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Plasma photo-oxygen machine

For some exhaust gas components that are more complex, it is necessary to use plasma, high ozone-type ultraviolet beams, oxidation reaction catalysts and other processes to degrade organic waste gas with complex components, such as: ammonia, trimethylamine, hydrogen sulfide, methyl mercaptan, methyl mercaptan, methyl sulfur Ether, dimethyl disulfide, carbon disulfide, styrene, toluene, benzene, xylene, etc., change their molecular chain structure, so that the molecular chains of organic or inorganic high-

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Plasma photo-oxidation machine

     

For some exhaust gas components that are more complex, it is necessary to use plasma, high ozone-type ultraviolet beams, oxidation reaction catalysts and other processes to degrade organic waste gas with complex components, such as: ammonia, trimethylamine, hydrogen sulfide, methyl mercaptan, methyl mercaptan, methyl sulfur Ether, dimethyl disulfide, carbon disulfide, styrene, toluene, benzene, xylene, etc., change their molecular chain structure, so that the molecular chains of organic or inorganic high-molecular odor compounds are irradiated with high-energy ultraviolet beams, catalysts, and positive ion ions. Oxidation reaction, degradation to low molecular compounds, such as CO2 and H2O.

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 · Product principle ·  

WeChat image_20190107155831.pngUV photolysis is a high-voltage power source that excites UV light and emits high-energy UV light beams. With the aid of a catalyst, UV light breaks down the molecular chains of malodorous gases, breaking their large molecular structures into small molecular structures; low-temperature plasma Under the action of an external electric field, the electrons obtain energy from the electric field and become high-energy electrons. These high-energy electrons are very fast. When they contact the pollutants, they transfer their own energy to the pollutants through inelastic collisions and convert them into The internal or kinetic energy of pollutant molecules. These energy-getting molecules are excited or ionized to form active groups. On the one hand, these active genes and pollutant molecules undergo chemical reactions to finally generate CO2 and H2O. On the other hand, when the pollutant molecules When the obtained energy is greater than its own binding bond energy, the molecular bonds of the pollutant molecules are broken and decomposed into harmless gases or elemental atoms. The organic combination of the two has a good elimination effect on complex waste ingredients.

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 · Features·  

1.The integrated equipment basically works under normal temperature and pressure, and the operation is simple.

2.This technology can simultaneously remove complex VOCs with multiple components

3. It is suitable for the removal of low-concentration VOCs. Compared with the combustion method, the required energy consumption is very low.

4, conventionally made of 304 stainless steel, the material can be selected from carbon steel, 201, 316L, etc.

5. High purification efficiency. The final products are H2O and CO2. When the organics are chlorinated, chlorides should be added without other intermediate by-products, which reduces the toxicity of organics, while avoiding other methods of post-processing problems.

6, excellent fire performance, the use of switches, power and circuit triple automatic protection function design

7. Small size, compact structure, modular structure, convenient installation and maintenance

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 · Scope of application ·  

1. Various harmful gases such as H2S, SOX, NOX, NH3, trimethylamine, methyl sulfide, methyl mercaptan, methyl sulfide, dimethyl disulfide, carbon disulfide, benzene, toluene, xylene, styrene deal with

2.Painting, spraying, ink printing, printing and dyeing workshop

3.Food, medicine, papermaking workshop

4.Treatment of exhaust gas from refineries, rubber plants, chemical plants, etc.

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Guangzhou Puhua Environmental Technology Co., Ltd.


                     

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