UV high efficiency deodorizer

Summary: The UV lamp has two wavebands of 254nm and 185nm. When the lampblack passes through the UV lamp, 254nm ultraviolet rays cut off the chain of oil molecules to form small oil molecules. At the same time, 185nm ultraviolet rays react with oxygen in the air to produce ozone, which turns the oil molecules into water, carbon dioxide and a small amount of white powder. Some of the oil smoke is photolyzed and oxidized, and the peculiar smell in the flue is mostly removed.

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Principle of deodorization

The UV lamp has two wavebands of 254nm and 185nm. When the lampblack passes through the UV lamp, 254nm ultraviolet rays cut off the chain of oil molecules to form small oil molecules. At the same time, 185nm ultraviolet rays react with oxygen in the air to produce ozone, which turns the oil molecules into water, carbon dioxide and a small amount of white powder. Some of the oil smoke is photolyzed and oxidized, and the peculiar smell in the flue is mostly removed. The UV lamp deodorizer shall be installed behind the electrostatic cooking fume purifier, and the flue length shall meet the requirements of at least” 2S” Ozone reaction time requirements, that is, the length of the flue behind the UV lamp deodorizer shall not be less than 16 meters (wind speed 8 m/s)

Photolysis principle

UV ultraviolet wave band (254nm) light speed radiation of small oil particles (protein molecules composed of amino acids, fat molecules composed of fatty acids, etc.) will cut off the molecular chain of oil and change the molecular structure of oil. Oil and volatile organic compounds are vulnerable to UV attack

purify

environment protection

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