E-Waste Management Market Size, Share and Trends

E-Waste Management Market by Material Recovery (Metals, Plastic, & Glass), Source type (Household Appliances, Entertainment & Consumer Electronics, & IT & Telecommunication), and by Geography - Forecast to 2035

Report Code: SE 1588 Sep, 2026, by marketsandmarkets.com

E-Waste Management Market Summary

The E-Waste Management Market is experiencing significant momentum as governments, manufacturers, and consumers increasingly recognize the importance of sustainable electronics disposal and resource recovery. The market is estimated to be valued at USD 75–80 billion in 2025 and is projected to reach USD 150–165 billion by 2035, expanding at a CAGR of 7%–9% during the forecast period. Rapid digitalization, rising consumption of electronic devices, shorter product replacement cycles, and stringent environmental regulations are creating substantial demand for efficient e-waste collection, recycling, refurbishment, and material recovery solutions. Furthermore, the integration of artificial intelligence (AI), Internet of Things (IoT), robotics, and automation into recycling facilities is improving sorting accuracy, increasing recovery rates, and reducing operational costs. Growing investments in circular economy initiatives and extended producer responsibility (EPR) programs are also accelerating the global expansion of the E-Waste Management Market.

Key Market Trends & Insights

  • North America remains the leading regional market due to strict environmental regulations, advanced recycling infrastructure, and widespread adoption of sustainable waste management practices.

  • Asia Pacific is expected to witness the fastest growth owing to rapid urbanization, increasing electronics consumption, and supportive government recycling initiatives.

  • Consumer electronics continue to dominate the market because smartphones, laptops, televisions, and household appliances generate the highest volume of electronic waste.

  • AI-powered waste sorting systems, robotic dismantling technologies, and IoT-enabled tracking platforms are transforming recycling operations worldwide.

  • Increasing investments in urban mining and precious metal recovery are improving profitability while supporting circular economy objectives.

  • Cloud-based waste monitoring and blockchain-enabled material traceability are emerging as important technologies enhancing transparency across the recycling value chain.

Market Size & Forecast

  • Base Year Market Size (2025): USD 75–80 billion

  • Forecast Market Value (2035): USD 150–165 billion

  • CAGR (2025–2035): 7%–9%

  • Growth is primarily driven by increasing electronic device consumption, government regulations promoting recycling, AI-enabled waste processing technologies, automation in material recovery facilities, and expanding circular economy initiatives.

E-Waste Management Market Top 10 Key Takeaway

  • Rising electronic device consumption continues to increase global e-waste generation.

  • Government regulations remain the primary catalyst for market growth.

  • AI-driven waste sorting significantly improves recycling efficiency.

  • Automation reduces labor dependency while increasing recovery accuracy.

  • Consumer electronics represent the largest waste stream globally.

  • Precious metal recovery is becoming an increasingly profitable business model.

  • Asia Pacific is projected to deliver the highest growth during the forecast period.

  • Circular economy initiatives are encouraging manufacturers to improve product recyclability.

  • IoT-enabled tracking improves transparency throughout the recycling chain.

  • Strategic collaborations between recyclers, OEMs, and governments are accelerating market expansion.

Product Insights

Consumer electronics account for the largest share of the E-Waste Management Market because smartphones, laptops, desktop computers, televisions, tablets, and household appliances have relatively short replacement cycles. Increasing consumer demand for technologically advanced products has significantly accelerated electronic waste generation, making this segment the primary contributor to recycling volumes. Industrial electronics, medical devices, telecommunication equipment, and electric vehicle batteries are also emerging as high-value product categories due to their increasing deployment across industries.

The growing adoption of electric vehicles and renewable energy storage systems has created new opportunities for battery recycling. Lithium-ion battery recycling, in particular, is becoming a strategic focus due to increasing demand for critical minerals including lithium, cobalt, nickel, and manganese. Companies are investing heavily in advanced hydrometallurgical and pyrometallurgical recycling technologies to recover valuable materials efficiently.

Artificial intelligence is increasingly integrated into product identification and automated dismantling systems. Computer vision technologies accurately identify device categories, while robotic systems disassemble complex electronics with minimal material loss. These innovations improve recycling throughput, reduce contamination, and maximize recovery of valuable components.

Technology / Component Insights

Technological innovation is fundamentally reshaping the E-Waste Management Market. AI-powered image recognition systems automatically classify electronic waste into multiple categories, significantly improving sorting precision compared to manual methods. Machine learning algorithms continuously optimize recycling workflows based on incoming waste characteristics, increasing operational efficiency while minimizing errors.

IoT sensors enable real-time monitoring of waste collection bins, transportation vehicles, and recycling facilities. Connected devices provide valuable operational data that helps optimize logistics, reduce transportation costs, and improve resource utilization. Cloud computing platforms centralize recycling information, allowing stakeholders to monitor collection performance and compliance across multiple facilities.

Automation is another major growth driver. Robotic dismantling systems safely separate hazardous components while improving recovery of valuable metals and reusable parts. Advanced shredding, optical sorting, magnetic separation, and eddy current technologies further enhance recycling efficiency. Emerging blockchain platforms are improving traceability throughout the recycling process by documenting material flows and verifying responsible disposal practices.

Future innovations are expected to include AI-powered predictive waste generation models, autonomous collection systems, digital twins for recycling facilities, and intelligent urban mining technologies capable of maximizing resource recovery while minimizing environmental impact.

Application Insights

Consumer electronics recycling remains the dominant application segment due to continuous replacement of smartphones, laptops, televisions, gaming devices, and wearable electronics. Corporate IT asset disposition is another rapidly expanding application as enterprises upgrade digital infrastructure while ensuring secure disposal of confidential data.

Industrial electronics recycling is gaining importance because manufacturing companies increasingly replace automation equipment, control systems, sensors, and communication devices. Healthcare organizations are also generating growing volumes of obsolete diagnostic equipment, monitoring systems, and medical electronics requiring environmentally compliant disposal.

Electric vehicle battery recycling represents one of the fastest-growing application areas. The rapid expansion of EV production worldwide is creating long-term demand for specialized recycling facilities capable of recovering high-value battery materials. Future opportunities are expected to emerge from renewable energy storage systems, smart city infrastructure, telecommunications equipment, and industrial IoT devices.

Regional Insights

North America dominates the E-Waste Management Market due to well-established recycling infrastructure, strong environmental legislation, and extensive implementation of extended producer responsibility programs. The United States and Canada continue investing in advanced recycling technologies, AI-enabled sorting systems, and circular economy initiatives that promote sustainable electronics management.

Europe represents another mature market characterized by strict waste electrical and electronic equipment (WEEE) regulations. Countries across the region continue strengthening recycling targets while encouraging manufacturers to improve product design for easier repair, refurbishment, and recycling. Sustainability policies and carbon reduction initiatives further support market growth.

Asia Pacific is projected to register the fastest growth throughout the forecast period. Rapid industrialization, urbanization, expanding middle-class populations, and rising electronics consumption across China, Japan, India, and Southeast Asia are generating substantial volumes of electronic waste. Governments are increasing investments in formal recycling infrastructure while introducing stricter environmental regulations to reduce illegal dumping and informal recycling practices.

Latin America and the Middle East & Africa are gradually improving waste management capabilities through public-private partnerships, awareness campaigns, and investments in recycling infrastructure.

Regional Highlights

  • North America remains the largest regional market.

  • Asia Pacific records the fastest projected CAGR.

  • Europe benefits from strong environmental regulations.

  • Emerging economies are expanding formal recycling infrastructure.

  • Circular economy policies support long-term regional growth.

Country-Specific Market Trends

China (CAGR: 9%–10%) continues to dominate Asia Pacific due to its massive electronics manufacturing industry and increasing government investment in formal recycling systems. National circular economy policies and resource recovery initiatives are strengthening market expansion.

Japan (CAGR: 7%–8%) focuses on advanced recycling technologies, robotic dismantling, and high-value metal recovery. Strong environmental awareness and strict recycling legislation support sustained growth.

United States (CAGR: 7%–8%) remains the largest national market globally, supported by advanced recycling infrastructure, corporate sustainability initiatives, and increasing investment in AI-powered recycling facilities.

Canada (CAGR: 6%–7%) benefits from provincial recycling programs, electronic stewardship initiatives, and growing public participation in responsible disposal practices.

Mexico (CAGR: 7%–8%) is witnessing increased investment in organized recycling facilities driven by expanding electronics manufacturing and environmental regulations.

Germany (CAGR: 6%–7%) continues leading Europe through advanced circular economy implementation, innovative recycling technologies, and strong industrial participation.

France (CAGR: 6%–7%) emphasizes producer responsibility programs, sustainable waste management policies, and digital monitoring of recycling activities.

Country Highlights

  • China remains the fastest-growing major market.

  • United States leads global technological adoption.

  • Japan emphasizes automation and robotics.

  • Germany drives European circular economy initiatives.

  • Canada and Mexico continue expanding recycling infrastructure.

Key E-Waste Management Market Company Insights

Leading companies continue investing in AI, automation, robotics, and advanced material recovery technologies to improve recycling efficiency and profitability. Major participants are expanding processing capacity while strengthening partnerships with electronics manufacturers, governments, and logistics providers. Companies are also focusing on secure data destruction, lithium-ion battery recycling, urban mining, and circular economy services to diversify revenue streams.

Prominent market participants include Waste Management Inc., Sims Lifecycle Services, Veolia, Umicore, ERI, TES, Stena Recycling, EnviroServe, Electronic Recyclers International (ERI), and Aurubis AG. These organizations continue strengthening global operations through acquisitions, technology investments, digital transformation initiatives, and sustainable resource recovery solutions.

Company Strategy Highlights

  • Increased investment in AI-powered recycling facilities.

  • Expansion of battery recycling capabilities.

  • Strategic partnerships with electronics manufacturers.

  • Greater emphasis on circular economy business models.

  • Adoption of automation to improve operational efficiency.

Recent Developments

In 2025, several global recycling companies expanded AI-powered optical sorting systems capable of identifying complex electronic components with significantly higher accuracy than conventional manual processes.

Leading e-waste recyclers announced partnerships with electric vehicle battery manufacturers to establish dedicated lithium-ion battery recycling facilities, supporting sustainable critical mineral recovery.

Several technology providers introduced IoT-enabled waste tracking platforms that provide real-time visibility into electronic waste collection, transportation, and recycling operations while improving regulatory compliance and operational transparency.

Market Segmentation

The E-Waste Management Market is segmented by product, technology, application, and geography. By product, the market includes consumer electronics, household appliances, industrial electronics, IT equipment, medical devices, and batteries. Consumer electronics continue holding the largest market share due to high replacement frequency and rapidly increasing global device ownership.

Based on technology, the market consists of mechanical recycling, hydrometallurgical recycling, pyrometallurgical recycling, robotic dismantling, AI-powered sorting systems, IoT-enabled waste tracking, and cloud-based waste management platforms. AI and automation technologies are expected to experience the highest adoption throughout the forecast period.

By application, the market serves consumer electronics recycling, industrial electronics recycling, corporate IT asset disposition, healthcare electronics recycling, battery recycling, and telecommunications equipment recycling. Regionally, the market covers North America, Europe, Asia Pacific, Latin America, and the Middle East & Africa.

Segmentation Highlights

  • Consumer electronics dominate product segmentation.

  • AI-powered recycling technologies experience the fastest adoption.

  • Battery recycling emerges as a high-growth application.

  • North America leads current market revenue.

  • Asia Pacific records the highest forecast growth.

The E-Waste Management Market is positioned for strong and sustainable expansion through 2035, supported by growing electronic waste generation, stricter environmental regulations, and increasing adoption of circular economy principles. Artificial intelligence, IoT, robotics, and automation are fundamentally transforming recycling operations by improving efficiency, reducing costs, and maximizing material recovery. As governments and manufacturers prioritize responsible resource management and sustainability, the market will continue creating new opportunities across consumer electronics, industrial equipment, battery recycling, and urban mining. Organizations investing in digital recycling technologies, strategic partnerships, and innovative recovery solutions are expected to gain significant competitive advantages in the evolving global E-Waste Management Market.

FAQs - E-Waste Management Market

1. What is the current size of the E-Waste Management Market?

The E-Waste Management Market is valued at approximately USD 75–80 billion in 2025.

2. What is the expected growth rate of the market?

The market is projected to expand at a CAGR of 7%–9% between 2025 and 2035.

3. What are the major growth drivers?

Key drivers include increasing electronic waste generation, AI-enabled recycling technologies, IoT-based waste tracking, automation, circular economy initiatives, and stringent environmental regulations.

4. Which region leads the E-Waste Management Market?

North America currently leads the global market due to advanced recycling infrastructure, strong regulatory frameworks, and widespread adoption of sustainable waste management technologies.

5. Who are the leading companies in the E-Waste Management Market?

Major companies include Waste Management Inc., Sims Lifecycle Services, Veolia, Umicore, ERI, TES, Stena Recycling, EnviroServe, Electronic Recyclers International (ERI), and Aurubis AG.

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Table of Contents

1 Introduction (Page No. - 14)
    1.1 Objective of Study
    1.2 Market Definition
    1.3 Market Scope
           1.3.1 Markets Covered
           1.3.2 Years Considered for the Study
    1.4 Currency
    1.5 Package Size
    1.6 Limitations
    1.7 Stakeholders

2 Research Methodology (Page No. - 18)
    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 Assumptions Considered for Products
                    2.1.2.3 Key Industry Insights
                    2.1.2.4 Breakdown of Primaries Interviews: By Company, Designation, and Region
    2.2 Market Size Estimation
           2.2.1 Bottom-Up Approach
           2.2.2 Top-Down Approach
    2.3 Market Breakdown and Data Triangulation

3 Executive Summary (Page No. - 28)

4 Premium Insights (Page No. - 32)
    4.1 Attractive Opportunities in the Market
    4.2 Market, By Source Type
    4.3 Metal Recovery Market is Expected to Hold the Largest Share in APAC During the Forcast Period
    4.4 APAC Countries are Expected to Account for the Largest Share of the Market
    4.5 Life Cycle Analysis, By Region

5 Market Overview (Page No. - 37)
    5.1 Introduction
    5.2 Market Evolution
    5.3 E-Waste Management Methods of E-Waste Disposal
           5.3.1 Land Filling
           5.3.2 Incineration
           5.3.3 Reuse
           5.3.4 Recycle
    5.4 E-Waste Recycling Process
           5.4.1 Collection of E-Waste
           5.4.2 Dismantling
           5.4.3 Preprocessing
           5.4.4 End Processing
           5.4.5 Reuse and Handling of Final E-Waste
    5.5 Market Segmentation
           5.5.1 By Material Recovery
           5.5.2 By Source Type
           5.5.3 By Region
    5.6 Market Dynamics
           5.6.1 Drivers
                    5.6.1.1 Shortened Electronic Product’s Life Cycle
                    5.6.1.2 Awareness About the Conservation of Environment and Health
                    5.6.1.3 Availability of Valuable Substances in E-Waste
                    5.6.1.4 Government Rules and Regulations for the E-Waste Management
                               5.6.1.4.1 U.S. Laws
                               5.6.1.4.2 European Laws
           5.6.2 Restraints
                    5.6.2.1 High Cost for Recycling Incurred Due to Lack of Awareness
           5.6.3 Opportunities
                    5.6.3.1 Companies Being Certified By Third-Party Auditors
           5.6.4 Challenges
                    5.6.4.1 Illegal Dumping of E-Waste By Developing Countries

6 Industry Trends (Page No. - 54)
    6.1 Introduction
    6.2 Value Chain Analysis
    6.3 Porter’s Five Forces Analysis
           6.3.1 Intensity of Competitive Rivalry
           6.3.2 Threat of Substitutes
           6.3.3 Bargaining Power of Buyers
           6.3.4 Bargaining Power of Suppliers
           6.3.5 Threat of New Entrants

7 Market, By Recycler Type (Page No. - 62)
    7.1 Introduction
    7.2 Glass Recycler
    7.3 Metal Recycler
    7.4 Plastic Recycler
    7.5 Printed Circuit Board Recycler

8 Market, By Material Recovery (Page No. - 67)
    8.1 Introduction
    8.2 Metal
    8.3 Plastic
    8.4 Glass
    8.5 Others

9 Market, By Source Type (Page No. - 83)
    9.1 Introduction
    9.2 Household Appliances
           9.2.1 Large Household Appliances
                    9.2.1.1 Washing Machines
                    9.2.1.2 Refrigerators
                    9.2.1.3 Air Conditioners
           9.2.2 Small Household Appliances
    9.3 Entertainment & Consumer Electronics
           9.3.1 Televisions
           9.3.2 Others
    9.4 IT and Telecommunication
           9.4.1 Computers
           9.4.2 Phones
           9.4.3 Others
    9.5 Others

10 Market, By Region (Page No. - 109)
     10.1 Introduction
     10.2 Americas
             10.2.1 North America
                        10.2.1.1 U.S.
                        10.2.1.2 Canada
                        10.2.1.3 Mexico
             10.2.2 South America
     10.3 Europe
             10.3.1 U.K.
             10.3.2 Germany
             10.3.3 France
             10.3.4 Rest of Europe
     10.4 Asia-Pacific
             10.4.1 China
             10.4.2 Japan
             10.4.3 India
             10.4.4 Rest of APAC
     10.5 RoW
             10.5.1 Middle East
             10.5.2 Africa

11 Competitive Landscape (Page No. - 128)
     11.1 Overview
     11.2 Market Share Analysis for the Market
     11.3 Competitive Scenario
     11.4 Recent Developments
             11.4.1 Partnership, Contract, Agreement, & Investment
             11.4.2 Merger and Acquisition
             11.4.3 Expansion and New Project Launch

12 Company Profiles (Page No. - 135)
(Overview, Products and Services, Financials, Strategy & Development)*
     12.1 Introduction
     12.2 Aurubis AG
     12.3 Electronic Recyclers International, Inc.
     12.4 SIMS Metal Management, Ltd.
     12.5 Umicore S.A.
     12.6 Boliden AB
     12.7 MBA Polymers, Inc.
     12.8 Stena Metall AB
     12.9 Enviro-Hub Holdings Ltd.
     12.10 Global Electric Electronic Processing Inc.
     12.11 Tetronics International Ltd.

*Details on Overview, Products and Services, Financials, Strategy & Development Might Not Be Captured in Case of Unlisted Companies.

13 Appendix (Page No. - 160)
     13.1 Insights From Industry Experts
     13.2 Discussion Guide
     13.3 Introducing RT: Real-Time Market Intelligence
     13.4 Available Customizations
     13.5 Additional Report


List of Tables (78 Tables)

Table 1 Shrinking of Electronic Product Life Cycle is Leading to the Growth of E-Waste Management
Table 2 Hazardous Substances in E-Waste
Table 3 Effects of E-Waste on Health and Environment
Table 4 Composition of Valuable Substances in A Desktop Computer
Table 5 Laws of Recycling E-Waste in Different States in the U.S.
Table 6 Laws of Recycling E-Waste in Europe
Table 7 Improper Recycling Methods is Increasing the Cost of Recycling
Table 8 Opportunity for the Third Party Auditors is Highlighted By Growing Market
Table 9 Porter’s Five Forces Analysis: E-Waste Management
Table 10 Market Size, By Material Recovery, 2013–2020 (Million Tonnes)
Table 11 Market Size, By Material Recovery, 2013–2020 (USD Billion)
Table 12 Types of Metals, Sources, and Composition
Table 13 Metal Market Size, By Source Type, 2013–2020 (USD Million)
Table 14 Metal Market Size, By Household Appliance, 2013–2020 (Million Tonnes)
Table 15 Metal Market Size, By Large Household Appliance 2013–2020 (Million Tonnes)
Table 16 Metal Market Size, By Region, 2013–2020 (USD Million)
Table 17 Plastic Market Size, By Source Type, 2013–2020 (USD Million)
Table 18 Plastic Market Size, By Household Appliance, 2013–2020 (Million Tonnes)
Table 19 Plastic Market Size, By Large Household Appliance, 2013–2020 (Million Tonnes)
Table 20 Plastic Market Size, By Region, 2013–2020 (USD Million)
Table 21 Glass Market Size, By Source Type, 2013–2020 (USD Million)
Table 22 Glass Market Size, By Household Appliance, 2013–2020 (Million Tonnes)
Table 23 Glass Market Size, By Large Household Appliance, 2013–2020 (Million Tonnes)
Table 24 Glass Market Size, By Region, 2013–2020 (USD Million)
Table 25 Other Material Market Size, By Source Type, 2013–2020 (USD Million)
Table 26 Other Material Market Size, By Household Appliance, 2013–2020 (Million Tonnes)
Table 27 Other Material Market Size, By Large Household Appliance, 2013–2020 (Million Tonnes)
Table 28 Others Material Market Size, By Regions, 2013–2020 (USD Million)
Table 29 Market Size, By Source Type, 2013–2020 (Million Tonnes)
Table 30 Recycled: Market Size, By Source Type, 2013–2020 (Million Tonnes)
Table 31 Market Size, By Source Type, 2013–2020 (USD Billion)
Table 32 Market Size, By Region, 2013–2020 (Million Tonnes)
Table 33 Generated: Household Appliances Market Size, By Type, 2013–2020 (Million Tonnes)
Table 34 Recycled: Household Appliances Market Size, By Type, 2013–2020 (Million Tonnes)
Table 35 Recycled: Household Appliances Market Size, By Region, 2013–2020 (Million Tonnes)
Table 36 Household Appliances Market Size, By Material Recovery, 2013–2020 (USD Million)
Table 37 Recycled: Household Appliances Metal Market Size, By Region, 2013–2020 (USD Million)
Table 38 Recycled: Household Appliances Plastic Market Size, By Region, 2013–2020 (USD Million)
Table 39 Recycled: Household Appliances Glass Market Size, By Region, 2013–2020 (USD Million)
Table 40 Generated: Large Household Appliances Market Size, By Subtype, 2013–2020 (Million Tonnes)
Table 41 Recycled: Large Household Appliances Market Size, By Subtype, 2013–2020 (Million Tonnes)
Table 42 Recycled: Entertainment and Consumer Electronics Market Size, By Material Recovery, 2013–2020 (USD Million)
Table 43 Recycled: Entertainment and Consumer Electronics Market Size, By Region, 2013–2020 (Million Tonnes)
Table 44 Recycled: Entertainment and Consumer Electronics Metal Market Size, By Region, 2013–2020 (USD Million)
Table 45 Recycled: Entertainment and Consumer Electronics Plastic Market Size, By Region, 2013–2020 (USD Million)
Table 46 Recycled: Entertainment and Consumer Electronics Glass Market Size, By Region, 2013–2020 (USD Million)
Table 47 Generated: Entertainment & Consumer Electronic Market Size, By Product, 2013–2020 (Million Tonnes)
Table 48 Recycled: Entertainmnet & Consumer Electronic Market Size, By Product, 2013–2020 (Million Tonnes)
Table 49 Recycled: IT and Telecommunication Market Size, By Product, 2013–2020 (Million Tonnes)
Table 50 Recycled: IT and Telecommunication Market Size, By Material Recovery, 2013–2020 (USD Million)
Table 51 Recycled: IT and Telecommunication Market Size, By Region, 2013–2020 (Million Tonnes)
Table 52 Recycled: IT and Telecommunication Metal Market Size, By Region, 2013–2020 (USD Million)
Table 53 Recycled: IT and Telecommunication Plastic Market Size, By Region, 2013–2020 (USD Million)
Table 54 Recycled: IT and Telecommunication Glass Market Size, By Region, 2013–2020 (USD Million)
Table 55 Generated: IT and Telecommunication Market Size, By Type, 2013–2020 (Million Tonnes)
Table 56 Recycled: Other Sources Market Size, By Material Recovery, 2013–2020 (USD Million)
Table 57 Recycled: Other Sources Market Size, By Region, 2013–2020 (Million Tonnes)
Table 58 Recycled: Metal Market Size, By Region, 2013–2020 (USD Million)
Table 59 Recycled: Plastic Market Size, By Region, 2013-2020 (USD Million)
Table 60 Recycled: Glass Market Size, By Region, 2013–2020 (USD Million)
Table 61 E-Waste Management Market Size, By Region, 2013–2020 (Million Tonnes)
Table 62 Market Size, By Region, 2013–2020 (USD Billion)
Table 63 Americas Market Size, By Region, 2013–2020 (Million Tonnes)
Table 64 Americas Market Size, By Source Type, 2013–2020 (Million Tonnes)
Table 65 Americas Market Size, By Material Recovery, 2013–2020 (USD Million)
Table 66 North American Market Size, By Country, 2013–2020 (Million Tonnes)
Table 67 European Market Size, By Source Type, 2013–2020 (Million Tonnes)
Table 68 European Market Size, By Material Recovery, 2013–2020 (USD Million)
Table 69 European Market Size, By Country, 2013–2020 (Million Tonnes)
Table 70 APAC Market Size, By Source Type, 2013–2020 (Million Tonnes)
Table 71 APAC Market Size, By Material Recovery, 2013–2020 (USD Million)
Table 72 APAC Market Size, By Country, 2013–2020 (Million Tonnes)
Table 73 RoW Market Size, By Source Type, 2013–2020 (Million Tonnes)
Table 74 RoW Market Size, By Material Recovery, 2013–2020 (USD Million)
Table 75 Market Ranking for the Company in the E-Waste Management, 2014
Table 76 Partnership, Contract, Agreement, & Investment, 2012–2015
Table 77 Merger and Acquisition, 2012–2015
Table 78 Expansion and New Product Launch, 2012–2015


List of Figures (82 Figures)

Figure 1 E-Waste Management Market
Figure 2 Research Design
Figure 3 Research Methodology
Figure 4 Market Size Estimation Methodology: Bottom-Up Approach
Figure 5 Market Size Estimation Methodology: Top-Down Approach
Figure 6 Data Triangulation
Figure 7 E-Waste Recycled in 2014 Was Only One Fourth of the Total E-Waste Generated Annually
Figure 8 Volume of Household Appliances Witness Large Market Share in the Market During the Forecast Period
Figure 9 Household Appliances to Have Highest Market Share During the Forecast Period
Figure 10 APAC Accounted for the Largest Share of the Market in 2014
Figure 11 The Market in APAC is Expected to Grow at the Highest Rate During the Forecast Period
Figure 12 IT and Telecommunication is Estimated to Have the Highest Market Growth in E-Waste Generation During the Forecast Period
Figure 13 India is Expected to Have the Highest CAGR Between 2015 and 2020
Figure 14 China Was the Largest E-Waste Recycler Globally in 2014
Figure 15 APAC is Expected to Witness the Highest Growth Rate, Followed By Europe During the Forecast Period
Figure 16 E-Waste Management Evolution
Figure 17 Process of Recycling
Figure 18 Market: Segmentation
Figure 19 Market Segmentation: By Material Recovery
Figure 20 Market Segmentation: By Source Type
Figure 21 Market Segmentation: By Region
Figure 22 Government Regulations are Encouraging Organizations to Manage E-Waste
Figure 23 Expected Life Cycle of the Electronic Products in 2014
Figure 24 Global Export of E-Waste
Figure 25 Value Chain Analysis of the Market
Figure 26 Porter’s Five Forces Analysis (2015–2020)
Figure 27 Porter’s Five Forces Analysis: Bargaining Power of Buyers in the Market is Expected to Have A High-To-Medium Impact on the Market During the Forecast Period
Figure 28 Intensity of Competitive Rivalry: Moderate Competition in the Market Due to the Growth in the Number of Players
Figure 29 The Threat of Substitute is Expected to Be Low Due to the High Switching Cost for Buyers
Figure 30 The Bargaining Power of Buyers is Expected to Be High Due to Buyers’ High Adoption Rate for Recycled Products
Figure 31 The Bargaining Power of Suppliers is Expected to Be Moderate Due to Government Regulations
Figure 32 New Entrants are Likely to Enter the Market Due to A High Growth Rate of the market
Figure 33 Market, By Recycler Type
Figure 34 Types of Metal
Figure 35 Market, By Material Recovery
Figure 36 Market Size, By Material Recovery (Million Tonnes)
Figure 37 Market Size, By Material Recovery (USD Billion)
Figure 38 Metal Market Size, By Household Appliance (Million Tonnes)
Figure 39 Metal Market Size, By Region (USD Million)
Figure 40 Plastic Market Size, By Household Appliance (Million Tonnes)
Figure 41 Plastic Market Size, By Region (USD Million)
Figure 42 Glass Market Size, By Household Appliance (Million Tonnes)
Figure 43 Glass Market Size, By Region (USD Million)
Figure 44 Others Material Market Size, By Household Appliance (Million Tonnes)
Figure 45 Others Material Market Size, By Region
Figure 46 Market, By Source Type
Figure 47 Market Size, By Source Type, (USD Billion)
Figure 48 Household Appliances, By Type
Figure 49 Recycled: Household Appliances Market Size, By Region, (Million Tonnes)
Figure 50 Recycled: Household Appliances Market Size, By Material Recovery, (USD Million)
Figure 51 Generated: Large Household Appliances Market Size, By Subtype (Million Tonnes)
Figure 52 Market, By Entertainment and Consumer Electronics
Figure 53 Recycled: Entertainment and Consumer Electronics Market Size, By Region (Million Tonnes)
Figure 54 Generated: Entertainment & Consumer Electronic Market Size, By Product (Million Tonnes)
Figure 55 Market By IT & Telecommunication
Figure 56 Recycled: IT and Telecommunication Market Size, By Product (Million Tonnes)
Figure 57 Recycled: IT and Telecommunication Market Size, By Region (Million Tonnes)
Figure 58 Recycled: Other Sources Market Size, By Region, Million Tonnes
Figure 59 Market, By Region
Figure 60 Geographic Snapshot (2015–2020)
Figure 61 Americas Market, By Region
Figure 62 Americas: Market Snapshot
Figure 63 Europe Market, By Region
Figure 64 Europe: Market Snapshot
Figure 65 APAC Market, By Region
Figure 66 APAC: Market Snapshot
Figure 67 The Rest of the World Market, By Region
Figure 68 Key Growth Strategies Adopted By Top Companies Over the Last Three Years
Figure 69 Market Evaluation Framework – Partnership, Contract, Agreement, & Investment Fuelled the Growth of the Market Between 2013 to 2015
Figure 70 Battle for Market Share: Partnership, Contract, Agreement, & Investment Were the Key Strategies
Figure 71 Geographic Revenue Mix of Top 4 Market Players
Figure 72 Aurubis AG: Snapshot
Figure 73 Aurubis AG: SWOT Analysis
Figure 74 SWOT Analysis: Electronic Recyclers International, Inc.
Figure 75 SIMS Metal Management Ltd.: Company Snapshot
Figure 76 SIMS Metal Management Ltd.: SWOT Analysis
Figure 77 Umicore S.A.: Company Snapshot
Figure 78 SWOT Analysis: Umicore S.A.
Figure 79 Boliden AB: Company Snapshot
Figure 80 Boliden AB: SWOT Analysis
Figure 81 Stena Metall AB: Company Snapshot
Figure 82 Enviro-Hub Holdings Ltd.: Company Snapshot


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