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Turbo blower KAESER HP 4000 - 150 kW
*All pictures on this website are for illustration purpose only and may include optional accessories and components.

Turbo blower KAESER HP 4000 - 150 kW

Description

PillAerator turbo blowers from Kaeser Kompressoren are compact turbo compressors developed specifically with aeration applications in mind. Thanks to innovative magnetic bearings, the drive motor operates completely wear-free.

KAESER's turbo blowers are used wherever process air is required in the low pressure range – such as aerobic, biological wastewater treatment, fermentation and flotation applications.

Benefits:

  • High energy efficiency - The direct-drive, magnetic bearing rotor, coupled with an intelligent controller, ensures that PillAerator turbo blowers operate remarkably efficiently. Operating at exceptional levels of efficiency, these state-of-the-art machines can save up to 25% of the energy costs associated with conventional technologies.
  • Dependable and safe - A comprehensive range of sensors monitor the most important operating states such as pressure, speed and temperature. This ensures safe operation whilst guaranteeing a dependable supply of process air.
  • Maintenance-free drive motor - Contact-free magnetic bearings that require no lubrication guarantee a completely wear-free operation. As no oil and bearing changes are required, maintenance is restricted simply to replacing the air filters.
Technical features
Model Permissible working pressure Flow rate *) Complete system at working pressure (m³/min) Flow rate *) Complete system at working pressure (m³/h) Maximum sound pressure level **) dB(A) Weight (kg)
HP 4000 0.4-1.4 17-88 1,000-5,300 74 1815
MP 6000 0.3-1.2 22-113 1,300-6,800 75 1815
LP 8000 0.3-1.0 25-120 1,500-7,700 76 1815

 

*) Pressure differential and flow rate, complete system as per ISO 5389:2005: absolute inlet pressure 1 bar (a), cooling and air inlet temperature +20 °C

**) Sound pressure level as per ISO 2151 and basic standard ISO 9614-2, tolerance: ± 3 dB (A) – dependent upon operating point