Purity: ≤3ppmO2
Description
The new and improved Liquid Nitrogen Generator Plant boasts simplified operation for enhanced air purification and cooling efficiency. Not only is it smaller and more discreet, but it is also incredibly user-friendly. This cutting-edge solution for nitrogen production embraces a liquid nitrogen storage and evaporation system. It eliminates the need for a liquid nitrogen pump by utilizing the self-pressurization capability of the storage tank, ensuring reliable operation over extended periods and reducing replacement costs. Additionally, the turboexpander's impeller is expertly designed using NREC software. Its robust structure guarantees smooth operation even in demanding industrial environments, offering a dependable nitrogen supply solution.
Features
The pre-cooling system in our Liquid Nitrogen Generator Plant features an adjustable cooling capacity, allowing for versatility in cooling potential. With the capability to cool air to a temperature of 7℃, our system is effective in preventing water buildup in the molecular sieve adsorber.
The outstanding air purity achieved by the nanometer molecular sieve purification system allows it to be extensively utilized in medical, semiconductor, and electronic applications. By effectively adsorbing carbon dioxide, the air's carbon dioxide content is reduced to less than 1PPm. This remarkable capability makes it highly suitable for various industries and sectors.
This equipment utilizes a molecular sieve adsorber that boasts remarkable performance and the ability to be switched out every 8 hours without any loss in functionality. Furthermore, the adsorber consumes minimal power during operation, making it a sustainable and energy-efficient solution for continuous air purification.
Application
The manufacturing of electronics and semiconductors relies heavily on a crucial product - ultra-pure nitrogen. This type of nitrogen is essential to prevent damages to delicate electronic components. Hence, ensuring the purity of nitrogen is of utmost importance to these industries.
Hospitals and medical facilities heavily depend on clean and dry gas to ensure the proper functioning of life support equipment, anesthesia delivery, and medical air systems. These essential healthcare establishments rely on this equipment to provide necessary care and treatment to patients. Without a reliable source of clean and dry gas, the delivery of medical services could be compromised, jeopardizing patient care. Consequently, it is of utmost importance for medical and healthcare facilities to have a steady and high-quality gas supply to maintain the optimal functioning of their critical equipment.
Enhancing safety and efficiency in oil and natural gas refineries is paramount. To achieve this, there is a need to prevent corrosion and pollution of pneumatic control systems and safety equipment. This can be done by utilizing appropriate measures to address these concerns. Doing so will not only improve operational safety but also maximize productivity while minimizing downtime. It's therefore imperative for the oil and natural gas industry to adopt such measures as part of their overall strategy for sustained success.
Technical parameters:
Product Name | Output (N m³/h) | Purity | Discharge Pressure (Mpa) | Temperature | Remark |
Nitrogen | 1500 | ≤3ppmO2 | 0.8 | Normal temperature | To pre-cooling system |
Liquid Nitrogen | 100 | ≤3ppmO2 | / |
Note: 1.1 The unit of measurement Nm3/h is the standard quantity measured at 0°C and 0.1013Mpa(A).
1.2 Operation period (two large heating intervals): ≥ two years
1.3 Device heating and cooling time: ~24 hours
1.4 Device start-up time (from the start of the expander until the nitrogen product reaches the purity index): ~20 hours
Ancillary equipment
1. Centrifugal air compressor | 1 set |
2. Air pre-cooling system | 1 set |
3. Purification system | 1 set |
4. Booster turbo expander | 1 set |
5. Fractionation tower system | 1 set |
6. Liquid storage system | 1 set |
7. Instrument control system | 1 set |
8. Electronic control system | 1 set |
Main equipment configuration:



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