Plug&Play screw compressor units for industrial cooling and heating.
As one of the largest suppliers of process technology GEA offers state-of-the-art equipment for a wide range of industries. Years of experience in compressor technology have made GEA a leading manufacturer, with a broad portfolio characterized by intelligent design and premium components for maximum quality, efficiency and reliability.
While our screw compressors are suitable for all common refrigerants, GEA focuses on the natural refrigerants NH3 (ammonia) and CO2 (carbon dioxide). Due to its high volumetric effciency and zero global warming potential, NH3 is a particularly future-proof choice.
Learn more with GEA RTSelect – our product selection and configuration tool.
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Designed for high stage, booster or single stage operation.
Efficient. Reliable. Versatile. - GEA single-stage screw packages.
Best efficiency with all loads - GEA screw packages with two parallel-mounted compressors.
One, two, three or four GEA CompaX compressors are available with Grasso X. Efficient and cost-effective cooling with a compact and flexible solution for various industries.
The GEA Ammonia Dryer removes water from the refrigerant cycle and makes the perfect addition to ammonia refrigeration systems along with filters and purgers.
PR-OLEO® ammonia oils are the natural choice to optimize industrial cooling and heating applications operating with reciprocating or screw compressors.
The impact of global warming is increasingly apparent all over the world. Towns and cities everywhere face the same challenge: providing their communities with reliable, affordable, sustainably sourced heat. GEA spoke with an expert in the field, Kenneth Hoffmann, Manager, Heat Pumps at GEA Heating & Refrigeration Technologies, about tackling global warming faster.
Something caught Farmer Tom's eye. Instead of another product demo, GEA showcased innovations via AR. That's only the start of GEA's interactive digital farm.
GEA scientists are working with researchers at the Graz University of Technology to configure a homogenization process and technology that turns eucalyptus pulp into 3D-printed, organic structures mimicking human veins, arteries and other tissues.