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Global Waste Heat to Power Market Research Report with Opportunities and Strategies to Boost Growth- COVID-19 Impact and Recovery

SKU ID : Maia-16487788 | Publishing Date : 29-Sep-2020 | No. of pages : 115

Waste Heat to Power (WHP) is the process of recovering waste heat and using it to generate power with no combustion and no emissions. WHP systems use the same technologies deployed in a number of industries, including the geothermal industry. Anywhere there is an industrial process that involves transforming raw materials into useful products – steel mills, paper plants, refineries, chemical plants, oil and gas pipelines, and general manufacturing — heat is wasted as a byproduct. This waste heat is produced whenever the operation is running, often 24 hours a day, seven days a week, 365 days a year. If not recovered for reuse as lower temperature process heat or to produce emission-free power, the heat will dissipate into the atmosphere, a wasted opportunity.
Based on the Waste Heat to Power market development status, competitive landscape and development model in different regions of the world, this report is dedicated to providing niche markets, potential risks and comprehensive competitive strategy analysis in different fields. From the competitive advantages of different types of products and services, the development opportunities and consumption characteristics and structure analysis of the downstream application fields are all analyzed in detail. To Boost Growth during the epidemic era, this report analyzes in detail for the potential risks and opportunities which can be focused on.

In Chapter 2.4 of the report, we share our perspectives for the impact of COVID-19 from the long and short term.
In chapter 3.4, we provide the influence of the crisis on the industry chain, especially for marketing channels.
In chapters 8-13, we update the timely industry economic revitalization plan of the country-wise government.

Key players in the global Waste Heat to Power market covered in Chapter 5:
Ormat
Amec Foster Wheeler
Triogen
Siemens
ABB
Kalina power
AQYLON
Echogen
Mitsubishi
Thermax
Cyplan
Enogia SAS
ElectraTherm

In Chapter 6, on the basis of types, the Waste Heat to Power market from 2015 to 2025 is primarily split into:
Steam Rankine Cycle
Organic Rankine Cycle
Kalina Cycle

In Chapter 7, on the basis of applications, the Waste Heat to Power market from 2015 to 2025 covers:
Petroleum Refining
Cement
Heavy Metal
Chemical
Paper
Food & Beverage
Glass

Geographically, the detailed analysis of consumption, revenue, market share and growth rate, historic and forecast (2015-2025) of the following regions are covered in Chapter 8-13:
North America (Covered in Chapter 9)
United States
Canada
Mexico
Europe (Covered in Chapter 10)
Germany
UK
France
Italy
Spain
Russia
Others
Asia-Pacific (Covered in Chapter 11)
China
Japan
South Korea
Australia
India
South America (Covered in Chapter 12)
Brazil
Argentina
Columbia
Middle East and Africa (Covered in Chapter 13)
UAE
Egypt
South Africa

Years considered for this report:


Historical Years:

2015-2019

Base Year:

2019

Estimated Year:

2020

Forecast Period:

2020-2025

Frequently Asked Questions

This market study covers the global and regional market with an in-depth analysis of the overall growth prospects in the market. Furthermore, it sheds light on the comprehensive competitive landscape of the global market. The report further offers a dashboard overview of leading companies encompassing their successful marketing strategies, market contribution, recent developments in both historic and present contexts.
  • By product type
  • By End User/Applications
  • By Technology
  • By Region
The report provides a detailed evaluation of the market by highlighting information on different aspects which include drivers, restraints, opportunities, and threats. This information can help stakeholders to make appropriate decisions before investing.

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