Electric Liquid Driven Gas Booster System

For amplifying low-pressure gas into stable high-pressure output in high-pressure and large-flow gas applications.

Electric Liquid Driven Gas Booster System

Electric Liquid Driven Gas Booster System
Electric Liquid Driven Gas Booster System
Electric Liquid Driven Gas Booster System
Electric Liquid Driven Gas Booster System
Electric Liquid Driven Gas Booster System
Electric Liquid Driven Gas Booster System

product introduction

Electric Liquid Driven Gas Booster System is designed to amplify low-pressure gas into high-pressure output through hydraulic-driven pressurization.
With a maximum power of up to 55 kW and a maximum working pressure of 160 MPa, this system delivers high efficiency, large flow capacity, and reliable performance for demanding high-pressure gas applications.

It meets the requirements of various industries for high pressure and large gas flow, offering stable operation, energy efficiency, and flexible configuration options.

Product Description

The ODMT Electric Liquid Driven Gas Booster System adopts a hydraulic driving principle to pressurize gases efficiently and safely. Hydraulic oil acts on the piston of the hydraulic cylinder, transferring force to the gas piston and compressing the gas within the booster cavity. The compressed gas is then discharged from the high-pressure cylinder in a stable and controlled manner.

During operation, the forces on both hydraulic and gas pistons maintain a dynamic balance, ensuring smooth pressurization. The system features long stroke and low operating frequency, allowing the gas to cool naturally during compression and preventing excessive outlet gas temperature.

Once the preset pressure is reached, the system automatically stops consuming energy. When pressure drops, it restarts automatically to replenish pressure, ensuring safe, efficient, and continuous operation.

Electric Liquid Driven Gas Booster System

Drive type Hydraulic driven
Maximum power Up to 55 kW
Maximum pressure Up to 160 MPa
Pressurization mode Liquid-driven gas boosting
Pressurization stages Single-stage or double-stage
Power supply 380V, three-phase, four-wire
Control behavior Automatic start/stop based on pressure
Safety monitoring Oil level & oil temperature protection

 Features & Functions:

  • Hydraulic-driven gas pressurization for stable and controllable high-pressure output
  • Long-stroke, low-frequency design reduces gas temperature rise during compression
  • Multichannel sealing piston structure prevents gas contamination by hydraulic oil
  • Automatic energy-saving operation – stops when target pressure is reached
  • Automatic restart when pressure drops
  • Oil level and oil temperature protection with automatic system shutdown
  • Optional double-stage pressurization for higher pressure output with intermediate cooling

 

Electric Liquid Driven Gas Booster System

 

Product Advantages:

  • High pressure output up to 160 MPa
  • Large flow capacity with stable performance
  • Lower outlet gas temperature, reducing equipment stress
  • High performance–price ratio
  • Automatic operation improves safety and efficiency
  • Flexible configuration for different pressure and flow demands

 

Our Company Advantages:

  • Strong engineering experience in high-pressure fluid and gas systems
  • Flexible customization capability for pressure, flow, and application requirements
  • Strict quality control from component selection to system integration
  • Professional technical support before and after delivery
  • Proven solutions for complex and special working conditions

 

High-End Application Options:

For special working conditions, the system can be upgraded to meet higher safety and performance requirements

  • Explosion-proof motor and junction box for inflammable gases such as oxygen, hydrogen, and ethylene
  • Enhanced safety configuration for high-risk environments

 

Energy-Saving & Efficiency Optimization

  • Variable hydraulic pump option adjusts displacement automatically or manually
  • Flow output adapts to working pressure–Low pressure → large flow,High pressure → small flow
  • Faster pressurization speed
  • Higher working efficiency
  • Reduced energy consumption during operation

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