
Microturbine Market Outlook Report - Market Size, Share Analysis and Forecast (2025-2034)
Description
The global microturbine market attained USD 279.72 Million in 2024. The market is projected to grow at a CAGR of 8.60% between 2025 and 2034, to reach USD 638.30 Million by 2034.
Growing Emphasis on Clean Energy Generation to Boost the Market Growth of Microturbine
There has been an increased emphasis on the generation of energy from renewable and non-polluting sources over the last decade. In addition to the adverse effects of global warming, several climate change agreements have been adopted. High levels of greenhouse gas emissions such as carbon dioxide (CO2) and carbon monoxide contribute to the use of fossil sources, including crude oil , coal and natural gas (CO). Compared to fossil fuels, microturbines emit very low emissions in terms of sulphur oxide (SO) and nitrogen oxide (NO) concentrations, leading to its increasing adoption. The largest market for microturbines is North America, followed by Europe and the Asia Pacific. In recent years, the US has accounted for the majority share in the North American region. In this region, ageing power plants and recurrent natural disasters have created tremendous growth opportunities for the demand for microturbines.
Microturbine Industry Segmentation
Microturbines are mini combustion turbines that normally control an electric engine on gaseous or liquid fuels. The production of the microturbine was accelerated by the design resemblance to a large turbine that provides the engineering basis. Natural gas, other gaseous liquids, waste heat from a thermal power plant, and liquid petroleum fuels are the fuels used to service the microturbine.
Market Breakup by Power Rating
The potential of microturbine systems to run on different fuels is one of the most important industry factors. The use of materials, including thermal barrier coatings and ceramics, enhances the performance of microturbine systems and ultimately raises the working temperature of the engine. It is predicted that such technological advances in microturbines would strengthen the industry further. Hybrid electric cars boost the maximum requirement for microturbines with low power ratings. Due to major OEMs increasingly investing in R&D activities to increase the performance of microturbines, the market is expected to gain momentum in the near future. Moreover, in order to achieve profitable electricity production and supply, both power generation plants and customers are constantly looking for cost-effective operations.
Key Industry Players in the Global Microturbine Industry
The report gives a detailed analysis of the following key players in the global microturbine market, covering their competitive landscape, capacity, and latest developments like mergers, acquisitions, and investments, expansions of capacity, and plant turnarounds:
Growing Emphasis on Clean Energy Generation to Boost the Market Growth of Microturbine
There has been an increased emphasis on the generation of energy from renewable and non-polluting sources over the last decade. In addition to the adverse effects of global warming, several climate change agreements have been adopted. High levels of greenhouse gas emissions such as carbon dioxide (CO2) and carbon monoxide contribute to the use of fossil sources, including crude oil , coal and natural gas (CO). Compared to fossil fuels, microturbines emit very low emissions in terms of sulphur oxide (SO) and nitrogen oxide (NO) concentrations, leading to its increasing adoption. The largest market for microturbines is North America, followed by Europe and the Asia Pacific. In recent years, the US has accounted for the majority share in the North American region. In this region, ageing power plants and recurrent natural disasters have created tremendous growth opportunities for the demand for microturbines.
Microturbine Industry Segmentation
Microturbines are mini combustion turbines that normally control an electric engine on gaseous or liquid fuels. The production of the microturbine was accelerated by the design resemblance to a large turbine that provides the engineering basis. Natural gas, other gaseous liquids, waste heat from a thermal power plant, and liquid petroleum fuels are the fuels used to service the microturbine.
Market Breakup by Power Rating
- 12 kW – 50kW
- 50 kW – 250 kW
- 250 kW – 500 kW
- Others
- Standby Power
- Combined Heat and Power (CHP)
- Commercial
- Industrial
- Residential
- Others
- North America
- Europe
- Asia Pacific
- Latin America
- Middle East and Africa
The potential of microturbine systems to run on different fuels is one of the most important industry factors. The use of materials, including thermal barrier coatings and ceramics, enhances the performance of microturbine systems and ultimately raises the working temperature of the engine. It is predicted that such technological advances in microturbines would strengthen the industry further. Hybrid electric cars boost the maximum requirement for microturbines with low power ratings. Due to major OEMs increasingly investing in R&D activities to increase the performance of microturbines, the market is expected to gain momentum in the near future. Moreover, in order to achieve profitable electricity production and supply, both power generation plants and customers are constantly looking for cost-effective operations.
Key Industry Players in the Global Microturbine Industry
The report gives a detailed analysis of the following key players in the global microturbine market, covering their competitive landscape, capacity, and latest developments like mergers, acquisitions, and investments, expansions of capacity, and plant turnarounds:
- Ansaldo Energia S.p.A.
- Capstone Turbine Corporation
- Brayton Energy, LLC
- Bladon Jets Holdings Limited
- Others
Table of Contents
156 Pages
- 1 Executive Summary
- 1.1 Market Size 2024-2025
- 1.2 Market Growth 2025(F)-2034(F)
- 1.3 Key Demand Drivers
- 1.4 Key Players and Competitive Structure
- 1.5 Industry Best Practices
- 1.6 Recent Trends and Developments
- 1.7 Industry Outlook
- 2 Market Overview and Stakeholder Insights
- 2.1 Market Trends
- 2.2 Key Verticals
- 2.3 Key Regions
- 2.4 Supplier Power
- 2.5 Buyer Power
- 2.6 Key Market Opportunities and Risks
- 2.7 Key Initiatives by Stakeholders
- 3 Economic Summary
- 3.1 GDP Outlook
- 3.2 GDP Per Capita Growth
- 3.3 Inflation Trends
- 3.4 Democracy Index
- 3.5 Gross Public Debt Ratios
- 3.6 Balance of Payment (BoP) Position
- 3.7 Population Outlook
- 3.8 Urbanisation Trends
- 4 Country Risk Profiles
- 4.1 Country Risk
- 4.2 Business Climate
- 5 Global Microturbine Market Analysis
- 5.1 Key Industry Highlights
- 5.2 Global Microturbine Historical Market (2018-2024)
- 5.3 Global Microturbine Market Forecast (2025-2034)
- 5.4 Global Microturbine Market by Power Rating
- 5.4.1 12 kW – 50kW
- 5.4.1.1 Historical Trend (2018-2024)
- 5.4.1.2 Forecast Trend (2025-2034)
- 5.4.2 50 kW – 250 kW
- 5.4.2.1 Historical Trend (2018-2024)
- 5.4.2.2 Forecast Trend (2025-2034)
- 5.4.3 250 kW – 500 kW
- 5.4.3.1 Historical Trend (2018-2024)
- 5.4.3.2 Forecast Trend (2025-2034)
- 5.4.4 Others
- 5.5 Global Microturbine Market by Application
- 5.5.1 Standby Power
- 5.5.1.1 Historical Trend (2018-2024)
- 5.5.1.2 Forecast Trend (2025-2034)
- 5.5.2 Combined Heat and Power (CHP)
- 5.5.2.1 Historical Trend (2018-2024)
- 5.5.2.2 Forecast Trend (2025-2034)
- 5.6 Global Microturbine Market by End Use
- 5.6.1 Commercial
- 5.6.1.1 Historical Trend (2018-2024)
- 5.6.1.2 Forecast Trend (2025-2034)
- 5.6.2 Industrial
- 5.6.2.1 Historical Trend (2018-2024)
- 5.6.2.2 Forecast Trend (2025-2034)
- 5.6.3 Residential
- 5.6.3.1 Historical Trend (2018-2024)
- 5.6.3.2 Forecast Trend (2025-2034)
- 5.6.4 Others
- 5.7 Global Microturbine Market by Region
- 5.7.1 North America
- 5.7.1.1 Historical Trend (2018-2024)
- 5.7.1.2 Forecast Trend (2025-2034)
- 5.7.2 Europe
- 5.7.2.1 Historical Trend (2018-2024)
- 5.7.2.2 Forecast Trend (2025-2034)
- 5.7.3 Asia Pacific
- 5.7.3.1 Historical Trend (2018-2024)
- 5.7.3.2 Forecast Trend (2025-2034)
- 5.7.4 Latin America
- 5.7.4.1 Historical Trend (2018-2024)
- 5.7.4.2 Forecast Trend (2025-2034)
- 5.7.5 Middle East and Africa
- 5.7.5.1 Historical Trend (2018-2024)
- 5.7.5.2 Forecast Trend (2025-2034)
- 6 North America Microturbine Market Analysis
- 6.1 United States of America
- 6.1.1 Historical Trend (2018-2024)
- 6.1.2 Forecast Trend (2025-2034)
- 6.2 Canada
- 6.2.1 Historical Trend (2018-2024)
- 6.2.2 Forecast Trend (2025-2034)
- 7 Europe Microturbine Market Analysis
- 7.1 United Kingdom
- 7.1.1 Historical Trend (2018-2024)
- 7.1.2 Forecast Trend (2025-2034)
- 7.2 Germany
- 7.2.1 Historical Trend (2018-2024)
- 7.2.2 Forecast Trend (2025-2034)
- 7.3 France
- 7.3.1 Historical Trend (2018-2024)
- 7.3.2 Forecast Trend (2025-2034)
- 7.4 Italy
- 7.4.1 Historical Trend (2018-2024)
- 7.4.2 Forecast Trend (2025-2034)
- 7.5 Others
- 8 Asia Pacific Microturbine Market Analysis
- 8.1 China
- 8.1.1 Historical Trend (2018-2024)
- 8.1.2 Forecast Trend (2025-2034)
- 8.2 Japan
- 8.2.1 Historical Trend (2018-2024)
- 8.2.2 Forecast Trend (2025-2034)
- 8.3 India
- 8.3.1 Historical Trend (2018-2024)
- 8.3.2 Forecast Trend (2025-2034)
- 8.4 ASEAN
- 8.4.1 Historical Trend (2018-2024)
- 8.4.2 Forecast Trend (2025-2034)
- 8.5 Australia
- 8.5.1 Historical Trend (2018-2024)
- 8.5.2 Forecast Trend (2025-2034)
- 8.6 Others
- 9 Latin America Microturbine Market Analysis
- 9.1 Brazil
- 9.1.1 Historical Trend (2018-2024)
- 9.1.2 Forecast Trend (2025-2034)
- 9.2 Argentina
- 9.2.1 Historical Trend (2018-2024)
- 9.2.2 Forecast Trend (2025-2034)
- 9.3 Mexico
- 9.3.1 Historical Trend (2018-2024)
- 9.3.2 Forecast Trend (2025-2034)
- 9.4 Others
- 10 Middle East and Africa Microturbine Market Analysis
- 10.1 Saudi Arabia
- 10.1.1 Historical Trend (2018-2024)
- 10.1.2 Forecast Trend (2025-2034)
- 10.2 United Arab Emirates
- 10.2.1 Historical Trend (2018-2024)
- 10.2.2 Forecast Trend (2025-2034)
- 10.3 Nigeria
- 10.3.1 Historical Trend (2018-2024)
- 10.3.2 Forecast Trend (2025-2034)
- 10.4 South Africa
- 10.4.1 Historical Trend (2018-2024)
- 10.4.2 Forecast Trend (2025-2034)
- 10.5 Others
- 11 Market Dynamics
- 11.1 SWOT Analysis
- 11.1.1 Strengths
- 11.1.2 Weaknesses
- 11.1.3 Opportunities
- 11.1.4 Threats
- 11.2 Porter’s Five Forces Analysis
- 11.2.1 Supplier’s Power
- 11.2.2 Buyer’s Power
- 11.2.3 Threat of New Entrants
- 11.2.4 Degree of Rivalry
- 11.2.5 Threat of Substitutes
- 11.3 Key Indicators for Demand
- 11.4 Key Indicators for Price
- 12 Value Chain Analysis
- 13 Competitive Landscape
- 13.1 Supplier Selection
- 13.2 Key Global Players
- 13.3 Key Regional Players
- 13.4 Key Player Strategies
- 13.5 Company Profiles
- 13.5.1 Ansaldo Energia S.p.A.
- 13.5.1.1 Company Overview
- 13.5.1.2 Product Portfolio
- 13.5.1.3 Demographic Reach and Achievements
- 13.5.1.4 Certifications
- 13.5.2 Capstone Turbine Corporation
- 13.5.2.1 Company Overview
- 13.5.2.2 Product Portfolio
- 13.5.2.3 Demographic Reach and Achievements
- 13.5.2.4 Certifications
- 13.5.3 Brayton Energy, LLC
- 13.5.3.1 Company Overview
- 13.5.3.2 Product Portfolio
- 13.5.3.3 Demographic Reach and Achievements
- 13.5.3.4 Certifications
- 13.5.4 Bladon Jets Holdings Limited
- 13.5.4.1 Company Overview
- 13.5.4.2 Product Portfolio
- 13.5.4.3 Demographic Reach and Achievements
- 13.5.4.4 Certifications
- 13.5.5 Others
Pricing
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