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Are there still people who don’t know about an oil removal device that can reduce oily compressed air to a stable level of 0? It is now widely used in various industries. This oil removal device has been widely used in the food industry to upgrade existing oil-lubricated air compressor systems; it can completely eliminate oil contamination from compressed air. Catalytic oxidation technology is used for oil removal, with catalysts serving as the key materials. These catalysts, under certain temperature conditions, facilitate a chemical reaction between the oxygen in compressed air and the oil contaminants, resulting in the formation of carbon dioxide and water. Compared to ordinary filters, catalytic oxidation oil removers offer the following advantages: http://file3.foodmate.net/attachment/forum/202209/24/144030n77zt8wz1vta808t.jpg.thumb.jpg 01. The oil removal efficiency is at level 0 – the catalytic oxidation technology can effectively remove liquid oils, oil mists, oil-gas gels, as well as the most difficult-to-remove oil vapors. It can remove the oil from compressor lubricant that ends up in the compressed air, as well as the oil present in the air entering the compressor. Therefore, compression air purification equipment based on catalytic oxidation technology can be used both after oil-lubricated compressors and after oil-free lubricated compressors, completely eliminating the problem of oil contaminants in compressed air. 02 Stable oil removal performance: One of the key elements of sustainable catalytic oxidation technology is the catalyst, which facilitates the conversion of oily pollutants into carbon dioxide and water at lower temperatures. The catalyst itself does not change, is not consumed, and does not generate any consumables. It is recommended that a maintenance cycle of 2 years be followed. This type of oil-removal equipment is highly versatile; it can be used with various types of compressors such as screw oil-lubricated compressors, oil-free lubricated compressors, piston compressors, scroll compressors, and vane compressors. It operates over a wide pressure range, covering high-pressure, medium-pressure, and low-pressure applications, thus filling the gap where no suitable oil-free lubricated compressor devices are available at certain pressures. 04 The low procurement cost of the entire system differs from that of the oil-free screw compressors and water-lubricated screw compressors mentioned earlier. The catalytic oxidation oil removal technology has been developed in China and comes with independent intellectual property rights; the quality of its products is on par with that of similar foreign products, and in some aspects it is even superior, all at a more reasonable price. For most compressed air users, installing a catalytic oxidation oil removal system directly behind the existing compressor is sufficient to meet their need for oil-free compressed air.
A catalyst, also known as a catalyzer, is a substance that can alter the rate of a chemical reaction in reactants (either increasing or decreasing it) without changing the chemical equilibrium. Its mass and chemical properties remain unchanged before and after the chemical reaction takes place. A catalyst is a material that does not participate in the reaction itself; it merely serves to increase or decrease the reaction conditions.
I ask, what is the catalyst used in this compressor?
It’s not the catalyst inside the compressor; it’s a device used for post-treatment to remove oil from air compressor systems. This device employs catalytic oil removal technology. Until now, adsorption methods have been used for a long time to eliminate oil contamination from compressed air, but our system uses a catalyst as the key material to achieve oil removal.
Can it be used for compressing gases other than air?
It’s not possible; according to its mechanism of action, oxygen is required in order to achieve oil removal
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