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Basic selection parameters for electrostatic precipitator equipment

2025-01-04 17:08:29      View:187
Application fields of electrostatic precipitator equipment

 

Electric dust removal equipment is a widely used dust removal device that can effectively handle dust and impurities with particle sizes below 0.1 microns. Due to its high efficiency in dust treatment and low energy consumption, it can be used in various industrial production workshops. Electric dust removal equipment uses electric current to ionize and decompose particles, reducing the particle size of dust and changing the chemical properties of materials, achieving efficient dust removal.

 
Selection parameters for electrostatic precipitator equipment

 

There are many types of dust removal equipment currently available for sale. When users choose dust removal equipment, the following aspects are several parameters that can be considered in the selection process.

 

1: Effective dust collection area

 

The effective dust collection area is the sum of the projected areas of the anode plates with electric field effects, numerically equal to the actual control length of the electric field. The larger the effective dust collection area, the more different dust particles can be collected in the space by the dust removal equipment. The increase in effective area will also increase the price of the product. Before choosing a product, users need to determine the actual area of the production workshop.

 

2: Dust specific resistance

 

The specific resistance of dust is an indicator of the conductivity of dust. During the use of electrostatic precipitators, the specific resistance value will be affected. The specific resistance of dust is equal to the resistance value generated per unit area of dust per unit thickness. And various devices have a range of values for dust specific resistance when setting parameters.

 

3: Effective circulation area

 

The effective flow area refers to the product of the effective width and effective height of the electric field. In terms of equipment parameters, it generally corresponds to an actual flow area parameter, which is actually a relative concept to the effective dust collection area.

 

4: Dust driving speed

 

After dust electrolysis, it will quickly move towards some surfaces of the anode under the action of the electric field. It is an important parameter for comparing the performance of electrostatic precipitators and a key data in the design of dust removal equipment. The value of dust driving speed directly affects the efficiency of dust removal. The larger the value, the better the coordination between various components, and the faster the dust removal speed.

 

5: Ash hopper capacity

 
The capacity of the ash hopper cannot directly measure the working efficiency of the dust removal equipment. The large capacity of the ash hopper can reduce the time cost of replacement and cleaning, and increase the convenience of use.

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