Electrostatic precipitator
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Electrostatic precipitators are widely used in overseas industrial scenarios such as power, metallurgy, and chemical industry due to their advantages of efficient dust collection, low resistance, and adaptability to large flue gas volumes.
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In the chemical production scenario, electrostatic precipitators need to handle flue gas containing corrosive media such as SO ₂, Cl ⁻, acid alkali mist, etc. If anti-corrosion measures are not in place, electrode plates, shells, and insulation components are prone to rust and perforation, and the equipment life will be shortened from the conventional 8-10 years to 3-5 years, while causing faults such as electric field short circuits and sudden drops in dust removal efficiency.
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Practical tips for cleaning and extending the lifespan of electrodes in electrostatic precipitators
In industrial dust removal systems, the electrodes of electrostatic precipitators are the core working components, and their surface cleanliness directly affects the dust removal efficiency and equipment life.
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Using electrostatic precipitators in car factories: core advantages and practical precautions
In the welding, painting, polishing and other processes of automobile production, a large amount of metal fine powder, paint mist particles and other pollutants are generated. Electrostatic precipitators have become a commonly used choice for dust control in car factories due to their technical characteristics.
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Electrode cleaning of electrostatic precipitator: practical steps to extend its lifespan
The electrode of electrostatic precipitator is the core component of flue gas dust removal. During long-term operation, dust will adhere and form nodules on the surface of the electrode, resulting in uneven electric field and decreased dust removal efficiency. In severe cases, it can cause electrode corrosion or short circuit, shortening the overall service life of the equipment.
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In industrial flue gas treatment, a single dust removal equipment often fails to meet the multiple requirements of "high temperature tolerance, coarse dust treatment, and fine powder capture". Electrostatic precipitators have limited efficiency in capturing sub micron fine powder, and bag filters are prone to filter bag blockage or aging under high dust and high temperature conditions.
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