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China Suppliers Factory Oxidation Tower for Ozone Generator in Flue Gas Denitrification System

The oxidation tower is a crucial component of the flue gas oxidation and denitrification system, serving as the front-end oxidation device. In the process of treating flue gas that contains nitrogen oxides, it is essential to address the predominance of nitric oxide, which is not easily absorbed or processed. To enhance the efficiency of flue gas treatment, our oxidation tower effectively oxidizes nitric oxide into nitrogen dioxide. As a leading manufacturer in China, we supply high-quality oxidation towers to various industries, ensuring compliance with environmental regulations and improving air quality. Contact our factory today to learn more about our innovative solutions for flue gas treatment

Introduction to oxidation tower

The oxidation tower is the front-end oxidation device in the flue gas oxidation and denitrification system. In the flue gas treatment process containing nitrogen oxides, because the content of nitric oxide in the flue gas accounts for the vast majority and nitric oxide is not easily absorbed and processed, it is necessary to oxidize nitric oxide into nitrogen dioxide. The processed flue gas can meet the emission standards.

The oxidation tower is a specialized equipment for oxidizing nitric oxide into nitrogen dioxide. There are many types of oxidants that can be used in this tower, such as chlorine dioxide, hydrogen peroxide.

Tower composition and process

The oxidation tower consists of a tower body, gas distributor, liquid distributor, liquid redistribution ring, spray device (including dedicated nozzle), defogger, etc. The reaction mechanism is as follows:

2NO + O2 = 2NO2

Working principle

The flue gas enters the oxidation tower, and the oxidant that rises upwards and sprays downwards is in countercurrent contact. The gas-liquid fully reacts, and nitric oxide is oxidized to nitrogen dioxide under the action of the oxidant. The oxidation tower adopts a nozzle type empty tower spray. Due to the atomization effect of the nozzle, it splits into countless small diameter liquid droplets, and its total surface area expands thousands of times, allowing gas-liquid to fully contact. The larger the gas-liquid contact area, the higher the efficiency of mass transfer and heat reaction between the two phases.

A demister is installed at the top of the oxidation tower. Through the collision of the demister baffle, the smoke, dust, other water droplets, and solid particles carried by the flue gas are captured and separated by the demister. The defogger is equipped with a regular flushing device to prevent blockage.

Notice: Due to the tendency of the circulating liquid spray system to accumulate near the absorption tower wall during spraying, uneven distribution of the circulating liquid occurs, resulting in a much lower oxidation efficiency of the flue gas near the tower wall than in the tower. The use of liquid redistribution rings has successfully solved this problem.

Performance characteristics

  • The oxidation tower is a spray air tower with simple operation and high reliability.
  • The reasonable design of flue gas flow rate in the oxidation tower ensures better mass transfer efficiency.
  • Low liquid to gas ratio, low power consumption, and low operating costs.
  • The slurry adopts multi-layer countercurrent spraying, with high spraying coverage.
  • Install eaves at the entrance of the oxidation tower to prevent slurry from entering the flue and prevent scaling.
  • Using commonly used oxidants on the market, easy to purchase.

Field of use

This tower can be applied to all pre-treatment processes for flue gas denitrification in coal-fired boilers, and is suitable for all situations where nitric oxide needs to be converted into nitrogen dioxide.

Frequently Asked Questions

Q: Why is an oxidation tower necessary in flue gas treatment?

Nitric oxide (NO) accounts for the vast majority of nitrogen oxides in flue gas but is not easily absorbed. The oxidation tower serves as a front-end device to oxidize nitric oxide into nitrogen dioxide (NO2), which can be easily absorbed and processed to meet emission standards.

Q: Which oxidants can be used in the oxidation tower?

The system is compatible with various common market oxidants, such as chlorine dioxide (ClO2) and hydrogen peroxide (H2O2), which are highly efficient and easy to purchase.

Q: What role does the liquid redistribution ring play?

It prevents the circulating liquid from accumulating near the absorption tower wall during spraying. By ensuring even distribution of the liquid, it maintains high oxidation efficiency near the tower wall.

Q: How does the spray design maximize mass transfer efficiency?

The tower utilizes a nozzle-type empty tower spray. The atomization effect splits the liquid into countless small-diameter droplets, expanding the surface area thousands of times for full gas-liquid contact and reaction.

Q: How does the tower prevent clogging and scaling?

A demister at the top captures dust and water droplets, and is equipped with a regular flushing device to prevent blockages. Additionally, eaves are installed at the inlet to prevent slurry from entering the flue and causing scaling.

Q: Where is this oxidation tower typically applied?

It is widely used in pre-treatment processes for flue gas denitrification in coal-fired boilers, and is suitable for any industrial application where nitric oxide must be converted to nitrogen dioxide.