARKET TO GROW AT THE HIGHEST CAGR IN GLOBAL LITHIUM-ION BATTERY RECYCLING MARKET BY 2030
FIGURE 21          US LITHIUM-ION BATTERY RECYCLERS SNAPSHOT
FIGURE 22          CANADA LITHIUM-ION BATTERY RECYCLERS SNAPSHOT
FIGURE 23          COMPANIES ADOPTED BOTH ORGANIC AND INORGANIC GROWTH STRATEGIES BETWEEN JANUARY 2014 AND OCTOBER 2019
FIGURE 24          LITHIUM-ION BATTERY RECYCLING MARKET: COMPETITIVE LANDSCAPE
MAPPING, 2019
FIGURE 25          UMICORE: COMPANY SNAPSHOT
FIGURE 26          GLENCORE INTERNATIONAL AG: COMPANY SNAPSHOT
FIGURE 27          FORTUM OYJ: COMPANY SNAPSHOT



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