UV photooxidation equipment
UV photooxidation equipment utilizes a specially designed high-energy and high ozone UV ultraviolet beam to irradiate exhaust gas, cracking the molecular chain structure of industrial exhaust gases such as ammonia, trimethylamine, hydrogen sulfide, methyl sulfide, methyl mercaptan, methyl sulfide, butyl acetate, ethyl acetate, dimethyl disulfide, carbon disulfide and styrene, sulfide H2S, VOC, benzene, toluene, and xylene, resulting in organic or inorganic polymer odor compound molecular chains. Under high-energy ultraviolet beam irradiation, Degradation into low molecular weight compounds such as CO2, H2O, etc. Using high-energy and high ozone UV ultraviolet beams to decompose oxygen molecules in the air to produce free oxygen, also known as reactive oxygen species. Due to the imbalance of positive and negative electrons carried by free oxygen, it needs to combine with oxygen molecules to generate ozone.
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HOTLINE:400-678-1829
ZHANG GONG:+86-18865361829
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(1) Equipment Introduction
UV photooxidation equipment utilizes a specially designed high-energy and high ozone UV ultraviolet beam to irradiate exhaust gas, cracking the molecular chain structure of industrial exhaust gases such as ammonia, trimethylamine, hydrogen sulfide, methyl sulfide, methyl mercaptan, methyl sulfide, butyl acetate, ethyl acetate, dimethyl disulfide, carbon disulfide and styrene, sulfide H2S, VOC, benzene, toluene, and xylene, resulting in organic or inorganic polymer odor compound molecular chains. Under high-energy ultraviolet beam irradiation, Degradation into low molecular weight compounds such as CO2, H2O, etc. Using high-energy and high ozone UV ultraviolet beams to decompose oxygen molecules in the air to produce free oxygen, also known as reactive oxygen species. Due to the imbalance of positive and negative electrons carried by free oxygen, it needs to combine with oxygen molecules to generate ozone. UV+O2 → O+O * (reactive oxygen species) O+O2 → O3 (ozone), as is well known, ozone has a strong oxidizing effect on organic matter and has an immediate effect on the removal of industrial waste gas and other irritating odors. After the industrial waste gas is input into this purification equipment through exhaust equipment, the purification equipment uses high-energy UV ultraviolet beams and ozone to synergistically decompose and oxidize the industrial waste gas, causing it to degrade and convert into low molecular compounds, water, and carbon dioxide. Then, it is discharged outdoors through exhaust pipes.
(2) Installation precautions
① To ensure the purification efficiency of the equipment, the fan should be located behind the exhaust gas purifier;
② When installing UV photo oxygen waste gas treatment equipment on a bracket, it should be securely connected to the bracket, and the connection with the exhaust pipeline must be sealed;
③ UV photo oxygen waste gas treatment equipment should be installed outdoors with sufficient space for maintenance and repair. When installing outdoors, rain proof and sunshade awnings should be installed to avoid affecting the normal service life of the exhaust purifier and increasing unnecessary maintenance costs;
④ To ensure the purification efficiency of UV photo oxygen waste gas treatment equipment, the variable diameter air duct connected to the equipment inlet and outlet should be as smooth as possible;
⑤ The box of UV photo oxygen waste gas treatment equipment should be securely and reliably grounded. During installation, it is not allowed to touch the electrodes, and foreign objects are strictly prohibited from falling into the purifier.
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