UV photo oxygen catalytic waste gas treatment equipment

UV photo oxygen catalytic waste gas treatment equipment
UV photo oxygen catalytic waste gas treatment equipment
UV photo oxygen catalytic waste gas treatment equipment
UV photo oxygen catalytic waste gas treatment equipment
UV photo oxygen catalytic waste gas treatment equipment
UV photo oxygen catalytic waste gas treatment equipment
UV photo oxygen catalytic waste gas treatment equipment
UV photo oxygen catalytic waste gas treatment equipment
Environmental Dust Removal Equipment

UV photo oxygen catalytic waste gas treatment equipment

This product utilizes a light beam to irradiate malodorous gases, breaking down their molecular chains such as ammonia, hydrogen sulfide, methyl mercaptan, dimethyl sulfide, dimethyl disulfide, carbon disulfide, styrene, sulfides (H₂S), VOCs, benzene, toluene, and xylene. Under ultraviolet light irradiation, the inorganic malodorous compound molecules are degraded and transformed into low-molecular-weight compounds such as CO₂ and H₂O.

Because free oxygen carries an imbalance of positive and negative electrons, it needs to combine with oxygen molecules to produce ozone. UV + O2 → O- + O (active oxygen) O + O2 → O3 (ozone). As is well known, ozone has a strong oxidizing effect on organic matter and is effective against malodorous gases and other irritating odors. Thirdly, after the malodorous gases are introduced into this purification equipment through exhaust ventilation, the equipment uses C-wave light and ozone to carry out a synergistic oxidation reaction on the malodorous gases, degrading and transforming them into low-molecular-weight compounds, water, and carbon dioxide, which are then discharged outdoors through exhaust ducts.

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