Oxygen PSA System

OXYGEN PSA PLANTS

Oxygen PSA System Nuberg Gpd
OXYGEN PSA PLANT​

DESCRIPTION

Oxygen PSA plants are the most cost-effective way to produce Oxygen. It generates Oxygen at less than one-third of the cost of production form cylinders. 

Through this method, we attain Oxygen directly in gaseous form. Nuberg uses the latest technology to attain this and offers a flow of 1-300 Nm3/hr. 

How do Oxygen PSA Plants work?

In this technology, compressed air from an Air Compressor is passed through a filtration unit. This is to remove the moisture and dust particles. The main adsorption system consists of two adsorbers with synthetic Zeolite (molecular sieve) interconnected through changeover valves. At a time, one adsorber remains in adsorption and generates the Oxygen, while the second is regenerated by purging. Once the regeneration of the second adsorber is completed, there would an automatic changeover and the cycle is reversed. Oxygen purity and pressure fluctuates at the outlet of the adsorber. Hence a surge vessel is provided for stabilizing the same. Oxygen comes out from a surge vessel with stable purity & pressure.

Click here to know more about the processes behind Oxygen Production. 

Oxygen purity obtained from PSA is around 91-93 %. This is optimal for most applications. 

To know more about the industries we serve, click here. 

SALIENT FEATURES

  • Simplicity & compact Design
  • Fully automatic & safe
  • Independent Oxygen Source
  • Safe Operation, Low working Pressure
  • Ambient Temperature Operation
  • Need Only electrical power and cooling water

A typical representation of the plant is shown in the figure below

Oxygen-PSA-Plant-Drawing
FIGURE: Oxygen PSA Plant

APPLICATIONs of oxygen psa plants

  • Pharmaceutical Industry
  • Glass Industry
  • Ampules & Vials manufacturing
  • Lamps Industry
  • T.V. Picture Tube Manufacturing Industry
  • Steel Industry
  • Brazing industry
  • Water Treatment
  • Chemical & Petrochemical

SPECIFICATIONS

Product

Oxygen Gas

Plant Capacity

1 – 1000 NM³/Hr.

Oxygen

91 – 93%

Balance

Nitrogen & Argon

Dew Point

(-) 40°C

Pressure

2 – 25 Bar

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