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High-purity oxygen generator SLTOG series
dryprocessmedical

high-purity oxygen generator
high-purity oxygen generator
high-purity oxygen generator
high-purity oxygen generator
high-purity oxygen generator
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Characteristics

Gas characteristics
high-purity, dry
Domain
process, medical, for the electronics industry, for the metallurgical industry
Applications
for chemical synthesis
Technology
PSA
Configuration
on site
Flow rate

Max.: 200 m³/h
(7,062.933 ft³/h)

Min.: 10 m³/h
(353.147 ft³/h)

Output pressure

Max.: 20 MPa

Min.: 1 MPa

Gas purity

93 %

Max.: 95 %

Min.: 91 %

Description

The pressure swing adsorption process (PSA) is a new gas separation technology. . The purity of oxygen can meet 93%±2. Process Principle: There are two adsorption towers filled with molecular sieves in the PSA molecular sieve oxygen generator. The clean and dry compressed air enters the pressure swing adsorption oxygen generator and flows through the A and B adsorption towers filled with molecular sieves. The compressed air flows through the adsorption tower from bottom to top, and the molecular sieve has different adsorption forces for oxygen and nitrogen under different pressures. The product gas flows out from the upper end of the adsorption tower and enters the buffer tank. After a period of time, the oxygen adsorbed by the molecular sieve in the adsorption tower is saturated and needs to be regenerated. Regeneration is achieved by stopping the adsorption step and reducing the pressure in the adsorption tower. After the adsorption tower has completed the short-term pressure equalization, the pressure is reduced, and the adsorbed nitrogen, water, carbon dioxide, and other components are removed to complete the regeneration process. The two adsorption towers alternately perform adsorption and regeneration to produce high-quality oxygen with stable flow and purity. MEDICAL OXYGEN GENERATION SYSTEM The medical oxygen generation and cylinder filling system uses a PSA oxygen generator to directly produce medical oxygen from compressed air on-site. After pressurization, the pressure for cylinder filling can reach 150 or 200bar, which can realize continuous production and cylinder filling of medical oxygen on site.

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*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.