HORECA T Series duct type electrostatic precipitators remove polluted air by absorbing particles such as grease, steam, dust and smoke formed in the air with the principle of electrostatic precipitation.
The air absorbed by the exhaust fan passes through a coarse particulate holder metal filter of the HORECA T Series series duct electrostatic precipitator, and is removed from the large particles. 0.3μm particles pass through the high voltage electric field area. (ionizer) where particles are positive (+) loaded with electric charge. These positively charged particles pass through equally spaced parallel stacked collection plates. These surfaces are negative (-) and positive (+) respectively.
Positive charged surfaces push these particles, negative loaded surfaces attract and collect these particles. The grease accumulated in the filters fill the grease pan. Filter and grease pan are cleaned periodically.
Key benefits
- Reduced fire risk
- Minimum odour emission
- Minimum yield loss
- Maximum heat recovery
- Low maintenance costs
- Minimum energy consumption
HORECA T Series duct type electrostatic precipitators remove polluted air by absorbing particles such as grease, steam, dust and smoke formed in the air with the principle of electrostatic precipitation.
The air absorbed by the exhaust fan passes through a coarse particulate holder metal filter of the HORECA T Series series duct electrostatic precipitator, and is removed from the large particles. 0.3μm particles pass through the high voltage electric field area. (ionizer) where particles are positive (+) loaded with electric charge. These positively charged particles pass through equally spaced parallel stacked collection plates. These surfaces are negative (-) and positive (+) respectively.
Positive charged surfaces push these particles, negative loaded surfaces attract and collect these particles. The grease accumulated in the filters fill the grease pan. Filter and grease pan are cleaned periodically.
Key benefits
- Reduced fire risk
- Minimum odour emission
- Minimum yield loss
- Maximum heat recovery
- Low maintenance costs
- Minimum energy consumption