亞太礦業和鋼鐵業市場按最終用途、生產方式、最終產品和國家分類-分析與預測(2025-2035)
市場調查報告書
商品編碼
1756522

亞太礦業和鋼鐵業市場按最終用途、生產方式、最終產品和國家分類-分析與預測(2025-2035)

Asia-Pacific Mining Steel Industry Market: Focus on End-User Application, Production Methodology, End Products, and Country - Analysis and Forecast, 2025-2035

出版日期: | 出版商: BIS Research | 英文 129 Pages | 商品交期: 1-5個工作天內

價格

預計2024年亞太採礦和鋼鐵業市場規模將達6,777億美元。

預計 2035 年市場規模將達到 10,856 億美元,年複合成長率為 4.31%。隨著亞太地區都市化和工業化的快速發展,基礎設施、汽車和建築業的擴張推動了該地區鋼鐵市場的快速成長。該地區致力於實現更綠色的煉鋼,包括電弧爐 (EAF)、氫基直接還原鐵 (DRI) 和可再生能源整合,從而推動了脫碳進程。為滿足需求,從澳洲的鐵礦石運輸到印度的冶金煤採購,原料供應鏈上的投資正在增加。 DRI 製程電氣化和 EAF 效率提高的技術進步將進一步提高成本競爭力和排放效果。隨著政府和產業制定綠色鋼鐵融資框架和藍圖,亞太地區預計將在低碳、節能鋼鐵和永續採礦領域引領世界。

主要市場統計數據
預測期 2025-2035
2025年的估值 7116億美元
2035年的預測 10856億美元
複合年成長率 4.31%

市場介紹

受中國、印度、東南亞和澳洲製造業產量成長、都市化進程加速和基礎設施投資的推動,亞太地區礦業和鋼鐵業正在快速擴張。高鐵網路、智慧城市建設和可再生能源設施等鋼鐵密集型計劃的需求推動了鐵礦石、煤炭和冶金原料等上游原料的投入增加。同時,鋼鐵製造商也積極減少碳足跡。氫基直接還原鐵 (DRI) 製程、將廢鋼來源擴展到電弧爐 (EAF) 以及可再生能源的整合正在改變生產足跡。

數位化和自動化也正在改變營運方式。物聯網感測器和預測性維護平台最佳化了鋼廠的產量並減少了計劃外停機時間,而人工智慧驅動的地質和礦山規劃工具則提高了資源回收率。隨著礦業公司和鋼鐵製造商組成合資企業以獲取原料、加快物流速度並防範大宗商品價格波動,區域供應鏈正日益融合。然而,發展中的產業仍面臨諸多障礙,包括原物料價格波動、開發中國家基礎設施匱乏以及更嚴格的環境、社會和管治(ESG) 法律。各國政府正透過碳定價機制獎勵、低排放融資框架和舉措計劃,為未來十年亞太地區礦業和鋼鐵綜合體更具競爭力和永續奠定基礎。

市場區隔

細分 1:依最終用途

  • 交通運輸(汽車及其他交通運輸)
  • 建築、施工和基礎設施
  • 消費品/家電
  • 工業設備/製造
  • 包裝
  • 其他

細分2:依生產方式

  • 高爐-氧氣頂吹轉爐(BF-BOF)
  • 直接還原鐵 - 電弧爐(DRI-EAF)
  • 其他新技術

細分 3:依最終產品

  • 碳鋼
  • 合金鋼
  • 不銹鋼
  • 高強度鋼
  • 其他

細分4:按地區

  • 亞太地區:中國、日本、印度、韓國、澳洲、世界其他地區

亞太礦業和鋼鐵業市場趨勢、促進因素和挑戰

趨勢

  • 綠色鋼鐵與脫碳:快速採用電弧爐(EAF)與氫基直接還原鐵(DRI)來減少二氧化碳排放
  • 數位化和自動化:基於人工智慧的礦山規劃、基於物聯網的資產監控以及引入「智慧工廠」以提高營運效率
  • 整合區域供應鏈:加強鐵礦石開採商和鋼鐵製造商之間的合作(特別是澳洲、印度和東南亞),以確保原料安全並穩定成本。
  • 循環電弧爐廢料:擴大亞太地區都市區的廢棄物收集和回收網路,支持更靈活、更低成本的電弧爐鋼鐵生產
  • 整合與併購:大型公司收購上游採礦資產和下游軋延廠,以獲得整個價值鏈的價值

驅動程式

  • 基礎建設與都市化:印度、東協和中國政府持續增加對交通、住房和公共工程的投入,將推動長期鋼鐵需求
  • 汽車和白色家電的成長:消費者收入的增加和電氣化趨勢將推動電動車和電器產品對優質鋼材的消費
  • 政策獎勵:碳定價體系、低碳計劃的稅收誘因以及資源豐富國家的採礦權使用費影響投資決策
  • 成本效益壓力:煤炭和鐵礦石價格波動促使企業採用更節能的技術和垂直整合

任務

  • 原料波動:鐵礦石、焦煤和天然氣價格波動導致淨利率下降,並使長期規劃變得複雜
  • 監管和 ESG 審查:更嚴格的環境標準、社區和土地糾紛以及貸方 ESG 政策可能會延遲計劃並增加資金籌措成本。
  • 基礎設施瓶頸:亞太新興市場的鐵路、港口和電力不足,減緩了從礦場到鋼廠的吞吐量
  • 產能過剩風險:中國鋼鐵過剩和間歇性出口限制為區域生產者帶來定價不確定性
  • 技能和安全差距:招募熟練的自動化操作人員和維護偏遠採礦地點的安全標準仍然是持續存在的障礙

產品/創新策略:亞太礦業和鋼鐵業市場根據不同的應用、生產方法和最終產品進行細分,提供了寶貴的見解。根據最終應用,市場包括運輸(汽車和其他運輸)、建築、施工和基礎設施、消費品和家電、工業設備和製造、包裝等。根據生產方法,市場分為高爐-轉爐(BF-BOF)、直接還原鐵-電弧爐(DRI-EAF)以及其他新興技術。最終產品包括碳鋼、合金鋼、不銹鋼、高強度鋼等。

成長/行銷策略:亞太地區礦業和鋼鐵業市場持續成長,為現有和新興市場參與企業提供了巨大的機會。本部分涵蓋的策略包括併購、產品推出、合作夥伴關係/合作、業務擴張和投資。產品開發是企業維持和鞏固市場地位的主要策略。

競爭策略:本研究分析並概述了亞太地區礦業和鋼鐵業市場的主要企業概況,其中包括在礦業和鋼鐵行業擁有專業知識的專業人士。此外,包括夥伴關係、協議和合作在內的全面競爭格局有望幫助讀者了解市場中尚未開發的收益空間。

主要市場參與企業及競爭格局

亞太礦業和鋼鐵業市場中介紹的公司是根據從頂尖專家收集的資訊選出的,這些專家分析了公司的覆蓋範圍、產品系列和市場滲透率。

目錄

執行摘要

第1章 市場

  • 趨勢:現況與未來影響評估
    • 採礦和鋼鐵生產流程自動化
    • 新興市場需求不斷成長
  • 供應鏈概覽
  • 專利申請趨勢(按國家和公司)
  • 市場動態概覽
    • 市場促進因素
    • 市場限制
    • 市場機會
  • 鋼鐵生產情景
    • 產能預測(2024-2034年)
    • 監管狀況
    • 相關利益者分析
    • 依生產製程分類的產能(高爐-BOF 和直接還原鐵-EAF)
    • 即將進行的計劃和產能擴張(2025-2035)
    • 持續投資
    • 廢料回收市場概況
    • 排放舉措(採礦業轉向鋼鐵業)
  • 綠色鋼鐵市場展望
    • 市場規模與成長預測(2024-2034)
    • 綠色鋼鐵對傳統鋼鐵市場的衝擊
    • 採用綠色鋼鐵的挑戰與促進因素

第2章 區域

  • 區域摘要
  • 亞太地區
    • 市場
    • 目的
    • 產品
    • 採礦業和鋼鐵業生產場景
    • 亞太地區(按國家/地區)

第3章 市場競爭基準化分析與公司概況

  • 未來展望
  • 地理評估
  • 公司簡介
    • NIPPON STEEL CORPORATION
    • China Ansteel Group Corporation Limited
    • China Jianlong Steel Industriai Co Ltd.
    • Tata Steel
    • JSW
    • JFE Steel Corporation
    • Shandong Lenser materials Co.,LTD.
    • HYUNDAI STEEL
    • Jindal Steel & Power Limited
    • SAIL

第4章調查方法

Product Code: MC03040SS

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Introduction to Asia-Pacific Mining Steel Industry Market

The Asia-Pacific mining steel industry market was valued at $677.7 billion in 2024 and is projected to grow at a CAGR of 4.31%, reaching $1,085.6 billion by 2035. The expanding infrastructure, automotive, and construction industries are fuelling the APAC steel market's surge due to the region's fast urbanisation and industrialisation. Decarbonisation is being accelerated by the region's effort for greener steelmaking, which embraces electric-arc furnaces (EAF), hydrogen-based direct reduced iron (DRI), and renewable energy integration. To fulfil demand, investments in supply chains for raw materials are increasing, from the transportation of iron ore in Australia to the procurement of coking coal in India. Cost competitiveness and emissions reductions are further improved by technological advancements in DRI process electrification and EAF efficiency. APAC is positioned to take the lead in low-carbon, energy-efficient steel and sustainable mining worldwide as governments and industry develop green-steel financing frameworks and roadmaps.

KEY MARKET STATISTICS
Forecast Period2025 - 2035
2025 Evaluation$711.6 Billion
2035 Forecast$1,085.6 Billion
CAGR4.31%

Market Introduction

The mining steel sector in the Asia-Pacific (APAC) region is expanding rapidly, supported by increased manufacturing production in China, India, Southeast Asia, and Australia, as well as significant urbanisation and infrastructure investment. Upstream increase in iron ore, coal, and metallurgical raw materials is being driven by the demand for steel-intensive projects, such as high-speed rail networks, smart city developments, and renewable energy installations. Steel producers are rushing to lower their carbon footprints at the same time. Production footprints are changing due to hydrogen-based direct reduced iron (DRI) processes, electric-arc furnaces (EAF) driven by expanding scrap sources, and renewable energy integration.

Operations are also being transformed by digitalisation and automation: IoT sensors and predictive maintenance platforms optimise mill throughput and reduce unexpected downtime, while AI-driven geology and mine-planning tools improve resource recovery. As miners and steel makers establish joint ventures to obtain feedstock, expedite logistics, and protect against commodity price volatility, regional supply-chain integration is becoming more and more integrated. However, the industry continues to confront obstacles like as fluctuations in the price of raw materials, infrastructural shortages in developing nations, and stricter environmental, social, and governance (ESG) laws. The foundation for a more competitive and sustainable APAC mining-steel complex in the next ten years is being laid by governments through carbon-pricing schemes, low-emissions finance frameworks, and incentives for green-steel initiatives.

Market Segmentation

Segmentation 1: by End-Use Application

  • Transportation (Automotive and Other Transportation)
  • Building, Construction, and Infrastructure
  • Consumer Goods and Appliances
  • Industrial Equipment and Manufacturing
  • Packaging
  • Others

Segmentation 2: by Production Methodology

  • Blast Furnace-Basic Oxygen Furnace (BF-BOF)
  • Direct Reduced Iron - Electric Arc Furnace (DRI-EAF)
  • Other Emerging Technologies

Segmentation 3: by End Products

  • Carbon Steel
  • Alloy Steel
  • Stainless Steel
  • High-Strength Steel
  • Others

Segmentation 4: by Region

  • Asia-Pacific: China, Japan, India, South Korea, Australia, and Rest-of-Asia-Pacific

APAC Mining Steel Industry Market Trends, Drivers and Challenges

Trends

  • Green-steel and decarbonization: Rapid uptake of electric-arc furnaces (EAFs) and hydrogen-based direct reduced iron (DRI) to lower CO2 emissions.
  • Digitalization & automation: Deployment of AI-driven mine planning, IoT-enabled asset monitoring, and "smart mills" to boost operational efficiency.
  • Regional supply-chain integration: Closer coordination between iron-ore miners and steelmakers-especially in Australia, India, and Southeast Asia-to secure feedstock and stabilize costs.
  • EAF-scrap circularity: Growing scrap collection and recycling networks in urban APAC centers support more flexible, lower-capex EAF steel production.
  • Consolidation & M&A: Larger players acquiring upstream mining assets or downstream rolling mills to capture value across the value chain.

Drivers

  • Infrastructure & urbanization: Continued government spending on transport, housing, and utilities in India, ASEAN, and China fuels long-term steel demand.
  • Automotive & white-goods growth: Rising consumer incomes and electrification trends drive higher-quality steel consumption for EVs and appliances.
  • Policy incentives: Carbon-pricing schemes, tax rebates for low-carbon projects, and resource-nation mining royalties shape investment decisions.
  • Cost-efficiency pressures: Volatile coal and iron-ore prices push firms to adopt energy-efficient technologies and vertical integration.

Challenges

  • Raw-material volatility: Iron-ore, coking-coal, and natural-gas price swings erode margins and complicate long-term planning.
  • Regulatory & ESG scrutiny: Stricter environmental standards, community-land disputes, and lender ESG policies can delay projects and raise funding costs.
  • Infrastructure bottlenecks: Inadequate rail, port, and power in emerging APAC markets hamper mine-to-mill throughput.
  • Overcapacity risk: China's steel surplus and intermittent export restrictions create pricing uncertainty for regional producers.
  • Skill & safety gaps: Recruiting skilled technicians for automated operations and maintaining safety standards in remote mining sites remain persistent hurdles.

How can this report add value to an organization?

Product/Innovation Strategy: The APAC mining steel industry market is segmented based on various applications, production methodology, and end-products, which provides valuable insights. By end-use application segment includes transportation (automotive and other transportation), building, construction, and infrastructure, consumer goods and appliances, industrial equipment and manufacturing, packaging, and others. By production methodology, the market is categorized into a blast furnace-basic oxygen furnace (BF-BOF), direct reduced iron-electric arc furnace (DRI-EAF), and other emerging technologies. Lastly, the end products include carbon steel, alloy steel, stainless steel, high-strength steel, and others.

Growth/Marketing Strategy: The APAC mining steel industry market has been growing. The market offers enormous opportunities for existing and emerging market players. Some of the strategies covered in this segment are mergers and acquisitions, product launches, partnerships and collaborations, business expansions, and investments. The strategies preferred by companies to maintain and strengthen their market position primarily include product development.

Competitive Strategy: The key players in the APAC mining steel industry market analyzed and profiled in the study include professionals with expertise in the mining and steel industry. Additionally, a comprehensive competitive landscape such as partnerships, agreements, and collaborations are expected to aid the reader in understanding the untapped revenue pockets in the market.

Key Market Players and Competition Synopsis

The companies that are profiled in the Asia-Pacific mining steel industry market have been selected based on inputs gathered from primary experts who have analyzed company coverage, product portfolio, and market penetration.

Some of the prominent names in this market are:

  • NIPPON STEEL CORPORATION
  • China Ansteel Group Corporation Limited
  • China Jianlong Steel Industriai Co Ltd.
  • Tata Steel
  • JSW
  • JFE Steel Corporation
  • Shandong Lenser materials Co.,LTD.
  • HYUNDAI STEEL
  • Jindal Steel & Power Limited
  • SAIL

Table of Contents

Executive Summary

Scope and Definition

1 Markets

  • 1.1 Trends: Current and Future Impact Assessment
    • 1.1.1 Automation in Mining and Steel Production Processes
    • 1.1.2 Increased Demand from Emerging Markets
  • 1.2 Supply Chain Overview
    • 1.2.1 Value Chain Analysis
      • 1.2.1.1 Key Iron Ore Producing Nations and Mining Capacity
      • 1.2.1.2 Key Coking Coal Exporting Nations
    • 1.2.2 Supply Chain Constraints
    • 1.2.3 Impact of Geopolitical Issues on Steel Production
    • 1.2.4 Pricing Analysis
    • 1.2.5 Market Map (Stakeholder Mapping across Value Chain)
  • 1.3 Patent Filing Trend (by Country, Company)
  • 1.4 Market Dynamics Overview
    • 1.4.1 Market Drivers
      • 1.4.1.1 Urbanization and Infrastructure Growth
      • 1.4.1.2 Public-Private Investments in Infrastructure
    • 1.4.2 Market Restraints
      • 1.4.2.1 Volatility in Raw Material Prices
      • 1.4.2.2 Geopolitical and Trade Tensions
    • 1.4.3 Market Opportunities
      • 1.4.3.1 Growing Demand for Specialty Steel Products
      • 1.4.3.2 Technological Innovation in Steelmaking
  • 1.5 Steel Production Scenario
    • 1.5.1 Production Capacity Outlook (2024-2034)
    • 1.5.2 Regulatory Landscape
    • 1.5.3 Stakeholder Analysis
    • 1.5.4 Installed Capacity by Production Process (Blast Furnace-BOF and DRI-EAF)
    • 1.5.5 Upcoming Projects and Capacity Additions (2025-2035)
    • 1.5.6 Ongoing Investments
    • 1.5.7 Scrap Recycling Market Overview
    • 1.5.8 Emission Reduction Initiatives (Mining Steel Industry Transition)
  • 1.6 Green-Steel Market Outlook
    • 1.6.1 Market Size and Growth Forecast (2024-2034)
    • 1.6.2 Impact of Green Steel on Conventional Steel Market
    • 1.6.3 Challenges and Enablers for Green-Steel Adoption

2 Regions

  • 2.1 Regional Summary
  • 2.2 Asia-Pacific
    • 2.2.1 Markets
      • 2.2.1.1 Key Market Participants in Asia-Pacific
      • 2.2.1.2 Driving Factors for Market Growth
      • 2.2.1.3 Factors Challenging the Market
    • 2.2.2 Application
    • 2.2.3 Product
    • 2.2.4 Mining-Steel Industry Production Scenario
    • 2.2.5 Asia-Pacific (by Country)
      • 2.2.5.1 China
        • 2.2.5.1.1 Application
        • 2.2.5.1.2 Product
        • 2.2.5.1.3 Installed Capacity and Production by Process
          • 2.2.5.1.3.1 Upcoming Projects
          • 2.2.5.1.3.2 Ongoing Investments
          • 2.2.5.1.3.3 Scrap Recycling Overview
        • 2.2.5.1.4 Raw Material Analysis (Iron Ore, Coking Coal, Scrap)
          • 2.2.5.1.4.1 Consumption by Key Companies
          • 2.2.5.1.4.2 Import Locations/Countries
      • 2.2.5.2 Japan
        • 2.2.5.2.1 Application
        • 2.2.5.2.2 Product
        • 2.2.5.2.3 Installed Capacity and Production by Process
          • 2.2.5.2.3.1 Upcoming Projects
          • 2.2.5.2.3.2 Ongoing Investments
          • 2.2.5.2.3.3 Scrap Recycling Overview
        • 2.2.5.2.4 Raw Material Analysis (Iron Ore, Coking Coal, Scrap)
          • 2.2.5.2.4.1 Consumption by Key Companies
          • 2.2.5.2.4.2 Import Locations/Countries
      • 2.2.5.3 India
        • 2.2.5.3.1 Application
        • 2.2.5.3.2 Product
        • 2.2.5.3.3 Installed Capacity and Production by Process
          • 2.2.5.3.3.1 Upcoming Projects
          • 2.2.5.3.3.2 Ongoing Investments
          • 2.2.5.3.3.3 Scrap Recycling Overview
        • 2.2.5.3.4 Raw Material Analysis (Iron Ore, Coking Coal, Scrap)
          • 2.2.5.3.4.1 Consumption by Key Companies
          • 2.2.5.3.4.2 Import Locations/Countries
      • 2.2.5.4 South Korea
        • 2.2.5.4.1 Application
        • 2.2.5.4.2 Product
        • 2.2.5.4.3 Installed Capacity and Production by Process
          • 2.2.5.4.3.1 Upcoming Projects
          • 2.2.5.4.3.2 Ongoing Investments
          • 2.2.5.4.3.3 Scrap Recycling Overview
        • 2.2.5.4.4 Raw Material Analysis (Iron Ore, Coking Coal, Scrap)
          • 2.2.5.4.4.1 Consumption by Key Companies
          • 2.2.5.4.4.2 Import Locations/Countries
      • 2.2.5.5 Australia
        • 2.2.5.5.1 Application
        • 2.2.5.5.2 Product
        • 2.2.5.5.3 Installed Capacity and Production by Process
          • 2.2.5.5.3.1 Upcoming Projects
          • 2.2.5.5.3.2 Ongoing Investments
          • 2.2.5.5.3.3 Scrap Recycling Overview
        • 2.2.5.5.4 Raw Material Analysis (Iron Ore, Coking Coal, Scrap)
          • 2.2.5.5.4.1 Consumption by Key Companies
          • 2.2.5.5.4.2 Import Locations/Countries
      • 2.2.5.6 Rest-of-Asia-Pacific
        • 2.2.5.6.1 Application
        • 2.2.5.6.2 Product
        • 2.2.5.6.3 Installed Capacity and Production by Process
          • 2.2.5.6.3.1 Upcoming Projects
          • 2.2.5.6.3.2 Ongoing Investments
          • 2.2.5.6.3.3 Scrap Recycling Overview
        • 2.2.5.6.4 Raw Material Analysis (Iron Ore, Coking Coal, Scrap)
          • 2.2.5.6.4.1 Consumption by Key Companies
          • 2.2.5.6.4.2 Import Locations/Countries

3 Markets - Competitive Benchmarking and Company Profiles

  • 3.1 Next Frontiers
  • 3.2 Geographic Assessment
  • 3.3 Company Profiles
    • 3.3.1 NIPPON STEEL CORPORATION
      • 3.3.1.1 Overview
      • 3.3.1.2 Top Products/Product Portfolio
      • 3.3.1.3 Top Competitors
      • 3.3.1.4 End-Use Industry
      • 3.3.1.5 Key Personnel
      • 3.3.1.6 Analyst View
      • 3.3.1.7 Market Share, 2023
    • 3.3.2 China Ansteel Group Corporation Limited
      • 3.3.2.1 Overview
      • 3.3.2.2 Top Products/Product Portfolio
      • 3.3.2.3 Top Competitors
      • 3.3.2.4 End-Use Industry
      • 3.3.2.5 Key Personnel
      • 3.3.2.6 Analyst View
      • 3.3.2.7 Market Share, 2023
    • 3.3.3 China Jianlong Steel Industriai Co Ltd.
      • 3.3.3.1 Overview
      • 3.3.3.2 Top Products/Product Portfolio
      • 3.3.3.3 Top Competitors
      • 3.3.3.4 End-Use Industry
      • 3.3.3.5 Analyst View
      • 3.3.3.6 Market Share, 2023
    • 3.3.4 Tata Steel
      • 3.3.4.1 Overview
      • 3.3.4.2 Top Products/Product Portfolio
      • 3.3.4.3 Top Competitors
      • 3.3.4.4 End-Use Industry
      • 3.3.4.5 Key Personnel
      • 3.3.4.6 Analyst View
      • 3.3.4.7 Market Share, 2023
    • 3.3.5 JSW
      • 3.3.5.1 Overview
      • 3.3.5.2 Top Products/Product Portfolio
      • 3.3.5.3 Top Competitors
      • 3.3.5.4 End-Use Industry
      • 3.3.5.5 Key Personnel
      • 3.3.5.6 Analyst View
      • 3.3.5.7 Market Share, 2023
    • 3.3.6 JFE Steel Corporation
      • 3.3.6.1 Overview
      • 3.3.6.2 Top Products/Product Portfolio
      • 3.3.6.3 Top Competitors
      • 3.3.6.4 End-Use Industry
      • 3.3.6.5 Key Personnel
      • 3.3.6.6 Analyst View
      • 3.3.6.7 Market Share, 2023
    • 3.3.7 Shandong Lenser materials Co.,LTD.
      • 3.3.7.1 Overview
      • 3.3.7.2 Top Products/Product Portfolio
      • 3.3.7.3 Top Competitors
      • 3.3.7.4 End-Use Industry
      • 3.3.7.5 Analyst View
      • 3.3.7.6 Market Share, 2023
    • 3.3.8 HYUNDAI STEEL
      • 3.3.8.1 Overview
      • 3.3.8.2 Top Products/Product Portfolio
      • 3.3.8.3 Top Competitors
      • 3.3.8.4 End-Use Industry
      • 3.3.8.5 Key Personnel
      • 3.3.8.6 Analyst View
      • 3.3.8.7 Market Share, 2023
    • 3.3.9 Jindal Steel & Power Limited
      • 3.3.9.1 Overview
      • 3.3.9.2 Top Products/Product Portfolio
      • 3.3.9.3 Top Competitors
      • 3.3.9.4 End-Use Industry
      • 3.3.9.5 Key Personnel
      • 3.3.9.6 Analyst View
      • 3.3.9.7 Market Share, 2023
    • 3.3.10 SAIL
      • 3.3.10.1 Overview
      • 3.3.10.2 Top Products/Product Portfolio
      • 3.3.10.3 Top Competitors
      • 3.3.10.4 End-Use Industry
      • 3.3.10.5 Key Personnel
      • 3.3.10.6 Analyst View
      • 3.3.10.7 Market Share, 2023

4 Research Methodology

  • 4.1 Data Sources
    • 4.1.1 Primary Data Sources
    • 4.1.2 Secondary Data Sources
    • 4.1.3 Data Triangulation
  • 4.2 Market Estimation and Forecast

List of Figures

  • Figure 1: Asia-Pacific Mining Steel Industry Market (by Scenario), $Billion, 2025, 2028, and 2035
  • Figure 2: Mining-Steel Industry Market (by Region), $Billion, 2024, 2028, and 2035
  • Figure 3: Asia-Pacific Mining Steel Industry Market (by End-Use Application), $Billion, 2024, 2028, and 2035
  • Figure 4: Asia-Pacific Mining Steel Industry Market (by Production Methodology), $Billion, 2024, 2028, and 2035
  • Figure 5: Asia-Pacific Mining Steel Industry Market (by End Products), $Billion, 2024, 2028, and 2035
  • Figure 6: Key Events
  • Figure 7: Cumulative Growth of Autonomous Haulage System (AHS) Trucks in Open-Pit Mining Operations, 2019-2023
  • Figure 8: Estimated Country-Wise Deployment of AHS Trucks, 2023
  • Figure 9: Supply Chain
  • Figure 10: Value Chain
  • Figure 11: Key Iron Ore Producing Countries and their Mining Capacity, Million Tons, 2023
  • Figure 12: Key Coking Coal Exporting Nations, % Share, 2023
  • Figure 13: Pricing Analysis of the Mining Steel Industry Market, $/Ton, 2024-2035
  • Figure 14: Stakeholder Mapping across Value Chain
  • Figure 15: Patent Analysis (by Country), January 2022-March 2025
  • Figure 16: Patent Analysis (by Company), January 2022-March 2025
  • Figure 17: Population Living in Urban and Rural Areas, $Billion, 2019-2023
  • Figure 18: Regional Private Participation in Infrastructure, $Billion, 2022 and 2023
  • Figure 19: Additional Financing Included in the Bipartisan Infrastructure Law, $Billion
  • Figure 20: Estimated Capital Expenditures for Top Six Large Steel Companies, $Billion
  • Figure 21: Production Capacity Outlook of Mining Steel Industry Market, Million Tons, 2024-2034
  • Figure 22: Stakeholder Analysis in the Mining Steel Industry Market
  • Figure 23: Estimated Installed Capacity by Blast Furnace-BOF Process in Different Regions, Million Tons, 2021-2024
  • Figure 24: Estimated Installed Capacity by DRI-EAF Process in Different Regions, Million Tons, 2021-2024
  • Figure 25: Estimated Steel Capacity (TTPA) by Development Status in Each Region, Million Tons, 2025
  • Figure 26: Steel Production Output
  • Figure 27: Green Steel Market (by Scenario), $Billion, 2023, 2026, and 2034
  • Figure 28: Conventional Steel Overview
  • Figure 29: Production Process Overview
  • Figure 30: Companies Across the Green Steel Value Chain
  • Figure 31: North Major Steel Producers in Asia-Pacific: Headquarters and 2023 Steel Production
  • Figure 32: Estimated Crude Steel Production Capacity and Actual Crude Steel Production in Asia-Pacific, Million Tons, 2021-2024
  • Figure 33: China Mining-Steel Industry Market, $Billion, 2024-2035
  • Figure 34: Total Crude Steel Production, China, Thousand Tons, 2021-2024
  • Figure 35: Installed Capacity and Production by BF-BAF Process, Million Tons, 2021-2024
  • Figure 36: Installed Capacity and Production by DRI-EAF Process, Million Tons, 2021-2024
  • Figure 37: Steel Scrap Use for Steelmaking in China, Million Tons, 2019-2021
  • Figure 38: Raw Materials Import Countries/Location
  • Figure 39: Japan Mining-Steel Industry Market, $Billion, 2024-2035
  • Figure 40: Total Crude Steel Production, Japan, Thousand Tons, 2021-2024
  • Figure 41: Installed Capacity and Production by BF-BAF Process, Million Tons, 2021-2024
  • Figure 42: Installed Capacity and Production by DRI-EAF Process, Million Tons, 2021-2024
  • Figure 43: Raw Materials Import Countries/Location
  • Figure 44: Steel Scrap Use for Steelmaking in Japan, Million Tons, 2019-2021
  • Figure 45: India Mining-Steel Industry Market, $Billion, 2024-2035
  • Figure 46: Total Crude Steel Production, India, Thousand Tons, 2021-2024
  • Figure 47: Installed Capacity and Production by BF-BAF Process, Million Tons, 2021-2024
  • Figure 48: Installed Capacity and Production by DRI-EAF Process, Million Tons, 2021-2024
  • Figure 49: Steel Scrap Imports in India, Million Tons, 2019-2021
  • Figure 50: Raw Materials Import Countries/Location
  • Figure 51: South Korea Mining-Steel Industry Market, $Billion, 2024-2035
  • Figure 52: Total Crude Steel Production, South Korea, Thousand Tons, 2021-2024
  • Figure 53: Installed Capacity and Production by BF-BAF Process, Million Tons, 2021-2024
  • Figure 54: Installed Capacity and Production by DRI-EAF Process, Million Tons, 2021-2024
  • Figure 55: Raw Materials Import Countries/Location
  • Figure 56: Australia Mining-Steel Industry Market, $Billion, 2024-2035
  • Figure 57: Total Crude Steel Production, Australia, Thousand Tons, 2021-2024
  • Figure 58: Installed Capacity and Production by BF-BAF Process, Million Tons, 2021-2024
  • Figure 59: Installed Capacity and Production by DRI-EAF Process, Million Tons, 2021-2024
  • Figure 60: Steel Scrap Exports, Australia, Million Tons, 2019-2021
  • Figure 61: Raw Materials Import Countries/Location
  • Figure 62: Rest-of-Asia-Pacific Mining-Steel Industry Market, $Billion, 2024-2035
  • Figure 63: Installed Capacity and Production by BF-BAF Process, Million Tons, 2021-2024
  • Figure 64: Installed Capacity and Production by DRI-EAF Process, Million Tons, 2021-2024
  • Figure 65: Raw Materials Import Countries/Location
  • Figure 66: Strategic Initiatives, January 2022-March 2025
  • Figure 67: Share of Strategic Initiatives, 2023
  • Figure 68: Data Triangulation
  • Figure 69: Top-Down and Bottom-Up Approach
  • Figure 70: Assumptions and Limitations

List of Tables

  • Table 1: Market Snapshot
  • Table 2: Opportunities across Region
  • Table 3: Competitive Landscape Snapshot
  • Table 4: Trends Overview
  • Table 5: Impact Analysis of Market Navigating Factors, 2024-2035
  • Table 6: Major Infrastructure Projects and Expected Steel Demand Increase
  • Table 7: Regulations/Standards in the Mining Steel Industry
  • Table 8: Upcoming Projects and Capacity Additions in the Mining Steel Industry Market
  • Table 9: World's Largest Iron Ore Producers and their Capacity
  • Table 10: Ongoing Investments in the Mining Steel Industry Market
  • Table 11: Lifespan of Steel Products and their Recycling Rates
  • Table 12: Recycled Steel Use in Crude Steel Production, Million Tons, 2022
  • Table 13: Climate Targets of Steel Manufacturers
  • Table 14: Mining-Steel Industry Market (by Region), $Billion, 2024-2035
  • Table 15: Asia-Pacific Mining-Steel Industry Market (by End-Use Application), $Billion, 2024-2035
  • Table 16: Asia-Pacific Mining-Steel Industry Market (by Production Methodology), $Billion, 2024-2035
  • Table 17: Asia-Pacific Mining-Steel Industry Market (by End Products), $Billion, 2024-2035
  • Table 18: China Mining-Steel Industry Market (by End-Use Application), $Billion, 2024-2035
  • Table 19: China Mining-Steel Industry Market (by Production Methodology), $Billion, 2024-2035
  • Table 20: China Mining-Steel Industry Market (by End Products), $Billion, 2024-2035
  • Table 21: List of Upcoming Projects in China
  • Table 22: Investment Scenario in China
  • Table 23: Japan Mining-Steel Industry Market (by End-Use Application), $Billion, 2024-2035
  • Table 24: Japan Mining-Steel Industry Market (by Production Methodology), $Billion, 2024-2035
  • Table 25: Japan Mining-Steel Industry Market (by End Products), $Billion, 2024-2035
  • Table 26: List of Upcoming Projects in Japan
  • Table 27: Investment Scenario in Japan
  • Table 28: India Mining-Steel Industry Market (by End-Use Application), $Billion, 2024-2035
  • Table 29: India Mining-Steel Industry Market (by Production Methodology), $Billion, 2024-2035
  • Table 30: India Mining-Steel Industry Market (by End Products), $Billion, 2024-2035
  • Table 31: List of Upcoming Projects in India
  • Table 32: Investment Scenario in India
  • Table 33: South Korea Mining-Steel Industry Market (by End-Use Application), $Billion, 2024-2035
  • Table 34: South Korea Mining-Steel Industry Market (by Production Methodology), $Billion, 2024-2035
  • Table 35: South Korea Mining-Steel Industry Market (by End Products), $Billion, 2024-2035
  • Table 36: List of Upcoming Projects in South Korea
  • Table 37: Investment Scenario in South Korea
  • Table 38: Australia Mining-Steel Industry Market (by End-Use Application), $Billion, 2024-2035
  • Table 39: Australia Mining-Steel Industry Market (by Production Methodology), $Billion, 2024-2035
  • Table 40: Australia Mining-Steel Industry Market (by End Products), $Billion, 2024-2035
  • Table 41: List of Upcoming Projects in Australia
  • Table 42: Investment Scenario in Australia
  • Table 43: Rest-of-Asia-Pacific Mining-Steel Industry Market (by End-Use Application), $Billion, 2024-2035
  • Table 44: Rest-of-Asia-Pacific Mining-Steel Industry Market (by Production Methodology), $Billion, 2024-2035
  • Table 45: Rest-of-Asia-Pacific Mining-Steel Industry Market (by End Products), $Billion, 2024-2035
  • Table 46: List of Upcoming Projects in Rest-of-Asia-Pacific
  • Table 47: Investment Scenario in Rest-of-Asia-Pacific
  • Table 48: Market Share