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市場調查報告書
商品編碼
2109145

工業熱脫碳市場機會、成長要素、產業趨勢分析及2026-2035年預測

Industrial Heat Decarbonization Market Opportunity, Growth Drivers, Industry Trend Analysis, and Forecast 2026 - 2035

出版日期: | 出版商: Global Market Insights Inc. | 英文 220 Pages | 商品交期: 2-3個工作天內

價格
簡介目錄

全球工業熱脫碳市場預計到 2025 年價值 92 億美元,年複合成長率為 9.4%,到 2035 年將達到 228 億美元。

工業熱脫碳市場-IMG1

隨著製造商日益重視永續業務營運、能源效率和長期減排策略,工業熱脫碳市場正蓬勃發展。各行各業都在積極採用更清潔的技術和先進的溫度控管技術,以減少工業供熱對環境的影響。該市場涵蓋了廣泛的解決方案,旨在透過提高效率、整合永續能源和改造熱系統,最大限度地減少工業供熱過程中的碳排放。企業越來越認知到,脫碳是未來競爭力、業務永續營運和合規性的關鍵要素。日益成長的減少工業碳足跡的壓力促使企業採用更有效率、更環保的替代方案來改造高耗能製程。製造商正在投資於能夠最佳化能源消耗、提高資源利用率並支持不斷發展的永續性目標的技術。隨著清潔生產方式、營運可靠性和環境責任變得日益重要,預計各行各業對工業熱脫碳解決方案的需求將持續成長。

市場範圍
開始年份 2025
預測期 2026-2035
上市時的市場規模 92億美元
預測金額 228億美元
複合年成長率 9.4%

隨著各行業尋求切實可行的解決方案以擺脫高碳排放的熱能利用,工業熱能脫碳市場正在不斷擴張。企業日益關注有助於提高熱能效率、減少排放並實現永續製造目標的技術。採用先進的能源管理實踐,使工業運營商能夠在提高效率的同時降低對環境的影響。企業不斷加強永續發展措施並制定更嚴格的減排目標,正在推動對現代化熱力系統的投資。企業正在評估能夠提高能源效率、減少溫室氣體排放並同時保持生產力的創新解決方案。

預計到2025年,熱泵市佔率將達到16%。工業熱泵因其能夠提高熱效率並支持能源回收過程,正日益成為脫碳領域的重要解決方案。這些系統有助於最佳化熱能利用、降低營運成本,並減少工業領域傳統供暖方式所產生的排放。工業現代化和對永續能源基礎設施投資的增加正在加速熱泵的普及應用,隨著企業追求更高的熱效率和更嚴格的減排目標,熱泵的長期成長也將得到保障。

預計到2025年,溫度低於200 度C的工業熱脫碳領域將佔據46.6%的市場佔有率,並在2035年達到100億美元。此溫度範圍因其在各種工業流程中的廣泛應用而保持著重要的市場地位。對節能解決方案和低排放量加熱技術日益成長的需求正在推動低溫工業應用領域的普及。工業設備的現代化、永續性以及對清潔生產方法投資的增加,都為該領域帶來了正面影響。人們對營運效率的日益重視以及減少工業排放的需求,將繼續推動該溫度範圍市場的擴張。

美國工業熱脫碳市場佔78%的市場佔有率,預計2025年市場規模將達20億美元。由於對工業永續性發展的日益重視、現代化改造以及旨在減少排放的投資,美國市場持續擴張。工業企業正在採用更清潔的生產策略來提升自身競爭力,同時滿足不斷變化的環境期望和企業永續性目標。公共和私營部門投資的增加、政策舉措以及工業脫碳項目的拓展,都為美國市場的成長提供了支撐。這些因素正在推動先進溫度控管解決方案在工業運作中的應用。

目錄

第1章:調查方法和範圍

第2章執行摘要

第3章 行業洞察

  • 產業生態系分析
    • 原物料供應及採購分析
    • 生產能力評估
    • 供應鏈韌性與風險因素
    • 配電網路分析
  • 影響產業的因素
    • 促進因素
    • 產業潛在風險與挑戰
  • 監理情勢
  • 成長潛力分析
  • 波特的分析
  • PESTLE分析
  • 成本結構分析:工業熱能脫碳
  • 新興脫碳技術與低碳熱能解決方案
  • 數位化、智慧型能源管理和工業流程最佳化
  • 適用於難以減少排放的工業部門和高溫熱能利用部門。
  • 投資環境、政策支持與未來成長前景
  • 人工智慧和生成式人工智慧對市場的影響
    • 利用人工智慧最佳化生產
    • 預測性維護和故障檢測

第4章 競爭情勢

  • 介紹
  • 企業市佔率分析:按地區分類
    • 北美洲
    • 歐洲
    • 亞太地區
    • 中東和非洲
    • 拉丁美洲
  • 主要市場公司的競爭分析
  • 競爭定位矩陣
  • 主要進展
    • 併購
    • 夥伴關係和聯盟
    • 新產品發布
    • 業務拓展計劃及資金籌措
  • 按公司規模進行基準測試
    • 排名分類標準與遴選標準
    • 按銷售額、地區和創新能力分類的層級定位矩陣。

第5章 市場規模及預測:依技術分類,2022-2035年

  • 熱泵
  • 電鍋爐
  • 電熱
  • 氫氣加熱
  • 生質能供暖
  • 太陽熱能
  • 廢熱回收
  • 熱能儲存
  • CCUS
  • 其他

第6章 市場規模及預測:依溫度分類,2022-2035年

  • 200 度C或更低
  • >200~1,000°C
  • >1,000°C

第7章 市場規模及預測:依最終用途分類,2022-2035年

  • 化學品
  • 水泥
  • 食品/飲料
  • 紙漿和造紙
  • 石油和天然氣
  • 玻璃
  • 採礦和金屬
  • 製藥
  • 其他

第8章 市場規模及預測:依部署方式分類,2022-2035年

  • 新的
  • 改裝

第9章 市場規模及預測:依地區分類,2022-2035年

  • 北美洲
    • 美國
    • 加拿大
    • 墨西哥
  • 歐洲
    • 德國
    • 英國
    • 法國
    • 義大利
    • 西班牙
    • 荷蘭
    • 丹麥
    • 芬蘭
    • 奧地利
  • 亞太地區
    • 中國
    • 日本
    • 印度
    • 韓國
    • 澳洲
    • 紐西蘭
    • 印尼
    • 泰國
    • 馬來西亞
  • 中東和非洲
    • 沙烏地阿拉伯
    • UAE
    • 埃及
    • 南非
  • 拉丁美洲
    • 巴西
    • 阿根廷
    • 智利

第10章:公司簡介

  • ABB
  • Alfa Laval
  • ANDRITZ
  • Antora Energy
  • Atlas Copco
  • Babcock & Wilcox Enterprises
  • Bosch Industriekessel GmbH
  • Coolbrook Oy
  • Copeland
  • Danfoss
  • Electrified Thermal Solutions(ETS)
  • ENGIE
  • Everllence
  • Fives Group
  • GE Vernova
  • GEA Group
  • Heaten AS
  • Honeywell International
  • Johnson Controls
  • Mitsubishi Heavy Industries
  • NIBE Industrier AB
  • Schneider Electric
  • Siemens Energy
  • Spirax Group
  • Thermax Limited
  • Topsoe A/S
  • Veolia
  • Yokogawa Electric Corporation
簡介目錄
Product Code: 16400

The Global Industrial Heat Decarbonization Market was valued at USD 9.2 billion in 2025 and is estimated to grow at a CAGR of 9.4% to reach USD 22.8 billion by 2035.

Industrial Heat Decarbonization Market - IMG1

The industrial heat decarbonization market is gaining strong momentum as manufacturers increasingly prioritize sustainable operations, energy efficiency, and long-term emissions reduction strategies. Industries are actively adopting cleaner technologies and advanced thermal management approaches to reduce the environmental impact associated with industrial heat generation. The market covers a broad range of solutions focused on minimizing carbon emissions from industrial heating processes through improved efficiency, sustainable energy integration, and modernization of thermal systems. Businesses are increasingly recognizing decarbonization as an essential component of future competitiveness, operational resilience, and regulatory alignment. Growing pressure to reduce industrial carbon footprints is encouraging companies to upgrade heat-intensive processes with more efficient and environmentally responsible alternatives. Manufacturers are investing in technologies that optimize energy consumption, improve resource utilization, and support evolving sustainability targets. The rising emphasis on cleaner production methods, operational reliability, and environmental responsibility is expected to continue driving demand for industrial heat decarbonization solutions across multiple sectors.

Market Scope
Start Year2025
Forecast Year2026-2035
Start Value$9.2 Billion
Forecast Value$22.8 Billion
CAGR9.4%

The industrial heat decarbonization market is expanding as industries seek practical solutions to transition away from carbon-intensive thermal operations. Companies are increasingly focusing on technologies that improve heat utilization, lower emissions, and support sustainable manufacturing goals. The growing integration of advanced energy management approaches is helping industrial operators enhance efficiency while reducing environmental impact. Increasing corporate sustainability commitments and stricter emissions reduction objectives are encouraging investments in modern heat systems. Businesses are evaluating innovative solutions that allow them to maintain productivity while improving energy performance and reducing greenhouse gas emissions.

The heat pumps segment accounted for 16% share in 2025. Industrial heat pumps are becoming an increasingly important solution within the decarbonization landscape due to their ability to improve thermal efficiency and support energy recovery processes. These systems help industries optimize heat usage, reduce operating expenses, and decrease emissions associated with conventional heating methods. Growing investments in industrial modernization and sustainable energy infrastructure are accelerating the adoption of heat pumps, supporting long-term segment growth as companies pursue improved thermal efficiency and stricter emission reduction goals.

The <= 200°C industrial heat decarbonization segment held a 46.6% share in 2025 and is expected to reach USD 10 billion by 2035. This temperature category maintains a significant market position because of its widespread application across various industrial processes. Increasing demand for energy-efficient solutions and lower-emission heating technologies is driving adoption within low-temperature industrial applications. The segment is benefiting from rising investments in industrial upgrades, sustainability initiatives, and cleaner production methods. Growing awareness of operational efficiency and the need to reduce industrial emissions will continue supporting market expansion within this temperature range.

United States Industrial Heat Decarbonization Market held a 78% share, generating USD 2 billion in 2025. The U.S. market is advancing due to increasing focus on industrial sustainability, modernization efforts, and investments aimed at reducing emissions. Industrial companies are adopting cleaner production strategies to improve competitiveness while meeting evolving environmental expectations and corporate sustainability commitments. Market growth in the country is being supported by rising investments from both public and private sectors, supportive policy initiatives, and expanding programs focused on industrial decarbonization. These factors are strengthening the adoption of advanced heat management solutions across industrial operations.

Major players operating in the global industrial heat decarbonization market include ABB, Alfa Laval, ANDRITZ, Antora Energy, Atlas Copco, Babcock & Wilcox Enterprises, Bosch Industriekessel GmbH, Coolbrook Oy, Copeland, Danfoss, Electrified Thermal Solutions (ETS), ENGIE, Everllence, Fives Group, GE Vernova, GEA Group, Heaten AS, Honeywell International, Johnson Controls, Mitsubishi Heavy Industries, NIBE Industrier AB, Schneider Electric, Siemens Energy, Spirax Group, Thermax Limited, Topsoe A/S, Veolia, and Yokogawa Electric Corporation. Companies operating in the industrial heat decarbonization market are strengthening their market position by expanding technology portfolios, developing advanced thermal solutions, and increasing investments in sustainable innovation. Market participants are focusing on strategic collaborations, research and development activities, and customized solutions to address the diverse requirements of industrial customers. Businesses are enhancing their capabilities through partnerships, technology integration, and expansion of clean energy offerings. Companies are also prioritizing digital monitoring systems, energy efficiency improvements, and scalable decarbonization solutions to improve competitiveness.

Table of Contents

Chapter 1 Methodology & Scope

  • 1.1 Research approach
  • 1.2 Quality commitments
    • 1.2.1 GMI AI policy & data integrity commitment
      • 1.2.1.1 Source consistency protocol
  • 1.3 Research trail & confidence scoring
    • 1.3.1 Research trail components
    • 1.3.2 Scoring components
  • 1.4 Data collection
    • 1.4.1 Partial list of primary sources
  • 1.5 Data mining sources
    • 1.5.1 Paid sources
      • 1.5.1.1 Sources, by region
  • 1.6 Base estimates and calculations
    • 1.6.1 Base year calculation for any one approach
  • 1.7 Market estimates & forecasts parameters
  • 1.8 Forecast model
    • 1.8.1 Quantified market impact analysis
      • 1.8.1.1 Mathematical impact of growth parameters on forecast
  • 1.9 Research transparency addendum
    • 1.9.1 Source attribution framework
    • 1.9.2 Quality assurance metrics
    • 1.9.3 Our commitment to trust
  • 1.10 Market definitions

Chapter 2 Executive Summary

  • 2.1 Industry synopsis, 2022 - 2035
    • 2.1.1 Business trends
    • 2.1.2 Technology trends
    • 2.1.3 Temperature trends
    • 2.1.4 End Use trends
    • 2.1.5 Deployment trends
    • 2.1.6 Regional trends

Chapter 3 Industry Insights

  • 3.1 Industry ecosystem analysis
    • 3.1.1 Raw material availability & sourcing analysis
    • 3.1.2 Manufacturing capacity assessment
    • 3.1.3 Supply chain resilience & risk factors
    • 3.1.4 Distribution network analysis
  • 3.2 Industry impact forces
    • 3.2.1 Growth drivers
    • 3.2.2 Industry pitfalls & challenges
  • 3.3 Regulatory landscape
  • 3.4 Growth potential analysis
  • 3.5 Porter's analysis
    • 3.5.1 Bargaining power of suppliers
    • 3.5.2 Bargaining power of buyers
    • 3.5.3 Threat of new entrants
    • 3.5.4 Threat of substitutes
  • 3.6 PESTEL analysis
    • 3.6.1 Political factors
    • 3.6.2 Economic factors
    • 3.6.3 Social factors
    • 3.6.4 Technological factors
    • 3.6.5 Legal factors
    • 3.6.6 Environmental factors
  • 3.7 Cost structure analysis of industrial heat decarbonization
  • 3.8 Emerging decarbonization technologies & low-carbon heat solutions
  • 3.9 Digitalization, smart energy management & industrial process optimization
  • 3.10 Expansion across hard-to-abate industries & high-temperature heat applications
  • 3.11 Investment landscape, policy support & future growth outlook
  • 3.12 Impact of AI & Generative AI on the market (Driven by Primary Research)
    • 3.12.1 AI-Driven production optimization (Driven by Primary Research)
    • 3.12.2 Predictive maintenance & fault detection (Driven by Primary Research)

Chapter 4 Competitive Landscape, 2026

  • 4.1 Introduction
  • 4.2 Company market share analysis, by region, 2025
    • 4.2.1 North America
    • 4.2.2 Europe
    • 4.2.3 Asia Pacific
    • 4.2.4 Middle East & Africa
    • 4.2.5 Latin America
  • 4.3 Competitive analysis of major market players
  • 4.4 Competitive positioning matrix
  • 4.5 Key developments
    • 4.5.1 Mergers & acquisitions
    • 4.5.2 Partnerships & collaborations
    • 4.5.3 New product launches
    • 4.5.4 Expansion plans & funding
  • 4.6 Company tier benchmarking
    • 4.6.1 Tier classification criteria & qualifying thresholds
    • 4.6.2 Tier positioning matrix by revenue, geography & innovation

Chapter 5 Market Size and Forecast, By Technology, 2022 - 2035 (USD Million)

  • 5.1 Key trends
  • 5.2 Heat pumps
  • 5.3 Electric boilers
  • 5.4 Electric heating
  • 5.5 Hydrogen heating
  • 5.6 Biomass heating
  • 5.7 Solar thermal
  • 5.8 Waste heat recovery
  • 5.9 Thermal energy storage
  • 5.10 CCUS
  • 5.11 Others

Chapter 6 Market Size and Forecast, By Temperature, 2022 - 2035 (USD Million)

  • 6.1 Key trends
  • 6.2 ≤ 200°C
  • 6.3 > 200 – 1,000°C
  • 6.4 > 1,000°C

Chapter 7 Market Size and Forecast, By End Use, 2022 - 2035 (USD Million)

  • 7.1 Key trends
  • 7.2 Chemicals
  • 7.3 Iron & steel
  • 7.4 Cement
  • 7.5 Food & beverage
  • 7.6 Pulp & paper
  • 7.7 Oil & gas
  • 7.8 Glass
  • 7.9 Mining & metals
  • 7.10 Pharmaceuticals
  • 7.11 Others

Chapter 8 Market Size and Forecast, By Deployment, 2022 - 2035 (USD Million)

  • 8.1 Key trends
  • 8.2 New
  • 8.3 Retrofit

Chapter 9 Market Size and Forecast, By Region, 2022 - 2035 (USD Million)

  • 9.1 Key trends
  • 9.2 North America
    • 9.2.1 U.S.
    • 9.2.2 Canada
    • 9.2.3 Mexico
  • 9.3 Europe
    • 9.3.1 Germany
    • 9.3.2 UK
    • 9.3.3 France
    • 9.3.4 Italy
    • 9.3.5 Spain
    • 9.3.6 Netherlands
    • 9.3.7 Denmark
    • 9.3.8 Finland
    • 9.3.9 Austria
  • 9.4 Asia Pacific
    • 9.4.1 China
    • 9.4.2 Japan
    • 9.4.3 India
    • 9.4.4 South Korea
    • 9.4.5 Australia
    • 9.4.6 New Zealand
    • 9.4.7 Indonesia
    • 9.4.8 Thailand
    • 9.4.9 Malaysia
  • 9.5 Middle East & Africa
    • 9.5.1 Saudi Arabia
    • 9.5.2 UAE
    • 9.5.3 Egypt
    • 9.5.4 South Africa
  • 9.6 Latin America
    • 9.6.1 Brazil
    • 9.6.2 Argentina
    • 9.6.3 Chile

Chapter 10 Company Profiles

  • 10.1 ABB
  • 10.2 Alfa Laval
  • 10.3 ANDRITZ
  • 10.4 Antora Energy
  • 10.5 Atlas Copco
  • 10.6 Babcock & Wilcox Enterprises
  • 10.7 Bosch Industriekessel GmbH
  • 10.8 Coolbrook Oy
  • 10.9 Copeland
  • 10.10 Danfoss
  • 10.11 Electrified Thermal Solutions (ETS)
  • 10.12 ENGIE
  • 10.13 Everllence
  • 10.14 Fives Group
  • 10.15 GE Vernova
  • 10.16 GEA Group
  • 10.17 Heaten AS
  • 10.18 Honeywell International
  • 10.19 Johnson Controls
  • 10.20 Mitsubishi Heavy Industries
  • 10.21 NIBE Industrier AB
  • 10.22 Schneider Electric
  • 10.23 Siemens Energy
  • 10.24 Spirax Group
  • 10.25 Thermax Limited
  • 10.26 Topsoe A/S
  • 10.27 Veolia
  • 10.28 Yokogawa Electric Corporation