Skid-Mounted Distributed Energy

150 kW Micro Gas Turbine Generator

Now available from BLAZE: a compact 150 kW-class micro gas turbine engineered for industrial power, CCHP, valuable heat recovery and multi-fuel energy projects.

  • Industrial & Commercial Power
  • Steam & Cooling Recovery
  • Associated Gas-to-Power
  • Modular Skid Package
BLAZE 150 kW micro gas turbine generator skid package
Simple-Cycle Output151.8 kW
30.5%Recuperated efficiency
610°CSimple-cycle exhaust
880 kg/hSteam at 0.8 MPa
815 kWCooling capacity
400-480 VThree-phase output

Configuration Guide

Choose the Right Cycle for Your Energy Priorities

Maximum Output & Heat Recovery

150 kW Simple-Cycle Configuration

Delivers 151.8 kW of electrical power at 16.7% electrical efficiency. Its 610°C exhaust creates a valuable high-grade heat source for steam production, process heating, hot water or heat-driven cooling.

  • 3,265 MJ/h stated fuel input
  • 4,094 kg/h exhaust flow
  • 880 kg/h steam at 0.8 MPa
  • 815 kW listed cooling capacity
Continuous Duty & Fuel Economy

Recuperated Configuration

Delivers 129.9 kW at 30.5% electrical efficiency with a stated fuel input of 1,533 MJ/h. It is designed for projects with long operating hours where electricity production and fuel economy carry greater value than high-temperature exhaust.

  • 4,059 kg/h exhaust flow
  • 250°C exhaust temperature
  • 200 kg/h steam at 0.2 MPa
  • 155 kW listed cooling capacity

Not sure which cycle fits your project?

Send us your load profile and heat demand for a configuration recommendation.

Get a Cycle Recommendation

Technical Information

150 kW Micro Gas Turbine Specifications

The two configurations share the same electrical service and fuel inlet requirements but provide different balances of power output, efficiency and recoverable heat.

ParameterUnitSimple CycleRecuperated
Electrical Power OutputkW151.8129.9
Electrical Efficiency%16.730.5
Output VoltageVAC400-480400-480
Output FrequencyHz5050
Electrical Service-3-phase, 4-wire3-phase, 4-wire
Fuel InputMJ/h3,2651,533
Fuel Inlet Pressurebar(g)4-54-5
Exhaust Gas Flowkg/h4,0944,059
Exhaust Temperature°C610250
Steam Productionkg/h880 at 0.8 MPa200 at 0.2 MPa
Cooling CapacitykW815155
Package Dimensions (W × H × L)mm1,650 × 2,150 × 2,1351,650 × 2,150 × 2,700

Performance notice: Values are based on the supplied product sheet. Actual output, efficiency, steam, cooling and exhaust conditions may vary with fuel, altitude, ambient temperature, inlet and exhaust losses, and balance-of-plant design.

Beyond Electricity

Integrated Power, Steam and Cooling Potential

High-Grade Heat from the Simple Cycle

The simple-cycle configuration is suited to facilities that can use high-temperature exhaust continuously. Properly designed heat-recovery equipment can convert this energy into steam, process heat, hot water or absorption cooling.

880 kg/hSteam at 0.8 MPa
815 kWCooling capacity

Efficient Power from the Recuperated Cycle

The recuperated cycle returns exhaust energy to the power process, increasing electrical efficiency to 30.5%. This supports continuous-duty sites with stable electrical demand and higher fuel costs.

30.5%Electrical efficiency
1,533 MJ/hStated fuel input

Project Flexibility

Engineered for Real Industrial Conditions

Flexible Fuel Engineering

Potential fuels include natural gas, associated petroleum gas, biomass gas, diesel, and selected hydrogen, ammonia or alcohol-based applications. Representative fuel analysis is required to confirm compatibility, conditioning and emissions performance.

Compact Skid Package

Modular skid construction reduces field interfaces and supports faster deployment. Site planning must still provide ventilation, service access, intake and exhaust routing, fuel conditioning, electrical equipment and safety clearances.

Responsive Controls

Advanced control and monitoring functions support active operating optimization, one-touch start and stop, wide-range power adjustment and multiple operating modes. Multi-unit projects can be engineered for load sharing and staged expansion.

Typical Applications

Where the 150 kW Gas Turbine Generator Fits

CCHP energy system for data centers and hospitals

CCHP for Data Centers and Hospitals

Pair the turbine with heat-recovery and absorption-cooling equipment to support critical power and year-round cooling while increasing the useful energy recovered from fuel.

Industrial exhaust gas utilization at chemical and steel facilities

Exhaust Gas in Chemical and Steel Facilities

Convert suitable conditioned process gas into on-site electricity, steam or cooling, subject to detailed gas-quality analysis and appropriate gas treatment.

Associated petroleum gas power generation at an oilfield

High-Efficiency Use of Associated Gas

Use conditioned associated petroleum gas to supply production, gathering, pumping and auxiliary loads where gas export is difficult or expensive.

Compact gas turbine power system for VTOL and marine applications

Power Systems for VTOL and Vessels

Evaluate compact, high-power-density solutions for marine, VTOL and specialized systems requiring dedicated intake, exhaust, controls and safety engineering.

Have a specialized application?

Tell us about your fuel, site conditions and required power output.

Discuss Your Application

Engineering Consultation

Information Needed for a Reliable Proposal

Sharing the following data allows BLAZE engineers to evaluate the cycle, fuel system and balance-of-plant requirements for your project.

  1. Electrical, heating and cooling load profiles
  2. Annual operating hours and load variation
  3. Grid-connected, off-grid or islanding requirements
  4. Fuel composition, heating value, pressure and contaminants
  5. Required steam pressure or cooling-water conditions
  6. Site altitude, temperature, emissions and noise limits
  7. Installation area, transport access and lifting conditions
  8. Hazardous-area, fire protection and redundancy requirements

Buyer Questions

150 kW Micro Gas Turbine FAQ

What is the actual electrical output?

The simple-cycle configuration delivers 151.8 kW. The recuperated configuration delivers 129.9 kW but increases stated electrical efficiency from 16.7% to 30.5%.

What are the skid package dimensions?

The simple-cycle package measures 1,650 mm wide × 2,150 mm high × 2,135 mm long. The recuperated package has the same width and height and is 2,700 mm long. Additional service and safety space is required.

Can it use associated gas or industrial off-gas?

These fuels can be evaluated, but direct use cannot be confirmed without representative fuel data. Filtration, dehydration, desulfurization, pressure regulation or other treatment may be required.

Which configuration is more efficient?

For electrical efficiency alone, the recuperated configuration is higher at 30.5%. If a site can fully use the simple-cycle configuration's 610°C exhaust, total system efficiency and energy value must be evaluated.

Can the 150 kW model operate with hydrogen?

Hydrogen blending and other clean-fuel applications can be evaluated as project adaptations. Allowable blend ratio, fuel pressure, emissions, material compatibility and safety systems must be confirmed for the specific project.

Discuss Your 150 kW Energy Project

Send your load profile, fuel analysis and heat-recovery requirements to the BLAZE engineering team.

Request a Project Review

Planning a larger or customized system? Explore our gas turbine R&D projects or contact BLAZE.

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Part numbers alone are not sufficient to ensure performance.

To guarantee precision and compatibility, please provide:

Drawings or used samples for reverse engineering.