Paving the way for efficient energy recovery and reduced power consumption across cryogenic natural gas processing and power generation applications.
With years of experience supporting the hydrocarbon, petrochemical and power generating industries, our team of engineers and technicians offer depth of expertise needed in design, manufacturing, testing and developing the turboexpanders for your natural gas and LNG processes.
Hydrocarbon turboexpanders and energy efficiency go hand in hand to produce a high quality product.
Returning as much as 90% of the energy used.
Processes that use pressurized gas or have pressure letdown in the process system can all benefit from the energy recovered by our hydrocarbon turboexpanders equipment. We design and manufacture advanced refrigeration and energy recovery equipment using 2D, 3D and fluid streams modeling software to significantly improve product efficiency and beyond what was considered possible before.
Geothermal organic rankin cycle power plants are one of the world’s future sources of green hydrogen, a crucial part of the energy transition.
Our turboexpanders make it happen.
Alongside our partners, we have the capability to build geothermal plants from 5-25MW, as well as waste heat energy recovery plants – all while producing more cumulative electrical power than operation utilizing other types of turboexpander technologies.
We tailor our machines to meet each customer’s specific requirements, delivering a solution that is both cost-effective and reliable according to API-617 and additional customer requirements.
Each unit will be fully packaged with its own auxiliary system, including Lube oil and seal gas system, control system, piping etc. according to API-614 or customer specifications.





We deliver skid-mounted lube oil system according to API-614 or customer specifications, with pressurized or atmospheric oil reservoir.
Lube oil, seal gas and control systems are designed to provide pressurized lubricating oil to various types of industrial rotating equipment. Typically, these systems include pumps, heat exchangers, filters, controls and instrumentation. Built in a controlled fabrication environment, systems are mounted on structural steel bases designed for easy and safe transport to the plant site. This “modular” concept reduces start-up time and costs in the field and allows the end-user to take advantage of our OEM expertise and fixed costs.
We can supply skid mounted packages to include rotating equipment and its associated auxiliary systems.
Packages also can include large pumps, hydrocarbon turboexpanders, generators, and integrally geared turboexpanders or compressors. Typical packages would include baseplate, mounting pads, piping, valving, tubing, electrical wiring, instrumentation and drive train components. Most packages are shipped as a turnkey system, which reduces field installation cost.
We build according to many of the world’s leading oil and chemical company specifications, having built for both offshore oil and land-based units.
We supply skid-mounted Local Control Panel or Remote Unit Control Panel.
Advanced SIL rated UCP control systems or DCS control multivariable algorithms software to enhance stable operation and reliability. Real time monitoring, preventive maintenance and optional remote monitoring. Design to meet NEC or IEC area classification.
Ensure the highest quality and reliability of our systems through in-house testing.
Advanced testing with air or cryogenic conditions. Turboexpander-compressor performance test per ASME PTC-10, type 2 with air or cryogenic testing with liquide nitrogen, LNG or LPG.

Designed for medium- and low-temperature geothermal resources, waste heat recovery, and cold energy recovery to improve power generation efficiency and maximize energy utilization.

Ideal for cryogenic natural gas processing, LNG cold energy utilization, LNG liquefaction, LNG peak shaving, boil-off gas (BOG) reliquefaction, natural gas liquids (NGL) recovery, dew point control, and ethane recovery.

Designed for hydrogen purification and liquefaction, air separation units (ASUs), cryogenic processing of nitrogen, oxygen, and other industrial gases, as well as specialty gas applications including helium, argon, and carbon monoxide.

Engineered for cryogenic petrochemical processes, ethylene and olefin production, propane dehydrogenation (PDH), butane dehydrogenation (BDH), refinery off-gas recovery, and ammonia and fertilizer production.

Designed for pressure letdown energy recovery, natural gas pipeline pressure reduction power generation, and industrial process energy recovery to improve system efficiency and maximize energy utilization.