1. Market – Executive Summary
2. Market Overview
2.1. Market Definition and Introduction
2.2. Market Taxonomy/ Research Scope
3. Market Background and Foundation Data
3.1. Global Recycling Industry Overview
3.2. Regulatory Framework
3.3. Technology Evolution in the Market
3.4. Market Opportunity Assessment
3.4.1. Total Available Market (US$ million)
3.4.2. Serviceable Addressable Market (US$ million)
3.4.3. Serviceable Obtainable Market (US$ million)
3.5. Market Dynamics
3.5.1. Drivers
3.5.2. Restraints
3.5.3. Opportunities
3.5.4. Trends
3.6. Macro– Economic Factors
3.7. Forecast and Factors – Relevance and Impact
3.8. PESTLE Analysis
3.9. Porter’s Five Force Analysis
3.10. Investment Feasibility Analysis
3.11. Industry Value and Supply Chain Analysis
3.11.1. Value Added at Each Node of Supply Chain
3.11.2. Gross Profitability Margins (at Every Level)
3.11.3. List of Key Participants
3.11.3.1. Operating Margins (at each node of value chain)
3.11.3.2. Key Raw Material Suppliers
3.11.3.3. Key Recycling Service Providers
3.11.3.4. Key Distributor/Retailers
3.11.3.5. Key End-Use Industries
4. Global Demand (Tons) Analysis and Forecast
4.1. Historical Market Volume (Tons) Analysis, 2018–2022
4.2. Current and Future Market Volume (Tons) Projections, 2023–2033
4.3. Y–o–Y Volume Growth Trend Analysis
5. Global Market – Pricing Analysis
5.1. Metal Type and Country–Level Pricing Analysis
5.2. Global Average Pricing Analysis Benchmark
5.3. Factors Influencing Pricing
6. Global Market Value (US$ million) Analysis and Forecast
6.1. Historical Market Value (US$ million) Analysis, 2018–2022
6.2. Current and Future Market Value (US$ million) Projections, 2023–2033
6.2.1. Y–o–Y Growth Trend Analysis
6.2.2. Absolute $ Opportunity Analysis
7. Global Market Analysis and Forecast, By Metal Type
7.1. Introduction / Key Findings
7.2. Historical Market Size (US$ million) and Volume (Tons) Analysis By Metal Type, 2018–2022
7.3. Current and Future Market Size (US$ million) Analysis and Volume (Tons) Forecast By Metal Type, 2023–2033
7.3.1. Ferrous
7.3.1.1. Stainless Steel
7.3.1.2. Carbon Steel
7.3.1.3. Mild Steel
7.3.1.4. Cast Iron
7.3.1.5. Others
7.3.2. Non-Ferrous
7.3.2.1. Aluminum
7.3.2.2. Copper
7.3.2.3. Lead
7.3.2.4. Nickel
7.3.2.5. Zinc
7.3.2.6. Brass
7.3.2.7. Tin
7.3.2.8. Gold
7.3.2.9. Others
7.4. Market Attractiveness Analysis By Metal Type
8. Global Market Analysis and Forecast, By Scrap Type
8.1. Introduction / Key Findings
8.2. Historical Market Size (US$ million) and Volume (Tons) Analysis By Scrap Type, 2018–2022
8.3. Current and Future Market Size (US$ million) Analysis and Volume (Tons) Forecast By Scrap Type, 2023–2033
8.3.1. New
8.3.2. Old
8.4. Market Attractiveness Analysis By Scrap Type
9. Global Market Analysis and Forecast, By Industry
9.1. Introduction / Key Findings
9.2. Historical Market Size (US$ million) and Volume (Tons) Analysis By Industry, 2018–2022
9.3. Current and Future Market Size (US$ million) Analysis and Volume (Tons) Forecast By Industry, 2023–2033
9.3.1. Building & Construction
9.3.2. Automotive
9.3.3. Industrial Manufacturing
9.3.4. Electricals
9.3.5. Shipbuilding
9.3.6. Consumer Electronics
9.3.7. Others
9.4. Market Attractiveness Analysis By Industry
10. Global Market Analysis and Forecast, By Region
10.1. Introduction
10.2. Historical Market Size (US$ million) and Volume (Tons) Analysis By Region, 2018–2022
10.3. Current Market Size (US$ million) Analysis and Volume (Tons) Forecast By Region, 2023–2033
10.3.1. North America
10.3.2. Latin America
10.3.3. Europe
10.3.4. East Asia
10.3.5. South Asia & Oceania
10.3.6. Middle East & Africa
10.4. Market Attractiveness Analysis By Region
11. North America Market Analysis and Forecast
11.1. Introduction / Key Findings
11.2. Pricing Analysis
11.3. Historical Market Size (US$ million) and Volume (Tons) Trend Analysis By Market Taxonomy, 2018–2022
11.4. Market Size (US$ million) and Volume (Tons) Forecast By Market Taxonomy, 2023–2033
11.4.1. By Country
11.4.1.1. U.S.
11.4.1.2. Canada
11.4.2. By Metal Type
11.4.3. By Scrap Type
11.4.4. By Industry
11.5. Market Attractiveness Analysis
11.5.1. By Country
11.5.2. By Metal Type
11.5.3. By Scrap Type
11.5.4. By Industry
12. Latin America Market Analysis and Forecast
12.1. Introduction / Key Findings
12.2. Pricing Analysis
12.3. Historical Market Size (US$ million) and Volume (Tons) Trend Analysis By Market Taxonomy, 2018–2022
12.4. Market Size (US$ million) and Volume (Tons) Forecast By Market Taxonomy, 2023–2033
12.4.1. By Country
12.4.1.1. Brazil
12.4.1.2. Mexico
12.4.1.3. Argentina
12.4.1.4. Rest of Latin America
12.4.2. By Metal Type
12.4.3. By Scrap Type
12.4.4. By Industry
12.5. Market Attractiveness Analysis
12.5.1. By Country
12.5.2. By Metal Type
12.5.3. By Scrap Type
12.5.4. By Industry
13. Europe Market Analysis and Forecast
13.1. Introduction / Key Findings
13.2. Pricing Analysis
13.3. Historical Market Size (US$ million) and Volume (Tons) Trend Analysis By Market Taxonomy, 2018–2022
13.4. Market Size (US$ million) and Volume (Tons) Forecast By Market Taxonomy, 2023–2033
13.4.1. By Country
13.4.1.1. Germany
13.4.1.2. France
13.4.1.3. Italy
13.4.1.4. Spain
13.4.1.5. U.K.
13.4.1.6. BENELUX
13.4.1.7. Russia
13.4.1.8. Rest of Europe
13.4.2. By Metal Type
13.4.3. By Scrap Type
13.4.4. By Industry
13.5. Market Attractiveness Analysis
13.5.1. By Country
13.5.2. By Metal Type
13.5.3. By Scrap Type
13.5.4. By Industry
14. East Asia Market Analysis and Forecast
14.1. Introduction / Key Findings
14.2. Pricing Analysis
14.3. Historical Market Size (US$ million) and Volume (Tons) Trend Analysis By Market Taxonomy, 2018–2022
14.4. Market Size (US$ million) and Volume (Tons) Forecast By Market Taxonomy, 2023–2033
14.4.1. By Country
14.4.1.1. China
14.4.1.2. Japan
14.4.1.3. South Korea
14.4.2. By Metal Type
14.4.3. By Scrap Type
14.4.4. By Industry
14.5. Market Attractiveness Analysis
14.5.1. By Country
14.5.2. By Metal Type
14.5.3. By Scrap Type
14.5.4. By Industry
15. South Asia & Oceania Market Analysis and Forecast
15.1. Introduction / Key Findings
15.2. Pricing Analysis
15.3. Historical Market Size (US$ million) and Volume (Tons) Trend Analysis By Market Taxonomy, 2018–2022
15.4. Market Size (US$ million) and Volume (Tons) Forecast By Market Taxonomy, 2023–2033
15.4.1. By Country
15.4.1.1. India
15.4.1.2. Thailand
15.4.1.3. Indonesia
15.4.1.4. Malaysia
15.4.1.5. Australia & New Zealand
15.4.1.6. Rest of South Asia & Oceania
15.4.2. By Metal Type
15.4.3. By Scrap Type
15.4.4. By Industry
15.5. Market Attractiveness Analysis
15.5.1. By Country
15.5.2. By Metal Type
15.5.3. By Scrap Type
15.5.4. By Industry
16. Middle East & Africa Market Analysis and Forecast
16.1. Introduction / Key Findings
16.2. Pricing Analysis
16.3. Historical Market Size (US$ million) and Volume (Tons) Trend Analysis By Market Taxonomy, 2018–2022
16.4. Market Size (US$ million) and Volume (Tons) Forecast By Market Taxonomy, 2023–2033
16.4.1. By Country
16.4.1.1. GCC Countries
16.4.1.2. South Africa
16.4.1.3. Northern Africa
16.4.1.4. Turkiye
16.4.1.5. Rest of Middle East & Africa
16.4.2. By Metal Type
16.4.3. By Scrap Type
16.4.4. By Industry
16.5. Market Attractiveness Analysis
16.5.1. By Country
16.5.2. By Metal Type
16.5.3. By Scrap Type
16.5.4. By Industry
17. Country–level Market Analysis and Forecast
17.1. Introduction / Key Findings
17.1.1. Market Value Proportion Analysis, By Key Countries
17.1.2. Global Vs. Country Growth Comparison
17.2. US Market Analysis
17.2.1. Value Proportion Analysis By Market Taxonomy
17.2.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.2.2.1. By Metal Type
17.2.2.2. By Scrap Type
17.2.2.3. By Industry
17.3. Canada Market Analysis
17.3.1. Value Proportion Analysis By Market Taxonomy
17.3.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.3.2.1. By Metal Type
17.3.2.2. By Scrap Type
17.3.2.3. By Industry
17.4. Brazil Market Analysis
17.4.1. Value Proportion Analysis By Market Taxonomy
17.4.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.4.2.1. By Metal Type
17.4.2.2. By Scrap Type
17.4.2.3. By Industry
17.5. Mexico Market Analysis
17.5.1. Value Proportion Analysis By Market Taxonomy
17.5.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.5.2.1. By Metal Type
17.5.2.2. By Scrap Type
17.5.2.3. By Industry
17.6. Argentina Market Analysis
17.6.1. Value Proportion Analysis By Market Taxonomy
17.6.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.6.2.1. By Metal Type
17.6.2.2. By Scrap Type
17.6.2.3. By Industry
17.7. Germany Market Analysis
17.7.1. Value Proportion Analysis By Market Taxonomy
17.7.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.7.2.1. By Metal Type
17.7.2.2. By Scrap Type
17.7.2.3. By Industry
17.8. France Market Analysis
17.8.1. Value Proportion Analysis By Market Taxonomy
17.8.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.8.2.1. By Metal Type
17.8.2.2. By Scrap Type
17.8.2.3. By Industry
17.9. Italy Market Analysis
17.9.1. Value Proportion Analysis By Market Taxonomy
17.9.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.9.2.1. By Metal Type
17.9.2.2. By Scrap Type
17.9.2.3. By Industry
17.10. Spain Market Analysis
17.10.1. Value Proportion Analysis By Market Taxonomy
17.10.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.10.2.1. By Metal Type
17.10.2.2. By Scrap Type
17.10.2.3. By Industry
17.11. BENELUX Market Analysis
17.11.1. Value Proportion Analysis By Market Taxonomy
17.11.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.11.2.1. By Metal Type
17.11.2.2. By Scrap Type
17.11.2.3. By Industry
17.12. Russia Market Analysis
17.12.1. Value Proportion Analysis By Market Taxonomy
17.12.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.12.2.1. By Metal Type
17.12.2.2. By Scrap Type
17.12.2.3. By Industry
17.13. U.K. Market Analysis
17.13.1. Value Proportion Analysis By Market Taxonomy
17.13.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.13.2.1. By Metal Type
17.13.2.2. By Scrap Type
17.13.2.3. By Industry
17.14. China Market Analysis
17.14.1. Value Proportion Analysis By Market Taxonomy
17.14.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.14.2.1. By Metal Type
17.14.2.2. By Scrap Type
17.14.2.3. By Industry
17.15. Japan Market Analysis
17.15.1. Value Proportion Analysis By Market Taxonomy
17.15.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.15.2.1. By Metal Type
17.15.2.2. By Scrap Type
17.15.2.3. By Industry
17.16. South Korea Market Analysis
17.16.1. Value Proportion Analysis By Market Taxonomy
17.16.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.16.2.1. By Metal Type
17.16.2.2. By Scrap Type
17.16.2.3. By Industry
17.17. India Market Analysis
17.17.1. Value Proportion Analysis By Market Taxonomy
17.17.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.17.2.1. By Metal Type
17.17.2.2. By Scrap Type
17.17.2.3. By Industry
17.18. ASEAN Countries Market Analysis
17.18.1. Value Proportion Analysis By Market Taxonomy
17.18.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.18.2.1. By Metal Type
17.18.2.2. By Scrap Type
17.18.2.3. By Industry
17.19. Australia Market Analysis
17.19.1. Value Proportion Analysis By Market Taxonomy
17.19.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.19.2.1. By Metal Type
17.19.2.2. By Scrap Type
17.19.2.3. By Industry
17.20. GCC Countries Market Analysis
17.20.1. Value Proportion Analysis By Market Taxonomy
17.20.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.20.2.1. By Metal Type
17.20.2.2. By Scrap Type
17.20.2.3. By Industry
17.21. Turkiye Market Analysis
17.21.1. Value Proportion Analysis By Market Taxonomy
17.21.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.21.2.1. By Metal Type
17.21.2.2. By Scrap Type
17.21.2.3. By Industry
17.22. South Africa Market Analysis
17.22.1. Value Proportion Analysis By Market Taxonomy
17.22.2. Volume (Tons) and Value (US$ million) Analysis and Forecast By Market Taxonomy, 2018–2033
17.22.2.1. By Metal Type
17.22.2.2. By Scrap Type
17.22.2.3. By Industry
18. Market Structure Analysis
18.1. Market Analysis By Tier of Companies
18.2. Market Concentration of Players
18.3. Market Share Analysis of Top Players
18.4. Market Presence Analysis
19. Competition Analysis
19.1. Competition Dashboard
19.2. Competition Benchmarking of Products
19.3. Competition Deep Dive:
19.3.1. American Iron & Metal (AIM)
19.3.1.1. Overview
19.3.1.2. Product Portfolio
19.3.1.3. Key Financials
19.3.1.4. Sales Footprint
19.3.1.5. SWOT Analysis
19.3.1.6. Key Developments
19.3.1.7. Strategy Overview
19.3.2. ArcelorMittal
19.3.2.1. Overview
19.3.2.2. Product Portfolio
19.3.2.3. Key Financials
19.3.2.4. Sales Footprint
19.3.2.5. SWOT Analysis
19.3.2.6. Key Developments
19.3.2.7. Strategy Overview
19.3.3. Aurubis AG
19.3.3.1. Overview
19.3.3.2. Product Portfolio
19.3.3.3. Key Financials
19.3.3.4. Sales Footprint
19.3.3.5. SWOT Analysis
19.3.3.6. Key Developments
19.3.3.7. Strategy Overview
19.3.4. DBW Metals Recycling
19.3.4.1. Overview
19.3.4.2. Product Portfolio
19.3.4.3. Key Financials
19.3.4.4. Sales Footprint
19.3.4.5. SWOT Analysis
19.3.4.6. Key Developments
19.3.4.7. Strategy Overview
19.3.5. Kuusakoski
19.3.5.1. Overview
19.3.5.2. Product Portfolio
19.3.5.3. Key Financials
19.3.5.4. Sales Footprint
19.3.5.5. SWOT Analysis
19.3.5.6. Key Developments
19.3.5.7. Strategy Overview
19.3.6. Metallon Recycling Pte Ltd.
19.3.6.1. Overview
19.3.6.2. Product Portfolio
19.3.6.3. Key Financials
19.3.6.4. Sales Footprint
19.3.6.5. SWOT Analysis
19.3.6.6. Key Developments
19.3.6.7. Strategy Overview
19.3.7. Nucor Corporation
19.3.7.1. Overview
19.3.7.2. Product Portfolio
19.3.7.3. Key Financials
19.3.7.4. Sales Footprint
19.3.7.5. SWOT Analysis
19.3.7.6. Key Developments
19.3.7.7. Strategy Overview
19.3.8. OmniSource, LLC
19.3.8.1. Overview
19.3.8.2. Product Portfolio
19.3.8.3. Key Financials
19.3.8.4. Sales Footprint
19.3.8.5. SWOT Analysis
19.3.8.6. Key Developments
19.3.8.7. Strategy Overview
19.3.9. Sims Limited
19.3.9.1. Overview
19.3.9.2. Product Portfolio
19.3.9.3. Key Financials
19.3.9.4. Sales Footprint
19.3.9.5. SWOT Analysis
19.3.9.6. Key Developments
19.3.9.7. Strategy Overview
19.3.10. TKC Metal Recycling Inc.
19.3.10.1. Overview
19.3.10.2. Product Portfolio
19.3.10.3. Key Financials
19.3.10.4. Sales Footprint
19.3.10.5. SWOT Analysis
19.3.10.6. Key Developments
19.3.10.7. Strategy Overview
19.3.11. K-Swiss Inc.
19.3.11.1. Overview
19.3.11.2. Product Portfolio
19.3.11.3. Key Financials
19.3.11.4. Sales Footprint
19.3.11.5. SWOT Analysis
19.3.11.6. Key Developments
19.3.11.7. Strategy Overview
19.3.12. Other Players
19.3.12.1. Overview
19.3.12.2. Product Portfolio
19.3.12.3. Key Financials
19.3.12.4. Sales Footprint
19.3.12.5. SWOT Analysis
19.3.12.6. Key Developments
19.3.12.7. Strategy Overview
20. Assumptions & Acronyms Used
21. Research Methodology
| ※参考情報 金属スクラップリサイクルは、使用済みの金属製品を回収して再利用するプロセスを指します。このプロセスは、環境保護や資源の有効活用に寄与し、廃棄物の削減にもつながる重要な活動です。金属のリサイクルは、鉄鋼、アルミニウム、銅、ステンレス、貴金属など、多様な金属で行われます。それぞれの金属には特有の性質とリサイクルの方法があります。 金属スクラップの種類には、まず鉄スクラップがあります。これは、建物や車両、機械などの廃材に含まれる鉄を指し、最も一般的にリサイクルされる金属です。次に、アルミニウムスクラップがあり、主に飲料缶や自動車部品から回収されます。アルミニウムは軽量で腐食に強い特徴を持つため、再利用の価値が非常に高いです。また、銅スクラップも重要です。銅は電線や配管に使用されており、リサイクルすることで新しい製品に生まれ変わります。さらに、ステンレススチールや貴金属のリサイクルも行われています。これらの金属は高価で、高い市場価値があります。 金属リサイクルの用途は多岐にわたります。リサイクルされた金属は、新しい製品の原料として使用されます。たとえば、再生された鉄鋼は、建設用の鋼材や自動車部品に加工されます。アルミニウムは、再び缶や包装材、さらには自動車のボディなどに利用されます。銅も、電気機器や配線の材料として再利用されることが多いです。このように、リサイクルによって新製品に生まれ変わることは、資源の節約や環境への負荷軽減に貢献しています。 金属リサイクルに関連する技術も進化しています。スクラップの収集から選別、再生、そして製品化のプロセスにおいて、様々な技術が活用されています。収集の段階では、地域のリサイクルセンターや企業が重要な役割を果たします。特に、鉄鋼やアルミニウムなど、大量に発生する金属スクラップを効率よく回収するためのシステムが整備されています。 選別技術については、手作業による選別から始まり、高度な機械技術が導入されるようになっています。電磁式選別機や光学選別機などの用途によって、異なる金属を自動で分離することが可能です。このプロセスによって、リサイクル効率が向上し、混合金属がリサイクルされる際のロスを最小限に抑えることができます。 次に、再生の段階では、金属を溶融させて新しい素材にするプロセスがあります。例えば、高温の炉で金属を溶かし、新たな形状に成形します。この技術によって、高品質な金属が再生されるため、製造業者にとっても重要です。一部のリサイクル工場では、エネルギー効率を高めるために、再生燃料やリサイクルされたエネルギーを使用しています。 金属スクラップリサイクルは、経済的な側面でも注目を浴びています。リサイクルによって新たな資源を購入する必要がなくなり、コスト削減につながります。また、リサイクル業界は多くの雇用を生んでおり、地域経済の活性化に寄与しています。金属リサイクルに関わる企業や団体は、環境教育や地域貢献の活動も行っており、持続可能な社会の形成にも寄与しています。 まとめると、金属スクラップリサイクルは、金属資源の再利用を通じて、環境保護や資源の効率的な利用を促進する重要な活動です。様々な金属の特性を活かし、選別や再生技術を駆使することで、リサイクル効率が向上し、新たな経済価値を生み出しています。今後も、金属リサイクルは持続可能な社会を目指す上で欠かせない重要な分野であり続けるでしょう。 |
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