Psa System For Oxygen

Psa System For Oxygen
Product Introduction:
As a benchmark product for industrial-grade oxygen production solutions, NEWTEK Oxygen Plant Generator's core competitiveness is reflected in three dimensions: technological breakthroughs, scenario adaptation and sustainability.
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Description
Technical Parameters

 

Modular Solutions Covering Industry and Medical Care
 

 

 

 

NEWTEK equipment can flexibly adapt to the needs of different industries through modular design.

psa system for oxygen

01

Metallurgical Combustion Support

Provides 20-500Nm³/h large-flow oxygen output, precise purity control, and helps improve the combustion efficiency of high-temperature furnaces.

02

Chemical Synthesis

Supports ozone generator linkage to meet the high-purity oxygen source requirements of environmental protection scenarios such as water treatment and waste gas treatment.

03

Hospital Centralized Oxygen Supply

Through distributed oxygen supply systems and bus devices, it is compatible with medical-grade oxygen concentration synchronization monitoring standards to ensure stable oxygen supply for ventilators and operating rooms.

04

Mining Rescue Capsule and On-board Oxygen Generation

Integrated low-noise and anti-vibration design, it can provide continuous oxygen source in extreme environments.

 

No. Models Capacity (Nm3/hr) Purity Power consumption of 1Nm3 oxygen produced (kw/h) Number of bottles filled in 12 hours (pcs) Operator needed
1 NTK96-5P 5 96%+-1% 3.54 10 2
2 NTK96-10P 10 96%+-1% 2.52 20 2
3 NTK96-15P 15 96%+-1% 2.31 30 2
4 NTK96-20P 20 96%+-1% 2.13 40 2
5 NTK96-25P 25 96%+-1% 2.01 50 2
6 NTK96-30P 30 96%+-1% 2.09 60 2
7 NTK96-40P 40 96%+-1% 1.81 80 2
8 NTK96-50P 50 96%+-1% 1.94 100 2
9 NTK96-60P 60 96%+-1% 1.62 120 2
10 NTK96-80P 80 96%+-1% 1.92 160 2
11 NTK96-100P 100 96%+-1% 1.83 200 2

 

FAQ

 

Q: What is the working principle of the PSA oxygen generator?
A:
PSA (Pressure Swing Adsorption) technology selectively adsorbs nitrogen and other impurity gases in the air through molecular sieves to release high-purity oxygen. After pretreatment, the compressed air enters the adsorption tower, the nitrogen is adsorbed by the molecular sieve, and the oxygen is output through the adsorption layer. When the adsorption tower is saturated, the system switches to another tower to continue working, and the original tower is regenerated by decompression and desorption, and the cycle operation realizes continuous oxygen supply.


Q: What are the main application areas of the PSA oxygen generator?
A:
Medical field: centralized oxygen supply systems in hospitals and clinics, replacing traditional oxygen cylinders and providing a stable oxygen source.
Industrial field: processes that require high-purity oxygen, such as metallurgy, chemical industry, and laser cutting.
Aquaculture: increase the oxygen content of water bodies by oxygenation and improve the breeding environment.
Environmental protection and soil remediation: used for soil oxygenation, inhibit harmful bacteria and promote the activity of beneficial microorganisms.


Q: Compared with traditional oxygen supply methods (such as liquid oxygen tanks), what are the advantages of PSA oxygen generators?
A:
Low cost: On-site oxygen production reduces transportation and storage costs, and long-term operating costs drop by more than 50%.
High safety: No need to store high-pressure or low-temperature oxygen, reducing the risk of leakage or explosion.
High degree of automation: Support PLC control, unattended operation, and real-time monitoring of oxygen purity and pressure.
Flexibility: Oxygen production (5~200Nm³/h) and purity (90-95%) can be adjusted according to demand.


Q: How to choose a suitable PSA oxygen generator model?
A:
The following parameters should be considered for selection:
Flow rate (Nm³/h): Select according to actual gas consumption, such as 10-60Nm³/h is commonly used in medical scenarios, and 200Nm³/h can be reached in industrial scenarios.
Purity requirements: Medical use requires ≥93%, and industrial welding or cutting may require higher purity (such as ≥95%).
Outlet pressure: Usually 0.3-0.5MPa, special processes require customized booster modules.
Environmental adaptability: High altitude areas need to adjust the design to compensate for the impact of low oxygen concentration.


Q: What should be paid attention to in the maintenance of PSA oxygen generator?
A:
Molecular sieve replacement: The life of the adsorbent is about 5-10 years, and the adsorption efficiency needs to be tested regularly.
Filter cleaning: The pre-filtration system needs to replace the filter element regularly to prevent clogging by oil and particulate matter.
Pressure and purity monitoring: Real-time monitoring through built-in sensors or external instruments to ensure stable output.
Power and heat dissipation: Check the stability of the power supply (such as 220V/380V) and keep the equipment well ventilated.

 

 

 

 

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PSA Oxygen Plant

●What is the O2 capacity needed?
●What is O2 purity needed? standard is 93%+-3%
●What is O2 discharge pressure needed?
●What is the votalge and frequency in both 1Phase and 3Phase?
●What is the working site temeperature averagely?
●What is the humidity locally?

PSA Nitrogen Plant

●What is the N2 capacity needed?
●What is N2 purity needed?
●What is N2 discharge pressure needed?
●What is the votalge and frequency in both 1Phase and 3Phase?
●What is the working site temeperature averagely?
●What is the humidity locally?

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