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CO2 Compressor CVG Series

The CVG Series is a high-performance CO2 compressor designed for efficient and reliable carbon dioxide compression in a wide range of industrial applications. Engineered for safe CO₂ handling, it delivers stable performance, energy efficiency, and long-term reliability, making it an ideal solution for carbon recovery, renewable energy, food-grade, and process industry applications.

Available with or without a gas treatment system, the CVG Series CO2 compressor is designed for a wide range of industrial applications requiring reliable and efficient carbon dioxide compression.  

Main applications include:

  1. CO₂ liquefaction: compressing carbon dioxide prior to liquefaction processes for storage, transportation, and industrial us

  2. Methanation: supporting synthetic methane production processes where CO₂ is combined with hydrogen to generate renewable methane

  3. Food applications: providing food-grade CO₂ for beverage carbonation, food processing, packaging, preservation, and other applications requiring high-purity carbon dioxide in compliance with industry standards

  4. Biogas upgrading: enabling the compression and handling of CO₂ streams generated during biomethane upgrading processes

  5. CO₂ recycling: supporting carbon dioxide recovery, reuse, and circular economy initiatives across a range of industrial sectors.

  1. The gas is drawn through a filtration system that removes particles and contaminants before entering the compressor through the suction valve. Components in contact with the gas are carefully selected to ensure reliability, durability, and compatibility with carbon dioxide applications

  2. During compression, oil is injected into the compression chamber to provide lubrication, sealing, and heat absorption, ensuring efficient operation and long service life

  3. The lubricant circulates in a closed loop through a separator vessel, cooling system, and filtration stages before being reintroduced into the compressor

  4. After compression, the CO₂ is separated from the oil through high-efficiency separation elements and directed through cooling and optional gas treatment stages based on application requirements

  5. An advanced control system continuously adjusts operating parameters according to demand, optimizing efficiency, maintaining stable pressure levels, and ensuring reliable operation

 

 

INLET PRESSURE

OPERATING PRESSURE

FREE GAS DELIVERY

ADSORBED POWER

Up to 1000 mbar(g)

Up to 25 bar(g)

Up to 6.000 Nm3/h

Up to 700 kW

 

EU

  • Classification of hazardous areas: ATEX Zone II
  • Pressure vessel code compliance: PED
  • Electrical Code Compliance: ISO 60079
  • Certified manufactoring organization: ISO 9001:2015 – ISO 14001:2015 – ISO 45001:2018

US

  • Hazardous Area Classification: Class 1, Div 2 as defined per NEC, NFPA70
  • Pressure Vessel Code Compliance: ASME
  • Electrical Code Compliance: UL/Control panels and assemblies
  • Certified manufactoring organization: ISO 9001:2015 – ISO 14001:2015 – ISO 45001:2018
  • UL 508A, Standard for Industrial Control Panels
  • UL 698A, Standard for Industrial Control Panels Relating to Hazardous (Classified) Locations
  • NFPA 70 National Electric Code
  • ASME B31.3 – Process Pipes.

CA

  • Hazardous Area Classification: Class 1, Div 2 as defined per NEC, NFPA70
  • Pressure Vessel Code Compliance: ASME -CRN
  • Electrical Code Compliance: UL/Control panels and assemblies
  • Certified manufactoring organization: ISO 9001:2015 – ISO 14001:2015 – ISO 45001:2018
  • UL 508A, Standard for Industrial Control Panels
  • UL 698A, Standard for Industrial Control Panels Relating to Hazardous (Classified) Locations
  • NFPA 70 National Electric Code
  • ASME B31.3 – Process Pipes.

BR

  • Classification of hazardous areas: ATEX Zone II
  • Pressure Vessel Code Compliance: ASME – NR13
  • Electrical code compliance: ISO 60079 – NR10 (Electrical panels and assemblies)
  • Certified manufactoring organization: ISO 9001:2015 – ISO 14001:2015 – ISO 45001:2018
  • ASME B31.3 – Process Pipes.

IN

  • Hazardous Area Classification: ATEX Zone II (HEAVY)
  • Pressure Vessel Code Compliance: ASME
  • Electrical code compliance: ISO 60079 (Electrical panels and assemblies)
  • Certified manufactoring organization: ISO 9001:2015 – ISO 14001:2015 – ISO 45001:2018
  • ASME B31.3 – Process Pipes.

Learn about our Case Studies

The pressure required for CO₂ compression depends on the specific application. In many CO₂ recovery and recycling processes, carbon dioxide is compressed to approximately 18-20 bar(g), allowing it to be captured, reused, and prevented from being released into the atmosphere.