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E-mail
hebeishengyi@163.com
- Phone
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Address
Botou Industrial Development Zone, Hebei Province
Hebei Shengyi Metallurgical Machinery Co., Ltd
hebeishengyi@163.com
Botou Industrial Development Zone, Hebei Province
The photo oxygen environmental protection equipment mainly uses a specially designed high-energy high ozone UV beam to irradiate waste gas, cracking industrial waste gas such as ammonia, trimethylamine, hydrogen sulfide, methylthiohydride, methyl mercaptan, methyl sulfide, butyl acetate, ethyl acetate, dimethyl disulfide, carbon disulfide and styrene, sulfide H2S, VOC, benzene, toluene, xylene molecular chain structure, so that the molecular chains of organic or inorganic high molecular odor compounds are degraded and transformed into low molecular compounds such as CO2 and H2O under the irradiation of high-energy UV beam.
Using high-energy and high ozone UV ultraviolet beams to decompose oxygen molecules and water molecules in the air to produce free oxygen (reactive oxygen species) and OH radicals. Due to the imbalance between free oxygen and the positive and negative electrons carried, it needs to combine with oxygen molecules to produce ozone. The photocatalytic environmental protection equipment consists of equipment and components such as a primary filtration unit, C-band ultraviolet device, catalytic device, degradation collection, ozone generator, and filtration unit. UV+O2-O+O * (reactive oxygen species)+O2-O3 (ozone), it is well known that ozone has a strong oxidizing effect on organic matter and has an immediate effect on removing industrial waste gas and other irritating odors.
Catalysts also have a purification effect on exhaust gases similar to plant photosynthesis. By irradiating with specific wavelengths of light, nano photocatalysts are activated to generate electron hole pairs, which interact with surrounding H2O molecules and O2 molecules to generate hydroxyl radicals OH. Through the hydroxyl free base layer, various harmful components in the air are locked in, and the structure of harmful molecules is decomposed to inhibit bacterial growth and virus activity, thereby achieving the goals of sterilization, air purification, deodorization, mold prevention, and pollution elimination.
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, degrading and converting it into low molecular weight compounds, water, and carbon dioxide, which are then discharged outdoors through pipelines. In addition, by adding special catalysts: more than 27 corresponding inert catalysts are configured according to different exhaust gas components. The catalyst uses honeycomb shaped metal mesh as a carrier and is in full contact with the light source in all directions. The inert catalyst undergoes catalytic reactions below 338 nanometer light source, amplifying the light source effect by 10-30 times, allowing it to fully react with the exhaust gas, shortening the contact time between the exhaust gas and the light source, and thus improving the exhaust gas purification efficiency. By using high-energy UV beams to break down the molecular bonds of bacteria in industrial waste gas, the bacterial nucleic acid (DNA) is destroyed, and then oxidized by ozone to thoroughly purify and kill bacteria. From the perspective of air purification efficiency, we have chosen a high corona current device that combines C-band ultraviolet radiation and ozone. We use the principle of pulse corona adsorption technology to eliminate harmful gases. C-band ultraviolet radiation is mainly used to remove organic gases such as hydrogen sulfide, ammonia, benzene, toluene, dimethylbenzene, formaldehyde, ethyl acetate, ethane, acetone, urea, resin, etc., transforming organic matter into inorganic matter.