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Nantong Wanqingnian Environmental Protection Technology Co., Ltd
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Nantong Wanqingnian Environmental Protection Technology Co., Ltd

  • E-mail

    215216873@qq.com

  • Phone

    18936169878

  • Address

    Third Floor, Comprehensive Building, Mifu Road Land Port Bonded Logistics Center

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Hydrogen sulfide and amine gas treatment equipment

NegotiableUpdate on 01/08
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Overview
This product uses a specially designed high-energy high ozone UV beam to irradiate odorous gases, cracking the molecular chain structure of odorous gases such as sulfides H2S, VOCs, benzene, toluene, and xylene. The molecular chains of organic or inorganic high molecular weight odorous compounds are degraded and transformed into low molecular weight compounds such as CO2 and H2O under high-energy UV beam irradiation.
Product Details

1. This product uses a specially designed high-energy high ozone UV beam to irradiate odorous gases, cracking odorous gases such as ammonia, * amine, hydrogen sulfide, hydrogen sulfide, methyl mercaptan, methyl sulfide, dimethyl disulfide, carbon disulfide, and styrene, as well as sulfide H2S. The molecular chain structure of VOCs, such as benzene, toluene, and xylene, enables the degradation and transformation of organic or inorganic high molecular weight odor compounds into low molecular weight compounds, such as CO, under high-energy ultraviolet light irradiation2、H2O, etc.

2. Utilizing high-energy and high ozone UV 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 produce ozone. UV+O2→O-+O(Reactive oxygen species) O+O2→O3(Ozone), ozone has an oxidizing effect on organic matter and has a clearing effect on odorous gases and other irritating odors.

3. After the odorous 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 odorous gas, causing it to degrade and convert into low molecular weight compounds, water, and carbon dioxide, which are then discharged outdoors through exhaust pipes.

4. By using high-energy UV beams to break down the molecular bonds of bacteria in odorous gases, the nucleic acid (DNA) of bacteria is destroyed, and then oxidized by ozone to achieve deodorization and kill bacteria