This compressor series is designed for biogas upgrading systems, increasing inlet pressure and improving gas quality for a more efficient and reliable process. 

 

Key parameters:

Inlet pressure: up to 1000 mbar(g)

Operating pressure: up to 25 bar(g)

Free gas delivery: up to 4500 Nm³/h

Absorbed power: up to 700 kW

BVG/UVG 75<700

This compressor series has been specifically designed for feeding biogas upgrading systems. Their role is to increase the inlet gas pressure while simultaneously improving gas quality, ensuring a more efficient and reliable process.

 

  1. Pressure swing adsorption
  2. Membranes technology
  3. Turbines feeding
  4. Gas engine feeding
  5. Boiler feeding
  6. Water washing scrubbing
  7. CO₂ recirculation
  8. Vapor recovery
BVG/UVG 75<700
series

BVG/UVG 22<90

This compressor series has been specifically designed for feeding biogas upgrading systems. Their role is to increase the inlet gas pressure while simultaneously improving gas quality, ensuring a more efficient and reliable process.

 

  1. Pressure swing adsorption
  2. Membranes technology
  3. Turbines feeding
  4. Gas engine feeding
  5. Boiler feeding
  6. Water washing scrubbing
  7. CO₂ recirculation
  8. Vapor recovery
BVG/UVG 22>90
  1. Wet gas is drawn through a water separator filter with automatic condensate drainage, then passes through a suction valve for further treatment.
  2. Due to the presence of H₂S, CO₂, or other aggressive contaminants in the gas, all components in contact with it are made of stainless steel or suitably protected.
  3. During the gas compression process, oil is injected into the pumping unit to perform three main functions: lubrication, sealing and heat absorption.
  4. Operating in a closed circuit with a gas/oil reservoir, the oil is pressurized to flow through an oil cooler, then filtered before being re-injected into the screw compression chamber.
  5. The gas flows through a minimum pressure/non-return valve, then towards a cooler where impurities are removed, before being sent out and leaving the package in optimal conditions.

 

INLET PRESSURE

OPERATING PRESSURE

FREE GAS DELIVERY

ADSORBED POWER

Up to 1000 mbar(g)

Up to 25 bar(g)

Up to 4500 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.