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60Nm³/h 94% Purity VSA Oxygen Plant for Industrial Oxygen Production with Vacuum Swing Adsorption Technology

    Buy cheap 60Nm³/h 94% Purity VSA Oxygen Plant for Industrial Oxygen Production with Vacuum Swing Adsorption Technology from wholesalers
     
    Buy cheap 60Nm³/h 94% Purity VSA Oxygen Plant for Industrial Oxygen Production with Vacuum Swing Adsorption Technology from wholesalers
    • Buy cheap 60Nm³/h 94% Purity VSA Oxygen Plant for Industrial Oxygen Production with Vacuum Swing Adsorption Technology from wholesalers
    • Buy cheap 60Nm³/h 94% Purity VSA Oxygen Plant for Industrial Oxygen Production with Vacuum Swing Adsorption Technology from wholesalers
    • Buy cheap 60Nm³/h 94% Purity VSA Oxygen Plant for Industrial Oxygen Production with Vacuum Swing Adsorption Technology from wholesalers
    • Buy cheap 60Nm³/h 94% Purity VSA Oxygen Plant for Industrial Oxygen Production with Vacuum Swing Adsorption Technology from wholesalers

    60Nm³/h 94% Purity VSA Oxygen Plant for Industrial Oxygen Production with Vacuum Swing Adsorption Technology

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    Brand Name : GNEE
    Certification : SGS
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    60Nm³/h 94% Purity VSA Oxygen Plant for Industrial Oxygen Production with Vacuum Swing Adsorption Technology

    Product Description

    In industrial production scenarios ranging from metal cutting and welding to chemical synthesis and wastewater treatment, a stable, high-purity oxygen supply is critical to optimizing process efficiency, reducing waste, and ensuring product quality. The vsa oxygen generator (Vacuum Swing Adsorption Oxygen Generator), a key variant of the vpsa oxygen generator (Vacuum Pressure Swing Adsorption Oxygen Generator) family, is a dedicated Industrial Oxygen Generator designed to meet the rigorous demands of industrial oxygen production. Unlike cryogenic oxygen separation—an energy-intensive and slow-start alternative—VSA technology relies on physical adsorption to separate oxygen from ambient air, requiring no hazardous chemicals and enabling full-load operation within 10 minutes of start-up. This 60Nm³/h 94% purity VSA Oxygen Plant is tailored for medium-scale industrial applications, offering low energy consumption, modular scalability, and consistent oxygen purity, making it a cost-effective alternative to bottled oxygen or small-scale cryogenic plants.

    Core Parameter

    Model

    N2 Flow

    (Nm3/h)

    Effect Air Consumption(Nm3/min)



    95%

    98%

    99%

    99.9%

    99.99%

    VPSA-5

    5

    0.3

    0.25

    0.27

    0.4

    0.6

    VPSA-10

    10

    0.55

    0.48

    0.52

    0.73

    1.2

    VPSA-20

    20

    1.2

    0.98

    1.1

    1.4

    2.4

    VPSA-30

    30

    1.65

    1.36

    1.52

    2.1

    3.9

    VPSN-50

    50

    2.85

    2.4

    2.58

    4.35

    6.6

    VPSA-100

    100

    5.5

    4.8

    5.2

    6.8

    13.1

    VPSA-150

    150

    8.25

    7.5

    7.83

    10.2

    19

    VPSA-200

    200

    11

    9.8

    10.9

    13.6

    25.8

    VPSA-300

    300

    16.5

    14.5

    15

    20.4

    39

    VPSA-400

    400

    22

    19.2

    20.5

    27.2

    49.5

    VPSA-500

    500

    27.5

    24

    25.5

    34

    63

    VPSA-600

    600

    33

    28.8

    30.2

    40.8

    78

    VPSA-800

    800

    45

    36.4

    40.1

    55

    103

    VPSA-1000

    1000

    55

    48

    50.7

    68

    -

    VPSA-1500

    1500

    85

    70

    74.8

    103

    -

    VPSA-2000

    2000

    110

    93

    103

    -

    -


     VSA Oxygen Plant For Industrial Oxygen Production

     VSA Oxygen Plant For Industrial Oxygen Production

    Why vsa oxygen plant is the Optimal Choice for Medium-Scale Industrial Oxygen Production

    Medium-scale industrial operations (60-100Nm³/h oxygen demand) face a unique challenge: balancing cost, flexibility, and reliability in oxygen supply. vsa oxygen plant addresses this better than either psa oxygen generator (Pressure Swing Adsorption Oxygen Generator) or cryogenic systems:

    • Compared with psa oxygen generator, VSA technology uses vacuum regeneration instead of atmospheric pressure regeneration, reducing energy consumption by 20-30% for the same output—critical for industrial facilities operating 24/7.
    • Unlike cryogenic plants (which require minimum load operation), the 60Nm³/h VSA plant can adjust output down to 45Nm³/h to match fluctuating industrial demand, avoiding oxygen waste.
    • Its modular design allows easy expansion to 80Nm³/h as production scales, eliminating the need for full equipment replacement (a major cost savings vs. fixed-capacity cryogenic systems).
    • For industrial environments with limited space (e.g., urban manufacturing hubs), the compact footprint (4.2m×2.1m×3.0m) of this VSA plant fits in standard industrial equipment rooms, unlike bulkier cryogenic storage tanks.

    Core Differences Between vpsa oxygen generator and psa oxygen generator in Industrial Applications

    While both vpsa oxygen generator (VPSA) and psa oxygen generator (PSA) fall under pressure swing adsorption oxygen plant technology, their regeneration methods make them suited for distinct industrial scenarios:

    • PSA oxygen generator: Relies on atmospheric pressure regeneration, ideal for small-scale (≤40Nm³/h) industrial use with low energy sensitivity (e.g., small welding shops). It has lower initial investment but higher unit energy consumption (0.55-0.65kWh/Nm³ O₂).
    • VPSA oxygen generator (including VSA variants): Uses vacuum regeneration, optimized for medium-to-large scale (40-200Nm³/h) industrial use. The 60Nm³/h VSA plant (a subset of VPSA) achieves unit energy consumption of ≤0.42kWh/Nm³ O₂, making it cost-effective for high-hour industrial operation.
    • Key industrial tradeoff: PSA systems have faster maintenance turnaround (1-2 days vs. 3-4 days for VSA), but VSA’s lower energy costs offset this for facilities running ≥8,000 hours annually.

    Selecting psa oxygen generator manufacturers for Industrial VSA Oxygen Plants

    When sourcing a 60Nm³/h VSA Oxygen Plant, industrial enterprises must prioritize psa oxygen generator manufacturers with industrial gas expertise (not just medical oxygen focus):

    • Industrial certification: Ensure manufacturers comply with ISO 9001 (quality) and ISO 14001 (environmental) standards, and have experience with industrial applications (e.g., metal processing, chemical production).
    • Customization capability: Look for manufacturers that can tailor the plant to specific industrial needs (e.g., corrosion-resistant materials for chemical plants, explosion-proof design for mining-related processing).
    • After-sales support: Require a minimum 2-year warranty and local service centers (to reduce downtime) — critical for industrial facilities where oxygen supply interruptions cost $1,000+/hour in lost production.
    • Case validation: Prioritize manufacturers with references from industrial clients of similar scale (e.g., 50-100Nm³/h oxygen demand) to ensure real-world adaptability.


    Conclusion

    The 60Nm³/h 94% purity vsa oxygen plant (a type of vacuum swing adsorption oxygen generator) is a versatile, cost-effective solution for medium-scale industrial oxygen production, outperforming traditional PSA systems and cryogenic plants in energy efficiency, flexibility, and scalability. Leveraging the core principles of vpsa oxygen generator technology, it delivers stable 94% oxygen purity, low unit energy consumption (≤0.42kWh/Nm³ O₂), and seamless integration with industrial production lines—addressing the twin goals of cost reduction and process optimization for industrial enterprises. As industrial sectors increasingly prioritize sustainability and operational efficiency, VSA Oxygen Plants will remain a core component of modern pressure swing adsorption oxygen plant solutions for industrial oxygen production.
    Email: info@gneeheatex.com
    Whatsapp (WeChat): +86 15824687445
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