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Oxygen Concentrator Membrane Oxygen Generator Plants

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Oxygen Concentrator Membrane Oxygen Generator Plants

Oxygen Concentrator Membrane Oxygen Generator Plants
Oxygen Concentrator Membrane Oxygen Generator Plants

Large Image :  Oxygen Concentrator Membrane Oxygen Generator Plants

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Brand Name: Hongjinli

Oxygen Concentrator Membrane Oxygen Generator Plants

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Membrane oxygen plants


Oxygen concentrator


Membrane Oxygenator

Membrane Oxygen Generator




A Membrane Oxygen Generator operates on the principle of selective permeation through specialized membranes to separate oxygen from air. Here's a simplified explanation of how it works:

Air Intake: The process begins by drawing in ambient air, which contains approximately 21% oxygen and 78% nitrogen, along with trace amounts of other gases.

Pre-Treatment: The incoming air may undergo pre-treatment processes to remove any contaminants, particulates, or moisture that could potentially affect the performance of the membrane. This can involve filtration and drying mechanisms.

Membrane Separation: The pre-treated air is then directed to a membrane module. The module consists of hollow fiber or flat-sheet membranes made from materials that have a selective permeability for oxygen. These membranes have tiny pores that allow oxygen molecules to pass through while blocking or significantly retarding the passage of nitrogen molecules.

Selective Permeation: As the air is forced through the membranes, oxygen molecules, being smaller and more soluble, permeate through the membrane walls, while nitrogen molecules are retained and continue to flow along the membrane surface.

Oxygen Collection: The oxygen that permeates through the membrane is collected and channeled into a separate collection chamber or storage tank. This collected oxygen is typically of high purity, as the membrane's selective permeability favors the passage of oxygen over other gases.

Nitrogen Disposal: The nitrogen that remains after the selective permeation process continues to flow along the membrane surface and is discharged as waste or vented back into the atmosphere.

Control and Monitoring: The Membrane Oxygen Generator is equipped with control systems and monitoring mechanisms to regulate the airflow, pressure, and other parameters. These systems ensure optimal performance, maintain the desired oxygen purity, and monitor the overall operation of the generator.

Oxygen Delivery: The generated oxygen, collected in the storage tank or chamber, can be delivered for various applications. It can be distributed through pipelines, stored in cylinders, or used directly at the point of production, depending on the specific requirements of the application.

The Membrane Oxygen Generator offers a reliable and continuous source of oxygen by utilizing selective permeation through specialized membranes. Its simplicity, compactness, and ability to provide oxygen without the need for moving parts or consumables make it suitable for various applications, such as medical facilities, laboratories, and small-scale industrial processes.



Membrane Oxygen Generators find applications in various industries and settings where a continuous and reliable source of oxygen is required. Here are some common applications:

Medical Facilities: Membrane Oxygen Generators are widely used in medical settings, such as hospitals, clinics, and emergency rooms. They provide a reliable source of oxygen for respiratory support, anesthesia, and other medical procedures. These generators are often used as backup systems or as a primary oxygen supply in areas where liquid or cylinder oxygen may not be readily available.

Laboratory and Research: Membrane Oxygen Generators are employed in laboratories and research facilities where a controlled and continuous supply of oxygen is needed. They are used for various applications, including cell culture, tissue engineering, incubators, and gas chromatography. The generators offer a convenient and cost-effective solution for maintaining oxygen-rich environments in controlled laboratory settings.

Water Treatment: Membrane Oxygen Generators are utilized in water treatment processes, such as wastewater treatment plants and aquaculture facilities. They provide oxygen for biological processes, such as activated sludge treatment, where oxygen is required for the growth and activity of aerobic bacteria that help break down organic matter.

Ozone Generation: Membrane Oxygen Generators are used in ozone generation systems. Ozone is a powerful oxidizing agent used for disinfection, odor control, and water purification. The generators supply oxygen to ozone generators, where it is converted into ozone using electrical discharge or ultraviolet light.

Food and Beverage Industry: Membrane Oxygen Generators play a role in the food and beverage industry. They are used to enhance product shelf-life by supplying oxygen for modified atmosphere packaging (MAP), where the oxygen content in packaging is adjusted to preserve product freshness. Additionally, they are used in the production of beverages, such as beer and wine, to ensure consistent oxygen levels during fermentation processes.

Environmental Monitoring: Membrane Oxygen Generators are utilized in environmental monitoring applications. They provide a continuous supply of oxygen for sensors and analyzers used in air quality monitoring, emissions testing, and environmental research.

Aerospace and Aviation: Membrane Oxygen Generators are employed in aerospace and aviation industries, particularly for applications such as cabin pressurization and oxygen supply for crew and passengers in aircraft. These generators ensure a reliable source of oxygen at high altitudes or in emergency situations.

These are just a few examples of the broad range of applications where Membrane Oxygen Generators are utilized. Their compact size, simplicity, and ability to provide a continuous supply of oxygen make them suitable for various industries and settings where on-site oxygen generation is required.




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