According to Market Study Report, Waste Heat to Power Market provides a comprehensive analysis of the Waste Heat to Power market segments, including their dynamics, size, growth, competitive landscape, and emerging opportunities of global industry.
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North America waste heat to power market is set to exceed over USD 9 billion by 2025. Increasing government initiatives to support industrialization along with ongoing investments toward development of new industrial facilities will stimulate the business landscape. Increasing policies toward development of manufacturing sector owing to escalating domestic demand will support the industry growth. Furthermore, rising focus toward increasing the energy efficiency with an aim to mitigate adverse environmental impacts will complement the industry landscape.
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Waste heat to power market is predicted to exceed USD 30 Billion by 2025. Rapid industrialization along with resurgent economic growth across key countries will drive the industry growth. Increasing government spending coupled with supportive policies toward infrastructure development will provide a thrust to the development of energy intensive industries which in turn will stimulate the business growth. Rising focus across industrial sector to lower the overall operational cost will further drive the deployment of waste heat to power units.
Waste heat to power (WHP) units have found prominent applications across heavy metal production, chemical, cement, glass and petroleum refining industries. Increasing measures toward energy optimization along with escalating demand for reliable and continuous electricity will strengthen the product adoption. Furthermore, strengthening emission norms coupled with expanding chemical industry will stimulate the deployement of WHP systems across the industrial sector.
Rising focus toward waste heat recovery and optimization from waste streams across industrial sector will drive the waste heat to power market size. The WHP units are increasingly gaining momentum across energy-intensive industries on account of their ability to reduce carbon emission and support clean energy initiative. Moreover, volatile fuel prices along with rising electricity demand will significantly contribute toward industry growth.
The UK waste heat to power market will grow over 13% by 2025. Growing measures toward sustainable development along with long term benefits of decarbonizing energy intensive industries have increased focused of industrial sector toward heat recovery. Government policies supporting adoption of energy efficient systems along with rising initiatives to reduce the carbon footprint will further complement the industry outlook.
Key participants operating across the waste heat to power market include AMEC Foster Wheeler, IHI Corporation, Bosch Thermotechnology, Thermax, Exergy, Rentech Boiler Systems, Mitsubishi Hitachi Power Systems, Siemens, Forbes Marshall Private, Walchandnagar, General Electric, AC Boilers, D?rr Group, Viessmann, Ormat, and Cochran.
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Organic rankine cycle waste heat to power market share is predicted to grow over 16% by 2025. Low turbine mechanical stress, greater operational flexibility and improved process control are some of the prominent features that will contribute toward Waste Heat to Power market growth. Introduction of numerous energy efficiency codes and standards pertaining to industrial sector with an aim to promote adoption of energy efficient systems will further complement the industry landscape.
Table of Content:
Chapter 1 Methodology & Scope
1.1 Methodology
1.2 Market definitions
1.3 Market estimation & forecast parameters
1.4 Data Sources
1.4.1 Primary
1.4.2 Secondary
1.4.2.1 Paid Sources
1.4.2.2 Public Sources
Chapter 2 Executive Summary
2.1 Waste heat to power market 360 degree synopsis, 2013 – 2025
2.1.1 Business trends
2.1.2 Technology trends
2.1.3 End-Use trends
2.1.4 Regional trends
Chapter 3 Global Waste Heat To Power Industry Insights
3.1 Industry segmentation
3.2 Industry landscape, 2013 – 2025 (USD Million)
3.3 Industry ecosystem analysis
3.3.1 Vendor matrix
3.4 Regulatory landscape
3.5 Technology landscape
3.5.1 Topping Cycle CHP
3.5.2 Waste Heat to Power /Bottoming Cycle CHP
3.6 Cost Structure
3.6.1 Steam Rankine Cycle
3.6.2 Organic Rankine Cycle
3.7 Waste heat source characterization
3.8 Industry impact forces
3.9 Growth potential analysis
3.10 Porter’s Analysis
Chapter 4 Global Waste Heat To Power Market, By Technology
4.1 Global waste heat to power market share by technology, 2018 & 2025
4.2 Steam Rankine Cycle (SRC)
4.2.1 Global market from SRC, 2013 – 2025
4.2.2 Global market from SRC, by region, 2013 – 2025
4.3 Organic Rankine Cycle (ORC)
4.3.1 Global market from ORC, 2013 – 2025
4.3.2 Global market from ORC, by region, 2013 – 2025
4.4 Kalina Cycle
Chapter 5 Global Waste Heat To Power Market, By End-Use
5.1 Global waste heat to power market share by end-use, 2018 & 2025
5.2 Petroleum Refining
5.3 Cement Industry
5.4 Heavy Metal Production
5.5 Chemical Industry
5.6 Pulp & Paper
5.7 Food & Beverage
5.8 Glass Industry
Chapter 6 Waste Heat To Power Market, By Region
Chapter 7 Waste Heat To Power Market Company Profiles
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