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Suction Pressure

Discharge Pressure

Flow Rate

Cooling Method

Suction Temperature (℃)
Discharge Temperature(℃)
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Ethane Compressor: Reliable Solution from China Suppliers and Factory for Low-Temperature Refrigeration Applications

This product features a specialized shaft-end sealing and explosion-proof design that effectively eliminates leakage, ensuring intrinsically safe operation. Ideal for critical applications where ethane serves as an ultra-low temperature environmentally friendly refrigerant (boiling point: -88.6°C) or as a chemical feedstock, this product harnesses ethane's environmental benefits, including zero Ozone Depletion Potential (ODP) and near-zero Global Warming Potential (GWP). It is particularly suitable for use in petrochemicals, natural gas processing, and food refrigeration. As a leading supplier and factory in China, we are committed to delivering efficient and reliable solutions tailored to these key industries

    Ethane Diaphragm Compressor Advantages
    01
    Absolutely Oil-Free & Ultra-High Purity Assurance
    The core structure of the diaphragm compressor completely isolates the gas from the lubrication system via a hydraulically driven metal diaphragm, achieving absolute oil-free compression. This is critical for polymer-grade ethane used as a high-end chemical feedstock, thoroughly preventing oil contamination and ensuring the quality and efficiency of downstream chemical reactions.
    02
    Static Seal Zero Leakage & Intrinsic Safety
    The gas chamber adopts a fully static seal design, theoretically achieving zero leakage. This characteristic provides the highest level of safety assurance for handling flammable and explosive ethane gas, effectively preventing the accumulation of explosive gas mixtures in the plant area caused by trace leakage. It is particularly suitable for installation in spaces with limited room or locations with extremely high safety requirements.
    Key Design Points for Ethane Diaphragm Compressors
    01
    Precise Anti-Liquefaction Thermodynamic Design & Temperature Monitoring

    Given the critical temperature of ethane at 32.28°C, preventing liquefaction is the core of the design. Accurate thermodynamic calculations must be performed to ensure that the gas temperature after each compression stage, as well as the outlet temperature of the inter-stage coolers, is significantly higher than the dew point temperature of ethane at that stage's pressure, with a safety margin of 5-10 K. High-sensitivity temperature sensors and an interlock system must be configured to monitor the discharge temperature in real time, immediately triggering an alarm or shutdown when approaching dangerous values.

    02
    Optimized Material Compatibility & Diaphragm Life Management

    Wetted parts must be made of materials compatible with ethane, such as 316L stainless steel. Special attention must be paid to the fatigue performance of the diaphragm under operating conditions near the critical region. The material selection, heat treatment process, and pre-tension setting require specific optimization to address the specific thermal stresses that may arise from ethane compression, and a predictive maintenance plan should be established.

    03
    Multi-Layered Safety Monitoring & Emergency Relief System

    A three-layer diaphragm structure should be adopted, with diaphragm rupture monitoring sensors installed between the oil chamber and gas chamber for early warning. Combustible gas concentration probes should be integrated into the compressor body and inlet/outlet piping. Additionally, nitrogen purge connections must be designed for safe system displacement before startup and after shutdown. The discharge piping of safety relief devices should be routed to a safe flare system or a high-altitude vent stack.

    Certificate
    eac
    ce
    iso
    iso2033
    iso2033
    Model Selection
    GZ
    Model G70Z/G95Z/G110Z/G130Z
    Piston Stroke 70mm~130mm
    Maximum Piston Force 10KN~30KN
    Maximum Discharge Pressure 70Mpa
    Flow Range 1~500Nm³/h
    Motor Power 2.2KW~30KW
    Crankshaft Speed 420rpm
    Cooling Method Water Cooled/Air Cooled
    GV
    Model G70V/G95V/G130V
    Piston Stroke 70mm~130mm
    Maximum Piston Force 10KN~30KN
    Maximum Discharge Pressure 50Mpa
    Flow Range 1~200Nm³/h
    Motor Power 2.2KW~30KW
    Crankshaft Speed 420rpm
    Cooling Method Water-cooled / Air-cooled
    GL
    Model G110L/G130L
    Piston Stroke 110mm~130mm
    Maximum Piston Force 20KN~40KN
    Maximum Discharge Pressure 100Mpa
    Flow Range 10~1000Nm³/h
    Motor Power 7.5KW~90KW
    Crankshaft Speed 420rpm
    Cooling Method Water-cooled / Air-cooled
    GD
    Model G110D/G130D/G150D/G180D/G182D/G210D
    Piston Stroke 110mm~210mm
    Maximum Piston Force 20KN~160KN
    Maximum Discharge Pressure 100Mpa
    Flow Range 30~2000Nm³/h
    Motor Power 22KW~200KW
    Crankshaft Speed 420rpm
    Cooling Method Water-cooled / Air-cooled
    G
    Diaphragm type compressor
    Z
    Piston stroke 70mm
    18
    Flow (Nm3/h)
    40
    Inlet pressure (barg)
    45
    Outlet pressure (barg)
    No. Model Cooling water Flow Inlet pressure Outlet pressure Dimensions L×W×H Weight Motor Power
    (L/h) (Nm³/h) (MPa) (MPa) (≈mm) (≈kg) (kW)
    1 GZ-18/40-45 500 18 4 4.5 1200×900×1200 800 4
    2 GZ-20/29-45 500 20 2.9 4.5 1200×900×1200 800 4
    3 GZ-180/15-40 3000 180 1.5 4 2030×1045×1700 2500 30
    4 GV-10/1-25 600 10 0.1 2.5 1500×780×1080 800 4
    5 GV-120/3.5-12 2000 120 0.35 1.2 2200×1800×1700 3000 22
    6 GV-100/3-11 2000 100 0.3 1.1 2200×1800×1700 3000 18.5
    7 GL-25/15 1000 25 Atmospheric 1.5 2200×1650×1450 3000 7.5
    8 GL-80/5.5-35 1500 80 0.55 3.5 2000×1800×1200 3000 15
    9 GL-140/0.4-5 2000 140 0.4 0.5 3230×1770×2200 3000 18.5
    10 GD-400/8-40 8000 400 0.8 4 3600×2500×1700 6000 75
    11 GD-450/1-12 9000 450 0.1 1.2 3800×2300×2000 100000 90
    12 GD-1000/9-12 3000 1000 0.9 1.2 3200×1800×1900 4000 30
    The equipment size and weight are for reference only, and the final design shall prevail.
    Case Study
    Russia Case Study

    Russia

    United States Case Study

    United States

    Spain Case Study

    Spain

    Kazakhstan Case Study

    Kazakhstan

    Frequently Asked Questions
    Why is a diaphragm compressor preferred for polymer-grade ethane?
    A diaphragm compressor features a hydraulic metal diaphragm that completely isolates the gas chamber from the lubrication system. This guarantees 100% oil-free compression, preventing contamination of high-end chemical feedstocks like polymer-grade ethane, which is critical for downstream chemical reaction efficiency.
    How does the compressor handle ethane's critical temperature of 32.28°C?
    Our compressors utilize precise anti-liquefaction thermodynamic designs. By calculating gas temperatures at every stage and maintaining inter-stage cooler outlets 5-10 K above the ethane dew point, we prevent liquefaction. Real-time temperature sensors and interlock systems automatically trigger protective shutdowns if safety margins are compromised.
    What wetted materials are compatible with ethane in these systems?
    All gas-contacting wetted parts are manufactured using high-grade, ethane-compatible materials such as 316L stainless steel. Diaphragms undergo special heat treatments and pre-tensioning optimizations to withstand specific thermal and mechanical fatigue stresses.
    What safety measures protect against diaphragm rupture?
    The compressor utilizes a robust three-layer diaphragm design equipped with rupture monitoring sensors between the oil and gas chambers. This detects early boundary failures instantly. The unit also integrates combustible gas probes, nitrogen purge connections, and relief lines piped to a flare or high-altitude vent.
    What cooling options are available for these compressors?
    Depending on the specific installation site, ambient conditions, and model requirements (GZ, GV, GL, or GD series), both water-cooled and air-cooled configurations are fully supported to maintain thermodynamic stability.