Company Information

* Company
* Name
* Phone

Key Parameters for Compressor inquiry

Suction Pressure

Discharge Pressure

Flow Rate

Cooling Method

Suction Temperature (℃)
Discharge Temperature(℃)
Power Supply(V/HZ)
Control Requirements
Gas Medium
Additional Remarks (You can also send your datasheet to our email)

Propane Compressor from China: High-Efficiency, Eco-Friendly Solution by Leading Suppliers & Factory

Introducing our advanced refrigeration system that utilizes natural propane (R290) as its refrigerant. This eco-friendly option boasts a zero ozone depletion potential (ODP) and an exceptionally low global warming potential (GWP), making it a perfect fit for businesses looking to adhere to the global trend of green refrigeration, Manufactured in China, our factory ensures that each unit features a robust screw-type design for enhanced simplicity and durability. With fewer wearing parts, our systems promise a long operational lifecycle and resistance to liquid ingress. The innovative oil injection cooling method significantly reduces discharge temperature and augments the single-stage pressure ratio, while the energy consumption can be smoothly adjusted using a slide valve, Choose us as your reliable suppliers in China for an efficient and economical refrigeration solution that aligns with sustainable practices

    Advantages of Propane Diaphragm Compressors

    01

    Absolutely Oil-Free and Ultra-High Gas Purity

    The diaphragm completely isolates the hydraulic oil from the compressed gas, ensuring 100% oil-free contamination of the propane medium during the compression process. This is critical for applications such as polymer-grade propane, food-grade propane, or specialty gas filling, safeguarding product quality and safety in downstream processes.

    02

    Zero Leakage and Intrinsic Safety via Static Sealing

    The entire gas compression chamber adopts a static sealing structure, fundamentally eliminating process leakage. Combined with a three-layer diaphragm safety design and a rupture alarm system, it provides the highest level of intrinsically safe protection for compressing flammable and explosive propane, making it especially suitable for installation in safety-sensitive areas or for handling valuable gases.

    Key Design Points for Propane Diaphragm Compressors

    01

    Diaphragm and Material Compatibility Design

    To address the swelling effect of hydrocarbon gases like propane on certain rubber or polymer materials, metal diaphragms and sealing materials with excellent compatibility must be selected. Flow-wetted components such as the cylinder head and gas valves should also be preferentially made of 316L stainless steel to meet both corrosion resistance and swelling resistance requirements.

    02

    Precise Thermal Control and Anti-Liquefaction Monitoring

    Based on propane's near-ambient critical temperature characteristics, accurate thermodynamic calculations must be performed to design efficient diaphragm chamber cooling channels. The control system must integrate high-high discharge temperature alarms and interlock shutdown functions to ensure the operating temperature always remains above the dew point temperature at the operating pressure, with a sufficient safety margin, to strictly prevent liquid formation.

    03

    Integrated Safety and Purging System

    The compressor body shall be integrated with combustible gas detector connection ports. Safety valves must be provided, with a relief capacity greater than the maximum compressor discharge capacity, and the discharge port shall be routed to a flare or a safe area. In addition, nitrogen purging interfaces shall be reserved for thoroughly displacing air from the piping and compression chamber before startup to prevent the formation of explosive mixtures.

    Certificate

    eac
    ce
    iso
    iso2033
    atex

    Model Selection

    GZ
    ModelG70Z/G95Z/G110Z/G130Z Piston Stroke70mm~130mm
    Maximum Piston Force10KN~30KN Maximum Discharge Pressure70Mpa
    Flow Range1~500Nm³/h Motor Power2.2KW~30KW
    Crankshaft Speed420rpm Cooling MethodWater Cooled/Air Cooled
    GV
    ModelG70V/G95V/G130V Piston Stroke70mm~130mm
    Maximum Piston Force10KN~30KN Maximum Discharge Pressure50Mpa
    Flow Range1~200Nm³/h Motor Power2.2KW~30KW
    Crankshaft Speed420rpm Cooling MethodWater-cooled / Air-cooled
    GL
    ModelG110L/G130L Piston Stroke110mm~130mm
    Maximum Piston Force20KN~40KN Maximum Discharge Pressure100Mpa
    Flow Range10~1000Nm³/h Motor Power7.5KW~90KW
    Crankshaft Speed420rpm Cooling MethodWater-cooled / Air-cooled
    GD
    ModelG110D/G130D/G150D/G180D/G182D/G210D Piston Stroke110mm~210mm
    Maximum Piston Force20KN~160KN Maximum Discharge Pressure100Mpa
    Flow Range30~2000Nm³/h Motor Power22KW~200KW
    Crankshaft Speed420rpm Cooling MethodWater-cooled / Air-cooled
    G
    Diaphragm type compressor
    Z
    Piston stroke 70mm
    20
    Flow(Nm³/h)
    5
    Inlet pressure(barg)
    25
    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-20/5-25 500 20 0.5 2.5 1400×760×1650 650 4
    2 GZ-12/0.5-8 500 12 0.05 0.8 1500×760×1200 750 4
    3 GZ-20/5-30 500 20 0.5 3 1400×760×1600 650 5.5
    4 GV-11/1.5-25 600 11 0.15 2.5 1500×780×1080 850 4
    5 GV-120/3.5-12 2000 120 0.35 1.2 2030×1700×1700 3000 22
    6 GV-100/7-25 3000 100 0.7 2.5 2030×1645×1700 3000 30
    7 GL-72/5-36 1500 72 0.5 3.6 2000×1500×1200 3000 15
    8 GL-60/0.05-4 4000 60 0.005 0.4 2400×1800×1600 3000 15
    9 GL-400/20-50 3000 400 2 5 4000×2500×2200 4500 30
    10 GD-900/4-12 5000 900 0.4 1.2 3500×2300×1500 4500 45
    11 GD-450/1-12 9000 450 0.1 1.2 3800×2300×2000 100000 90
    12 GD-250/0.2-15 8000 250 0.02 1.5 3600×2300×1800 6000 75
    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 propane gas compression?
    Diaphragm compressors provide 100% oil-free compression, ensuring there is no contamination of the propane medium. This is critical for high-purity applications, such as polymer-grade or food-grade propane. Additionally, the static sealing structure prevents any gas leakage, which is crucial for safety when handling flammable gases.
    How does the static sealing mechanism ensure zero leakage?
    Unlike traditional compressors with dynamic seals that wear over time, a diaphragm compressor seals the compression chamber statically using metal diaphragms clamped securely between flanges. This eliminates leakage paths, making it intrinsically safe for explosive and hazardous gases like propane.
    What materials are compatible with propane in a diaphragm compressor?
    To prevent the swelling and degradation effects of propane on polymer components, metal diaphragms and specific compatible elastomers are selected. Flow-wetted parts, including the cylinder head and gas valves, are typically constructed from high-grade 316L stainless steel.
    How does the system prevent propane from liquefying during compression?
    Through precise thermodynamic calculations, efficient cooling channels are designed into the diaphragm head. The integrated control system monitors discharge temperatures to ensure they remain safely above the propane dew point under the operating pressure, avoiding any liquefaction.
    What safety devices are integrated into the compressor package?
    The system includes a three-layer diaphragm rupture alarm, combustible gas detector connections, safety relief valves routed to a safe recovery area or flare, and nitrogen purging interfaces to safely displace air before startup.
    Can these compressors be customized for specific flow rates and pressures?
    Yes, our model selection ranges from GZ to GD series, supporting discharge pressures up to 100 MPa and flow capacities from 1 to 2000 Nm³/h, allowing for tailored configurations to match your exact process requirements.