Destinus’ innovative and state-of-the-art OP16 Gas Turbine has been designed to enable high fuel flexibility, a small footprint, long operating hours between major overhauls and high exhaust heat temperatures, saving you money and using the world’s energy resources more efficiently.
The OP16 Gas Turbine has an all-radial design which provides robustness, reliability, high efficiency, and low emissions. Our advanced combustion systems offer multi-fuel capability giving the OP16 the ability to handle a wide range of liquid and gaseous fuels.

Are You Getting The Best Use From Your Fuels?
The OP16 Gas Turbine is designed to operate on a wide range of fuels, both liquid and gaseous, making it versatile and adaptable to varying fuel compositions. Our international team of highly qualified experts dedicated to pushing the boundaries of gas turbine technology in our state-of-the-art facility in Hengelo, the Netherlands.
Driving The World’S Energy Transition
Fuel Flexibility
The OP16 Gas Turbine is suitable for a wide range of fuels. The robust yet advanced combustion systems give the OP16 the capability to operate on liquid and/or gaseous fuels. The moderate pressure ratio of the OP16 makes it possible to operate on low fuel-gas pressure. The OP16 can be equipped with low emission combustors or low BTU fuel combustors.
The OP16 Gas Turbine has an all-radial design which provides robustness, reliability, high efficiency, and low emissions. The four external can-type combustors allow for easy access to the turbine hot flow path reducing the amount of downtime during maintenance. The robust design, as well as having the bearings located in the cold section of the turbine, allows the OP16 to run for 42,500 hours before a major overhaul is recommended.
Robust Design
The innovative design of the OP16 Gas Turbine results in high heat-to-power ratio. This allows us to generate high exhaust temperatures, making the OP16 highly suitable for combined heat and power (CHP) applications. The overhung design places all bearings in the cold section of the turbine ensuring an oil-free exhaust flow which can be used for direct drying applications.
High CHP Capability
The high power density of the radial turbine allows for a compact and small design with only a third of the moving parts of conventional equipment. This small footprint and low weight are also reflected in the package design. The OP16 Gas Turbine is enclosed within 2 X 20 ft containers allowing for quick and easy installation. These compact and low-weight packages enable easy transportation and installation of the equipment.
Small Footprint
Download the brochure to learn more about the OP16 Gas Turbine Specifications and Parameters
OP16 Gas Turbine Variations
The Right Combustor For Your Fuel
OP16-3A
Diffusion combustor
OP16-3B
OP16-3C
Dry low NOx combustor
Low-calorific fuel combustor
OIL & GAS
INDUSTRIAL & COMMERCIAL
WASTE TO ENERGY
MARINE
The innovative design of the OP16 Gas Turbine results in high heat-to-power ratio. This allows us to generate high exhaust temperatures, making the OP16 highly suitable for combined heat and power (CHP) applications. The overhung design places all bearings in the cold section of the turbine ensuring an oil-free exhaust flow which can be used for direct drying applications.
How the OP16 Gas Turbine Creates Value in Your Application
Download the brochure to learn more about the OP16 Gas Turbine Specifications and Parameters
Many Companies Choose
Destinus Energy
OP16 Gas Turbine Commissioning | Pertamina, Indonesia
About Destinus Energy:
Destinus Energy develops, manufactures and services state of-the-art gas turbine systems, and is headquartered in Hengelo, The Netherlands. Our advanced turbine technology has turned the OP16 Gas Turbine into a masterpiece of technology allowing us to serve global markets with clean, distributed energy solutions.
We are over 30 years within this energy market, have successfully installed numerous gas turbines in oil and gas, waste to energy, industrial and commercial, and marine markets. Destinus turned over 686.8 Million m3 of flare gas into electricity, leading to significant environmental benefits and cost savings. We provide sustainable energy solutions and contribute to the reduction of more than 369 Million kg of CO2 emissions, based on the utilization of flare gas units.
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