1 Set (MOQ)
Business Type | Manufacturer, Exporter, Supplier |
Rate(LPM)/(Nm3/hr) | 40 LPM -500 LPM |
Technology Used | PSA Technology |
Purity Of Oxygen | 97+-3% |
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Preferred Buyer From
Location | Worldwide |
Product Details
PSG Engineering Company is a well-known manufacturer and exporter of industrial oxygen gas plants. These plants are designed based on the principle of air separation, which involves the separation of oxygen from air using various processes. The industrial oxygen gas plant principle is based on the fact that air is a mixture of different gases, with oxygen being the most abundant gas present. PSG Engineering Company has developed advanced technology and equipment to efficiently extract oxygen from the air and provide it in a pure form for industrial applications.
The industrial oxygen gas plant principle involves several steps and processes. The first step is the compression of air using compressors to increase its pressure. This compressed air is then passed through a series of filters to remove any impurities and moisture present. The filtered air is then cooled down to low temperatures using refrigeration units, which causes the moisture to condense and separate from the air stream.
Advantages of Industrial Oxygen Gas Plant:-
The industrial oxygen gas plant manufactured by PSG Engineering Company is widely used in various industries such as healthcare, metal fabrication, chemical manufacturing, and wastewater treatment. These plants play a crucial role in providing a continuous and reliable supply of oxygen for industrial processes. With their advanced technology and expertise, PSG Engineering Company has established itself as a leading provider of industrial oxygen gas plants, catering to the diverse needs of their clients worldwide.
Working Principal of Industrial Oxygen Gas Plant
If a gas mixture such as air, for example, is passed under pressure through a vessel containing an adsorbent bed of Zeolite molecular sieves that attracts nitrogen than it does oxygen, part or all of the nitrogen will stay in the bed, and the gas coming out of the vessel will be enriched in oxygen. When the bed reaches the end of its capacity to adsorb nitrogen, it can be regenerated by reducing the pressure, thereby releasing the adsorbed nitrogen. It is then ready for another cycle of producing oxygen-enriched air.
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