NITROGEN GAS BOOSTER COMPRESSOR SYSTEM

Nitrogen Gas Booster Compressor System

Nitrogen Gas Booster Compressor System

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A nitrogen gas booster compressor system is an industrial machine that is used to increase the pressure of nitrogen gas. Nitrogen gas is a colorless, odorless, and inert gas that makes up about 78% of Earth's atmosphere. It is used in a variety of industrial applications, including food processing, metal fabrication, and chemical manufacturing.

Nitrogen gas boosters are used to increase the pressure of nitrogen gas for a variety of reasons. For example, nitrogen gas can be used to purge oxygen from a system to prevent fires or explosions. It can also be used to create an inert atmosphere for storing or transporting sensitive materials. Nitrogen gas boosters can also be used to provide pressurized gas for pneumatic tools and equipment.

The nitrogen gas booster compressor system discussed in the article is a high-pressure system that can compress nitrogen gas from 100 to 145 PSIG to a final outlet pressure of 15,000 psi. The outlet flow rate varies depending on the pressure and air drive pressure. The system also includes a noise reduction paneling to reduce noise levels, and a regulated pressure of 72 psig at the booster inlet.

Here are some of the benefits of using a nitrogen gas booster compressor system:


  • Increased safety: Nitrogen gas can be used to purge oxygen from a system to prevent fires or explosions.

  • Improved product quality: Nitrogen gas can be used to create an inert atmosphere for storing or transporting sensitive materials, which can help to improve product quality.

  • Increased efficiency: Nitrogen gas boosters can be used to provide pressurized gas for pneumatic tools and equipment, which can help to improve efficiency.


If you are considering using a nitrogen gas booster compressor system, it is important to consult with a qualified engineer to determine the right system for your needs. There are a variety of factors to consider, such as the required outlet pressure, flow rate, and noise level.

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