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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)
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China Fluorine Compressor Factory - Reliable Suppliers for Safe Handling of Reactive Fluorine Gas

Introducing our advanced compressor designed specifically for the safe and efficient compression of highly reactive and corrosive fluorine gas. Manufactured in China, our factory utilizes fluorine-resistant materials and incorporates a multi-layer sealing structure, which includes working piston seals, isolation diaphragms, and magnetic fluid seals. This innovative design guarantees absolute zero leakage during the compression process, significantly enhancing safety and reliability compared to standard compressors. As a leading supplier in the industry, we address critical challenges related to the recovery, filling, and pressurized transportation of high-purity fluorine gas, essential for sectors such as semiconductor manufacturing and atomic energy. Trust in our compressor for unparalleled performance and safety in handling fluorine gas

    Fluorine Diaphragm Compressor Advantages

    01

    Absolute Leak-Free & Media Isolation Assurance

    The metal diaphragm forms an absolutely reliable static sealing barrier, ensuring that the highly toxic, highly corrosive fluorine gas is 100% contained within the wetted components while preventing external impurities from entering. This structure fully satisfies the highest safety criterion of "zero leakage" for fluorine gas handling, making it especially suitable for high-purity applications and occasions with zero tolerance for leakage.

    02

    Intrinsically Safe Structural Design

    The diaphragm compressor requires no dynamic piston rod seal, eliminating the most significant leakage point found in reciprocating compressors. Its structure naturally avoids the risk of fluorine gas escape caused by seal wear, providing EPC engineering companies and end users with a basic process equipment option offering inherently higher safety, greatly simplifying the complexity of safety facility design.

    Key Design Points for Fluorine Diaphragm Compressors

    01

    Ultimate Corrosion-Resistant Material System

    All wetted parts in contact with fluorine must be fabricated from special nickel-based alloys or high-grade fluorine-resistant stainless steel. The use of copper, copper alloys, and ordinary carbon steel is strictly prohibited. The documentation explicitly states that copper alloys pose an extremely high risk when in contact with fluorine, and that austenitic stainless steels used in a fluoride ion environment must be of low-carbon or stabilized grades, with strict control over welding procedures to prevent stress corrosion cracking.

    02

    Ultra-Strict Cleaning & Surface Treatment

    The entire system must undergo thorough degreasing, cleaning, and passivation treatment prior to assembly to absolutely remove any grease, moisture, and metal particles. This is a prerequisite for preventing violent oxidation or corrosive reactions between fluorine and residues, ensuring long-term operational stability.

    03

    Multi-Layered Redundant Safety Monitoring System

    A three-layer diaphragm rupture alarm and automatic interlock shutdown device must be installed. When any working diaphragm ruptures, the monitoring system can instantly trigger an alarm and stop the compressor, preventing fluorine from penetrating the oil chamber or hydraulic oil from contaminating the gas. Simultaneously, the system must integrate multi-point pressure and temperature monitoring, as well as complete nitrogen purge and vent connections, ensuring complete air displacement within the system before startup.

    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 ~ 500 Nm³/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 ~ 200 Nm³/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 ~ 1000 Nm³/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 ~ 2000 Nm³/h Motor Power22KW ~ 200KW
    Crankshaft Speed420rpm Cooling MethodWater Cooled / Air Cooled
    G
    Diaphragm type compressor
    Z
    Piston stroke 70mm
    1
    Flow (Nm³/h)
    0.5
    Inlet pressure (barg)
    11
    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-1/0.5-11 500 1 0.05 1.1 1100×700×1100 800 5.5
    2 GZ-3/0.6-3 500 3 0.06 0.3 1200×800×1100 800 5.5
    3 GZ-16/3 1000 16 Atmospheric 0.3 2200×1700×1800 2500 7.5
    4 GV-1/10 500 1 Atmospheric 1 1200×900×1200 900 5.5
    5 GV-40/(-0.15)-2 1000 40 -0.015 0.2 2200×1800×1700 2700 11
    6 GV-100/7-25 3000 100 0.7 2.5 2030×1045×1700 3000 30
    7 GL-60/0.05-4 4000 60 0.005 0.4 2400×1800×1600 3000 15
    8 GL-400/20-50 3000 400 2 5 4000×2500×2200 4500 30
    9 GL-40/100 3000 40 Atmospheric 10 3700×1750×2000 3800 30
    10 GD-420/8-39 8000 420 0.8 3.9 3600×2500×1700 6000 75
    11 GD-370/20-200 8000 370 2 20 3600×2200×1700 5000 75
    12 GD-350/18-210 8000 350 1.8 21 3600×2200×1700 5000 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

    How does a fluorine diaphragm compressor ensure absolute zero leakage?

    It features a static metal diaphragm design that forms an absolute physical barrier, completely isolating the fluorine gas within the wetted components. Since there are no dynamic seals on the piston rod, the primary leakage paths common in standard reciprocating compressors are eliminated.

    What materials are used to withstand fluorine gas corrosion?

    All parts in contact with fluorine are made of specialized nickel-based alloys or high-grade fluorine-resistant stainless steel. Copper, copper alloys, and standard carbon steels are strictly banned due to their high reactivity and stress corrosion risks in fluoride environments.

    Why is pre-assembly cleaning so critical for these compressors?

    Fluorine is highly reactive. Any trace of grease, moisture, or metal particles can trigger violent oxidation or explosive reactions. Therefore, the entire system must undergo a rigorous degreasing, cleaning, and chemical passivation process before assembly.

    How does the safety interlock system handle diaphragm failures?

    The compressor is equipped with a three-layer diaphragm rupture alarm system. If any layer fails, the monitoring system instantly stops the compressor, preventing fluorine gas from leaking into the hydraulic oil system or vice versa.

    What cooling methods are available for the different compressor models?

    Depending on your process requirements and model selection (GZ, GV, GL, GD), both water-cooled and air-cooled configurations are available to maintain optimal operational temperatures.