• C480 ESP Collecting Plate
  • C480 ESP Collecting Plate
  • C480 ESP Collecting Plate
  • C480 ESP Collecting Plate
  • C480 ESP Collecting Plate
  • C480 ESP Collecting Plate
C480 ESP Collecting Plate
C480 ESP Collecting Plate
C480 ESP Collecting Plate
C480 ESP Collecting Plate
C480 ESP Collecting Plate
C480 ESP Collecting Plate
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C480 ESP Collecting Plate

The performance of the anode plate of an electrostatic precipitator can directly affect the dust removal efficiency and operational stability of the precipitator.

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  • The anode plate of electrostatic precipitator is the core component of electrostatic precipitator, and its performance directly affects the dust removal efficiency and operational stability of the precipitator. The following is a detailed introduction about the anode plate of electrostatic precipitator:

    Definition and Working Principle

    The anode plate of an electrostatic precipitator is an important component of the electrostatic precipitator, which forms a high-voltage electric field between the cathode wire connected to a high-voltage DC power supply and the grounded anode plate. Under the action of an electric field, dust particles in the gas undergo processes such as corona discharge, particle charging, dust particle collection, and dust removal, ultimately achieving the goal of dust removal.

    Structure and Characteristics

    Structure: The anode plate is usually made of a metal plate with a larger surface area to more effectively collect charged dust particles. At the same time, the anode plate is also equipped with a vibration device for regularly cleaning the dust accumulated on the plate.

    Features: Good performance in preventing dust from flying again, ensuring dust removal effect.

    High mechanical strength and stiffness, capable of withstanding significant pressure and vibration.

    Good thermal stability, not easily deformed, ensuring long-term stable operation.

    Good electrical performance, uniform distribution of plate current density and electric field strength near the electrode plate, improving dust removal efficiency.

    Good corona performance, less prone to partial discharge and spark discharge, ensuring equipment safety.

    Acceptance criteria

    The acceptance criteria for the anode plate of an electrostatic precipitator mainly include the following aspects:

    Flatness: The anode plate should have good flatness to ensure the uniformity of the electric field distribution.

    Strength and stiffness: The anode plate should have sufficient strength and stiffness to withstand pressure and vibration during operation.

    Corrosion resistance: The anode plate should have good corrosion resistance to extend its service life.

    Precautions for use

    Before use, check whether the anode plate and its connecting components are intact to ensure the normal operation of the equipment.

    During operation, the dust accumulation on the anode plate should be regularly checked and cleaned up in a timely manner to ensure dust removal effectiveness.

    When cleaning up accumulated dust, attention should be paid to avoiding damaging the surface of the anode plate to avoid affecting its performance.

    When the equipment is not in use for a long time, the anode plate should be treated with rust prevention to prevent corrosion.

    Summary

    The anode plate of an electrostatic precipitator is one of the key components, and its performance directly affects the dust removal efficiency and operational stability of the precipitator. Therefore, relevant regulations and standards should be strictly followed during use to ensure the performance and service life of the anode plate. At the same time, with the continuous improvement of environmental protection requirements and technological advancements, the anode plates of electrostatic precipitators are also constantly being updated and replaced to adapt to higher dust removal requirements and more complex working conditions.

    Production scenario

C480 ESP Collecting Plate

The performance of the anode plate of an electrostatic precipitator can directly affect the dust removal efficiency and operational stability of the precipitator.

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