Waste Heat Recovery Systems Market: Global Industry Analysis, Trends, Market Size, and Forecasts up to 2030
Market Report I 2023-09-03 I 180 Pages I Infinium Global Research and Consulting Solutions
The report on the global waste heat recovery systems market provides qualitative and quantitative analysis for the period from 2021-2030. The global waste heat recovery systems market was valued at USD 72.64 billion in 2022 and is expected to reach USD 134.14 billion in 2028, with a CAGR of over 7.02% during the forecast period 2023-2030. The study on waste heat recovery systems market covers the analysis of the leading geographies such as North America, Europe, Asia Pacific, and RoW for the period of 2021-2030.
Waste Heat Recovery Systems (WHRS) an innovative technology that play a pivotal role in enhancing energy efficiency and sustainability across various industrial sectors. These systems are designed to capture and repurpose heat generated as a by-product of industrial processes or power generation, which would otherwise dissipate into the environment as waste. In addition, with the rise in environmental concerns, the government is implementing several policies and regulations. These regulations impose strict limits on greenhouse gas emissions and encourage sustainable practices. WHRS helps industries comply with these regulations by capturing and repurposing waste heat and reducing energy consumption and emissions. As a result, companies are increasingly adopting WHRS to align with environmental mandates, avoid penalties, and improve their eco-friendly image.
The petroleum refinery segment held a significant share of the market. The implementation of waste heat recovery systems in refineries plays a crucial role in enhancing energy efficiency and minimizing heat loss across various processes. These systems are pivotal not only for generating onsite electricity but also for preheating combustion air, ultimately reducing energy consumption within refineries. The petroleum refining industry, being highly energy-intensive, relies on waste heat recovery systems as a fundamental component of its energy conservation efforts. Furthermore, the petroleum sector is increasingly prioritizing waste energy conservation and cost reduction, which is expected to propel the market forward in the years to come. Moreover, oil and gas companies are actively engaged in initiatives aimed at mitigating the carbon footprint of their manufacturing facilities. For instance, in February 2022, ORCAN ENERGY AG, a leading waste heat supplier, inked a long-term supply agreement with ICE Thermal Harvesting (ICE) to capture and utilize waste heat within ICE's power systems. This partnership exemplifies the industry's commitment to harnessing waste heat as part of broader sustainability and emissions reduction strategies.
Asia Pacific generated a significant share of revenue in the waste heat recovery systems market. The growing presence of various industries such as cement, paper and pulp, metal processing, and production in the Asia Pacific region. This industry generates large amounts of waste heat during the time of manufacturing and processing activities. Owing to this, many industries are adopting waste heat recovery systems to optimize energy use. Thus, the rising industrialization and increasing adoption of the system by different industry verticals further contribute to the rising demand for waste heat recovery systems. Moreover, the Asia-Pacific region remarkably contributed to the growth of the waste heat recovery systems market due to the increasing penetration of new technology in countries like India, China, Thailand, and Malaysia. The increasing awareness regarding energy conservation, sustainability, and environmental effects in the countries across the region is providing new growth opportunities for the market during the forecasted period.
Report Findings
1) Drivers
- The rising demand for waste heat recovery systems in power and steam generation drives the growth of the market.
- The rising demand for onsite power generation and increasing electricity prices propels the market growth.
2) Restraints
- High implementation costs act as a major restraint for market growth.
3) Opportunities
- Growing environmental concerns provide growth opportunities for the market.
Research Methodology
A) Primary Research
Our primary research involves extensive interviews and analysis of the opinions provided by the primary respondents. The primary research starts with identifying and approaching the primary respondents, the primary respondents are approached include
1. Key Opinion Leaders associated with Infinium Global Research
2. Internal and External subject matter experts
3. Professionals and participants from the industry
Our primary research respondents typically include
1. Executives working with leading companies in the market under review
2. Product/brand/marketing managers
3. CXO level executives
4. Regional/zonal/ country managers
5. Vice President level executives.
B) Secondary Research
Secondary research involves extensive exploring through the secondary sources of information available in both the public domain and paid sources. At Infinium Global Research, each research study is based on over 500 hours of secondary research accompanied by primary research. The information obtained through the secondary sources is validated through the crosscheck on various data sources.
The secondary sources of the data typically include
1. Company reports and publications
2. Government/institutional publications
3. Trade and associations journals
4. Databases such as WTO, OECD, World Bank, and among others.
5. Websites and publications by research agencies
Segment Covered
The global waste heat recovery systems market is segmented on the basis of application, and end-use.
The Global Waste Heat Recovery Systems Market by Application
- Pre-heating
- Steam and Power Generation
- Others
The Global Waste Heat Recovery Systems Market by End-use
- Petroleum Refining
- Cement
- Chemical
- Pulp and Paper
- Others
Company Profiles
The companies covered in the report include
- ABB Ltd.
- MITSUBISHI HEAVY INDUSTRIES, LTD.
- Siemens Energy
- General Electric
- Thermax Limited
- Ormat Technologies, Inc.
- Robert Bosch GmbH
- Echogen
- Econotherm Limited
- Others
What does this Report Deliver?
1. Comprehensive analysis of the global as well as regional markets of the waste heat recovery systems market.
2. Complete coverage of all the segments in the waste heat recovery systems market to analyze the trends, developments in the global market and forecast of market size up to 2030.
3. Comprehensive analysis of the companies operating in the global waste heat recovery systems market. The company profile includes analysis of product portfolio, revenue, SWOT analysis and latest developments of the company.
4. IGR- Growth Matrix presents an analysis of the product segments and geographies that market players should focus to invest, consolidate, expand and/or diversify.
Table of Content
Chapter 1. Preface
1.1. Report Description
1.2. Research Methods
1.3. Research Approaches
Chapter 2. Executive Summary
2.1. Waste Heat Recovery Systems Market Highlights
2.2. Waste Heat Recovery Systems Market Projection
2.3. Waste Heat Recovery Systems Market Regional Highlights
Chapter 3. Global Waste Heat Recovery Systems Market Overview
3.1. Introduction
3.2. Market Dynamics
3.2.1. Drivers
3.2.2. Restraints
3.2.3. Opportunities
3.3. Porter's Five Forces Analysis
3.4. IGR-Growth Matrix Analysis
3.4.1. IGR-Growth Matrix Analysis by Application
3.4.2. IGR-Growth Matrix Analysis by End-use
3.4.3. IGR-Growth Matrix Analysis by Region
3.5. Value Chain Analysis of Waste Heat Recovery Systems Market
Chapter 4. Waste Heat Recovery Systems Market Macro Indicator Analysis
Chapter 5. Company Profiles and Competitive Landscape
5.1. Competitive Landscape in the Global Waste Heat Recovery Systems Market
5.2. Companies Profiles
5.2.1. ABB Ltd.
5.2.2. MITSUBISHI HEAVY INDUSTRIES, LTD.
5.2.3. Siemens Energy
5.2.4. General Electric
5.2.5. Thermax Limited
5.2.6. Ormat Technologies, Inc.
5.2.7. Robert Bosch GmbH
5.2.8. Echogen
5.2.9. Econotherm Limited
5.2.10. Others
Chapter 6. Global Waste Heat Recovery Systems Market by Application
6.1. Pre-heating
6.2. Steam and Power Generation
6.3. Others
Chapter 7. Global Waste Heat Recovery Systems Market by End-use
7.1. Petroleum Refining
7.2. Cement
7.3. Chemical
7.4. Pulp and Paper
7.5. Others
Chapter 8. Global Waste Heat Recovery Systems Market by Region 2023-2030
8.1. North America
8.1.1. North America Waste Heat Recovery Systems Market by Application
8.1.2. North America Waste Heat Recovery Systems Market by End-use
8.1.3. North America Waste Heat Recovery Systems Market by Country
8.1.3.1. The U.S. Waste Heat Recovery Systems Market
8.1.3.1.1. The U.S. Waste Heat Recovery Systems Market by Application
8.1.3.1.2. The U.S. Waste Heat Recovery Systems Market by End-use
8.1.3.2. Canada Waste Heat Recovery Systems Market
8.1.3.2.1. Canada Waste Heat Recovery Systems Market by Application
8.1.3.2.2. Canada Waste Heat Recovery Systems Market by End-use
8.1.3.3. Mexico Waste Heat Recovery Systems Market
8.1.3.3.1. Mexico Waste Heat Recovery Systems Market by Application
8.1.3.3.2. Mexico Waste Heat Recovery Systems Market by End-use
8.2. Europe
8.2.1. Europe Waste Heat Recovery Systems Market by Application
8.2.2. Europe Waste Heat Recovery Systems Market by End-use
8.2.3. Europe Waste Heat Recovery Systems Market by Country
8.2.3.1. Germany Waste Heat Recovery Systems Market
8.2.3.1.1. Germany Waste Heat Recovery Systems Market by Application
8.2.3.1.2. Germany Waste Heat Recovery Systems Market by End-use
8.2.3.2. United Kingdom Waste Heat Recovery Systems Market
8.2.3.2.1. United Kingdom Waste Heat Recovery Systems Market by Application
8.2.3.2.2. United Kingdom Waste Heat Recovery Systems Market by End-use
8.2.3.3. France Waste Heat Recovery Systems Market
8.2.3.3.1. France Waste Heat Recovery Systems Market by Application
8.2.3.3.2. France Waste Heat Recovery Systems Market by End-use
8.2.3.4. Italy Waste Heat Recovery Systems Market
8.2.3.4.1. Italy Waste Heat Recovery Systems Market by Application
8.2.3.4.2. Italy Waste Heat Recovery Systems Market by End-use
8.2.3.5. Rest of Europe Waste Heat Recovery Systems Market
8.2.3.5.1. Rest of Europe Waste Heat Recovery Systems Market by Application
8.2.3.5.2. Rest of Europe Waste Heat Recovery Systems Market by End-use
8.3. Asia Pacific
8.3.1. Asia Pacific Waste Heat Recovery Systems Market by Application
8.3.2. Asia Pacific Waste Heat Recovery Systems Market by End-use
8.3.3. Asia Pacific Waste Heat Recovery Systems Market by Country
8.3.3.1. China Waste Heat Recovery Systems Market
8.3.3.1.1. China Waste Heat Recovery Systems Market by Application
8.3.3.1.2. China Waste Heat Recovery Systems Market by End-use
8.3.3.2. Japan Waste Heat Recovery Systems Market
8.3.3.2.1. Japan Waste Heat Recovery Systems Market by Application
8.3.3.2.2. Japan Waste Heat Recovery Systems Market by End-use
8.3.3.3. India Waste Heat Recovery Systems Market
8.3.3.3.1. India Waste Heat Recovery Systems Market by Application
8.3.3.3.2. India Waste Heat Recovery Systems Market by End-use
8.3.3.4. South Korea Waste Heat Recovery Systems Market
8.3.3.4.1. South Korea Waste Heat Recovery Systems Market by Application
8.3.3.4.2. South Korea Waste Heat Recovery Systems Market by End-use
8.3.3.5. Australia Waste Heat Recovery Systems Market
8.3.3.5.1. Australia Waste Heat Recovery Systems Market by Application
8.3.3.5.2. Australia Waste Heat Recovery Systems Market by End-use
8.3.3.6. Rest of Asia-Pacific Waste Heat Recovery Systems Market
8.3.3.6.1. Rest of Asia-Pacific Waste Heat Recovery Systems Market by Application
8.3.3.6.2. Rest of Asia-Pacific Waste Heat Recovery Systems Market by End-use
8.4. RoW
8.4.1. RoW Waste Heat Recovery Systems Market by Application
8.4.2. RoW Waste Heat Recovery Systems Market by End-use
8.4.3. RoW Waste Heat Recovery Systems Market by Sub-region
8.4.3.1. Latin America Waste Heat Recovery Systems Market
8.4.3.1.1. Latin America Waste Heat Recovery Systems Market by Application
8.4.3.1.2. Latin America Waste Heat Recovery Systems Market by End-use
8.4.3.2. Middle East Waste Heat Recovery Systems Market
8.4.3.2.1. Middle East Waste Heat Recovery Systems Market by Application
8.4.3.2.2. Middle East Waste Heat Recovery Systems Market by End-use
8.4.3.3. Africa Waste Heat Recovery Systems Market
8.4.3.3.1. Africa Waste Heat Recovery Systems Market by Application
8.4.3.3.2. Africa Waste Heat Recovery Systems Market by End-use
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