BluNet manufactures industrial ambient vaporizers for cryogenic gas applications, providing reliable vaporization solutions for LOX, LIN, LAr, LNG and CO₂ systems.Using natural convection heat transfer and aluminum finned tube technology, BluNet ambient vaporizers provide reliable, energy-efficient gasification solutions for industrial gas filling stations, storage tank systems and LNG applications.
Since 2002, BluNet has specialized in cryogenic equipment manufacturing, providing vaporization solutions and technical support for industrial gas systems worldwide.
Ambient Air Vaporizer – Technical Specifications
| Parameter | Specification |
|---|---|
| Model | AV50/3.0 |
| Working Medium | LOX, LIN, LAr, LNG, Liquid CO₂ |
| Design Pressure | 3.3 MPa |
| Working Pressure | 3.0 MPa |
| Design Temperature | -196°C to +50°C |
| Heat Exchange Area | 12.5 m² |
| Vaporization Capacity | 70–1500 Nm³/h (Depending on configuration) |
| Heat Transfer Method | Natural Convection |
| Material | Aluminum Alloy Finned Tube |
Applications
BluNet ambient air vaporizers are designed for industrial cryogenic gas vaporization systems, including gas filling, storage and distribution applications.
| Application | Description |
|---|---|
| Industrial Gas Filling Stations | Vaporizes LOX, LIN, LAr and CO₂ from cryogenic storage tanks for cylinder filling and gas distribution. |
| Cryogenic Storage Systems | Provides continuous gasification for liquid gases stored in bulk cryogenic tanks. |
| LNG Vaporization Systems | Converts LNG into natural gas for industrial fuel and energy supply applications. |
| Medical Gas Supply Systems | Supports reliable oxygen and nitrogen gas supply for healthcare facilities. |
| Industrial Manufacturing | Provides process gases for chemical, metallurgy and manufacturing operations. |
Features & Advantages
BluNet ambient air vaporizers combine advanced finned tube technology with natural convection heat transfer to provide efficient and reliable cryogenic vaporization.
| Feature | Advantages |
|---|---|
| U-Shaped Finned Tube Design | The U-shaped finned tube structure increases heat exchange surface area, improving vaporization efficiency and overall performance. |
| Energy-Saving Natural Convection | Uses ambient air as the heat source without electricity consumption, reducing operating costs and providing an environmentally friendly solution. |
| Anti-Corrosion Surface Treatment | The aluminum structure is treated with protective anti-corrosion coating to ensure long service life in outdoor operating environments. |
| Compliance with Cryogenic Standards | Manufactured according to national cryogenic equipment standards to ensure safe operation, reliability and consistent quality. |
| Lightweight & Easy Installation | The compact and lightweight design allows quick installation and flexible deployment for both fixed and portable gas supply systems. |
| Stable Outlet Gas Temperature | Maintains a stable outlet temperature close to ambient conditions, ensuring reliable continuous operation under different working conditions. |
Working Principle
Ambient air vaporizers use natural convection to convert cryogenic liquids into gaseous form without electricity or external heating sources. Cryogenic liquids such as LOX, LIN, LAr, LNG and liquid CO₂ flow through aluminum finned tubes, where heat is absorbed from surrounding air to achieve efficient vaporization.
The high-efficiency finned tube design provides a large heat exchange surface, ensuring stable gas output temperature and reliable continuous operation with low maintenance costs.
Ambient Air Vaporizer Models
BluNet provides ambient air vaporizer solutions for different flow requirements and cryogenic gas applications.
- Standard Ambient Air Vaporizer: Suitable for general industrial gas vaporization systems.
- High Pressure Ambient Vaporizer: Designed for high-pressure filling and distribution systems.
- Modular Ambient Vaporizer System: Multiple units can be combined for higher gas flow capacity.
- LNG Ambient Vaporizer: Used for natural gas vaporization applications.
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