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Application Scenarios for Compressed Breathing Air and the Role of Carbon Monoxide Catalysts

Application Scenarios for Compressed Breathing Air and the Role of Carbon Monoxide Catalysts


Compressed breathing air refers to compressed, purified and dried air, which is mainly used in some occasions that need to provide clean, safe and reliable breathing air, such as:


- Firefighters, rescuers, divers, etc. need to use compressed breathing air to protect their respiratory systems when working in environments with high temperature, high pressure, high humidity or toxic gases.

- Hospitals, pharmaceutical factories, food factories and other places with strict requirements on air quality need to use compressed breathing air to ensure a sterile, dust-free and oil-free environment.

- In industrial production, some processes or equipment that require the use of high-purity air, such as spraying, cutting, welding, etc., need to use compressed breathing air to improve product quality and efficiency.

Carbon monoxide in compressed breathing air is a poisonous and harmful gas that poses serious hazards to human health and safety. Carbon monoxide mainly comes from the following aspects:

- There is a certain amount of carbon monoxide in the air itself, usually around 0.1~0.2ppm.

- When the air compressor compresses the air, it will generate a certain amount of heat, which will cause the moisture and oil in the air to pyrolyze or burn to generate carbon monoxide.

- In the environment around the air compressor, there may be some sources of carbon monoxide emission or leakage, such as vehicle exhaust, fuel combustion, etc. These carbon monoxide may be inhaled by the air compressor and mixed into the compressed air.

To remove carbon monoxide from compressed breathing air, one common method is to utilize a carbon monoxide catalyst. A carbon monoxide catalyst is a substance that can convert carbon monoxide into carbon dioxide and water. The principle is to use the active sites on the surface of the catalyst to react with carbon monoxide and water vapor to generate carbon dioxide and water and release heat.

Since carbon dioxide and water are much less harmful to the human body than carbon monoxide, this method can effectively reduce the carbon monoxide content in compressed breathing air and improve air quality.

MINSTRONG catalyst is a high-performance catalyst specially developed for the removal of carbon monoxide in compressed breathing air, which has the following advantages:

- MINSTRONG catalyst adopts a special formula and process, which makes the catalyst have the characteristics of high efficiency, low dust, water vapor resistance and oil pollution resistance.

- MINSTRONG catalyst can start working at normal temperature without preheating or heating, saving energy and cost.

- MINSTRONG catalyst can run stably for a long time without frequent replacement or maintenance, prolonging the service life of the catalyst.

- MINSTRONG catalysts have undergone strict quality testing and certification, complying with international standards and requirements, ensuring the safety and reliability of compressed breathing air.

To sum up, MINSTRONG catalyst is a high-quality product suitable for removing carbon monoxide in compressed breathing air, which can effectively improve the quality and performance of compressed breathing air, and provide customers with safe, comfortable and efficient breathing air. If you are interested in learning more about Minstrong Catalysts, please  contact our customer service staff. thanks for your attention!

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