Use of Medical Oxygen Plant, Process and Functionality

We know that Oxygen is the most important gas for the human life. This is the gas used to found in our atmospheric air in sufficient amount, requires to live and breath but in some cases such as medical emergency, accidents, serious illness and during the surgery. The people are unable breath in normal air, need additional oxygen supply through the mask. Medical oxygen plant ensure the nonstop oxygen supply in the hospitals when it needed.

Even hospitals can manage the oxygen through the cylinder easily but rather than getting gas cylinders, many hospitals install on-premises oxygen gas generators to fulfill their requirements of treating their patients. On-site gas generation systems are beneficial for all industries because these systems provide an uninterrupted supply of gas and prove to be cost-effective and efficient. It also frees the administration from the task of managing the.

Medical Oxygen Plant and it’s Function:

Oxygen gas plants are designed to produce oxygen from the air by separating the oxygen from its different segments utilizing the pressure swing adsorption (PSA) and Membrane Separation Technologies. Our manufactured oxygen gas plants are of first-rate quality, reliable and are extensively used for the Industrial facilities. The oxygen produced is 85-94% pure and are also suitable for Medical purposes to give oxygen round-the-clock.

Who provide or manufacture medical oxygen plant:

Medical oxygen plant mostly designed and manufactured by air compressor manufacturer because air compressor and compressor tank are the major component in any oxygen plant. Oxair oxygen generation plant’s use two vessels filled with Zeolite Molecular sieve as adsorbers. As Compressed Air passes up through one of the adsorbers, the molecular sieve selectively adsorbs the Nitrogen. This then allows the remaining Oxygen to pass on up through the adsorber and exit as a product gas. When the adsorber becomes saturated with Nitrogen the inlet airflow is switched to the second adsorber. The first adsorber is regenerated by desorbing nitrogen through depressurisation and purging it with some of the product oxygen.

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