Company Information

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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)

China Mixed Gas Compressor - High-Performance Solutions from Trusted Suppliers and Factory for Complex Gas Handling

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Our advanced gas handling system is expertly designed for managing complex and variable mixed gases such as syngas, refinery gas, and biogas. As a leading supplier in China, our factory produces equipment that automatically adjusts operational parameters to accommodate varying gas compositions, which guarantees stable and reliable performance in continuous production processes, including petrochemical manufacturing and natural gas processing. Unlike traditional compressors that handle single-media gases, our product merges the high-pressure capabilities of reciprocating compressors with the high-flow stability of centrifugal and screw compressors. Utilizing customized aerodynamic design and intelligent control technology, we offer a safe, efficient, and integrated gas boosting solution tailored for intricate processes such as cracking gas compression, syngas pressurization, and carbon capture.

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    Gas Mixture Diaphragm Compressor Advantages

    01

    Zero Leakage Guarantee & Component Integrity

    The metal diaphragm completely isolates the process gas from the lubricating oil, achieving 100% oil-free operation and zero external leakage. This is crucial for preventing the accumulation of leaked flammable or explosive gas mixtures and for maintaining the specified component ratio of the mixture without oil contamination or air dilution, fundamentally eliminating safety risks caused by leakage.

    02

    Excellent Material and Media Adaptability

    The wetted parts of the diaphragm head (such as the diaphragm and cavity) can be custom-selected for materials based on the most corrosive or reactive components in the gas mixture, for example using 316L stainless steel, Hastelloy, etc. This flexibility ensures long-term compatibility between the compressor and complex gas components, preventing premature diaphragm failure or gas contamination due to material corrosion.

    Key Design Points for Gas Mixture Diaphragm Compressors

    01

    Explosion-Proof Design

    The explosion-proof rating of the electrical system must be determined based on the component with the highest gas group classification and the lowest auto-ignition temperature in the mixture. All motors, instruments, and junction boxes must meet the corresponding explosion-proof certifications. Additionally, the control cabinet must integrate a combustible gas concentration detector to monitor the environment around the compressor, interlocking with emergency ventilation when the concentration exceeds the limit.

    02

    Strict Temperature Control

    The discharge temperature is critical for preventing gas thermal decomposition or diaphragm overheating. The design must employ efficient multi-stage compression and inter-stage cooling systems to keep the final discharge temperature within a safe range. A diaphragm rupture monitoring system is standard; failure of any diaphragm layer will immediately trigger an alarm and shutdown, preventing gas from entering the oil side or oil from entering the process system.

    03

    System Safety Interlocks

    In addition to conventional oil pressure, water pressure, and pressure interlocks, special attention must be paid to the stability of the inlet gas composition. If the process permits, an online gas analyzer can be recommended to monitor changes in the concentration of key components. The system must be equipped with inert gas (e.g., nitrogen) purge connections for pre-startup purging and post-shutdown pressure holding/sealing, preventing air ingress that could form explosive mixtures or cause undesired chemical reactions.

    Certificates

    eac
    ce
    iso
    iso2033
    atex

    Model Selection

    GZ Model
    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 Model
    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 Model
    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 Model
    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
    18 Flow (Nm³/h)
    5 Inlet pressure (barg)
    12 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-18/5-12 500 18 0.5 1.2 1000×800×1100 800 5.5
    2 GZ-30/21-60 500 30 2.1 6 1100×800×1100 800 7.5
    3 GZ-22/8-30 1000 22 0.8 3 1200×800×1100 800 11
    4 GV-20/6-150 1000 20 0.6 15 1400×800×1100 900 11
    5 GV-118/40-55 1000 118 4 5.5 1400×800×1100 1000 11
    6 GV-160/10-30 2000 160 1 3 2600×1800×1600 3000 18.5
    7 GL-55/3 1000 55 Atmospheric 0.3 2200×1800×1600 2800 11
    8 GL-130/0.5-1 1500 130 0.05 1 2300×1800×1600 2800 11
    9 GL-60/1-25 2000 60 1 2.5 2300×1800×1600 2800 22
    10 GD-200/3-61 4500 200 0.3 6.1 3800×2300×1800 6000 45
    11 GD-1000/20-120 10000 1000 2 12 4200×3200×2200 12000 132
    12 GD-950/12-126 15000 950 1.2 12.6 4200×3500×2200 12000 160
    The equipment size and weight are for reference only, and the final design shall prevail.

    Case Study

    Russia Project

    Russia

    United States Project

    UNITED STATES

    Spain Project

    Spain

    Kazakhstan Project

    Kazakhstan

    Frequently Asked Questions (FAQ)

    How does a diaphragm compressor ensure zero leakage?

    A metal diaphragm separates the gas chamber from the oil chamber completely. Since there are no dynamic seals in contact with the process gas, it achieves 100% leak-tight operation, which is critical for dangerous, toxic, or expensive gas mixtures.

    Can wetted parts be customized for highly corrosive gases?

    Yes, the wetted parts of the compressor head, including the diaphragm and the gas cavity, can be manufactured from specialized materials such as 316L stainless steel, Hastelloy, or other chemical-resistant alloys to prevent corrosion and premature component failure.

    What safety mechanisms protect the system from diaphragm rupture?

    All compressors feature a multi-layer diaphragm structure integrated with a continuous pressure monitoring system. If any layer ruptures, the sensor detects the pressure change immediately, triggering a safe shutdown before the process gas mixes with the oil.

    Why is strict temperature control necessary during operation?

    High temperatures can cause thermal decomposition in reactive gas mixtures and accelerate diaphragm wear. Multi-stage compression combined with efficient inter-stage cooling is used to keep the discharge temperatures within safe limits.

    Are these compressors suitable for explosive environments?

    Yes, the electrical systems are fully explosion-proof, designed specifically to match the most hazardous component of the gas mixture. The system also includes safety interlocks and can be integrated with gas leak detectors.