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Advanced Particulate Emission Control
The ISOTEX Electrostatic Precipitator (ESP) is an advanced air pollution control system designed to efficiently capture and remove fine particulate matter and aerosols from combustion exhaust gases. It utilizes electrostatic charging and collection principles to achieve high-efficiency filtration, making it an essential tool for industries seeking to comply with stringent environmental regulations.
Core Technology
The ISOTEX ESP follows a four-stage electrostatic process to achieve maximum particulate removal from industrial exhaust gases.
π¨Β GAS IONISATION
Flue gas enters the ESP chamber and passes through high-voltage corona discharge electrodes, creating a strong ionisation field.
β‘Β PARTICLE CHARGING
Gas ions attach to suspended dust and aerosol particles, giving each particle a strong negative electrostatic charge.
π΅Β ELECTROSTATIC COLLECTION
Charged particles are attracted to and deposited on positively charged collector plates with sub-micron capture precision.
πΒ DUST RAPPING & REMOVAL
MIGI-enhanced mechanical rapping dislodges the collected dust cake from plates, which falls into the hopper for disposal.
Engineered for performance, compliance, and long-term operational reliability across demanding industrial environments.
MIGI (Magneto-Induced Gravity Integration) is ISOTEX’s proprietary enhancement to conventional electrostatic precipitator design β combining the principles of magnetism and gravity to dramatically increase dust collection efficiency.
MAGNETIC AMPLIFICATION β’ GRAVITY-ASSISTED SEPARATION β’ ENHANCED RAPPING β’ PROPRIETARY DESIGNΒ
Magnetically Enhanced Collection Fields
Increase the electrostatic attraction force on charged particles, improving migration velocity toward collector plates β especially effective for high-resistivity dust.
Gravity-Assisted Rapping Mechanism
Ensures effective dislodging of accumulated dust cake, preventing re-entrainment and maintaining consistent plate cleanliness over extended operational cycles.
Combined Effect
Results in measurably superior collection efficiency compared to conventional ESP configurations β while maintaining energy-efficient, low-cost operation.
Our engineering team responds within 24 hours. Share your capacity requirements and fuel preference. We’ll engineer the right solution.