Alfa Laval's Centrifugal

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Alfa Laval centrifugal pumps are the benchmark for quality CIP and hygienic pumps. The standard models are built for general product transfer duties or pumps for evaporation, high-pressure, self-priming, CIP return, and high-purity duties. Designed to deliver optimum performance, these pumps ensure high efficiency, more uptime, gentle product handling, energy savings, easy maintenance, and low total cost of ownership.

KNOW MORE ABOUT ALFA LAVAL CENTRIFUGAL SERIES

Abaque Peristaltic Pump HD25 model

Design Advantages

  • Designed for CIP (cleaning-in-place)
  • Unique semi-open impeller with a special vane design
  • Low life-cycle costs and long service life.
  • Exceptional levels of hygiene with EHEDG and 3-A certification
  • External shaft seal prevents contact between product and components
  • Front-loading design, easy seal conversion

Available Options

We customise pumps according to your specific application. Get in touch with us today to get a complete list of your options.

Key Specifications

LKH

  • 13 sizes
  • Flow rates up to 500 m3/h
  • Differential pressures up to 1.1 MPa

LKH EVAP

  • 13 sizes
  • Capacities up to 500 m3/h
  • Pressure head up to 190 m

LKH MULTISTAGE

  • Capacities up to 70 m3/h
    Pressure head up to 190 m

LKH PRIME

  • Capacities of up to 110 m3/h
  • Pressure head up to 115 m

Applications

  • Bacterial and fungus processing
  • Beverage processing
  • Biofuel
  • Biotechnology
  • Blood Plasma processing
  • Dairy processing
  • Food processing
  • Home care
  • Personal care
  • Pharmaceutical
  • Plant and animal extract production

OUR RANGE OF AVAILABLE CENTRIFUGAL PUMPS

Abaque Peristaltic Hose Pump HD100 model

LKH

Abaque Peristaltic Hose Pump HD 10 or HD20 model

LKH EVAP

Abaque Peristaltic Hose Pump HD 10 or HD20 model

LKH MULTISTAGE

Abaque Peristaltic Hose Pump HD 10 or HD20 model

LKH PRIME

PRINCIPLE OF OPERATION

In Alfa Laval centrifugal pumps and multi-stage designs, fluid first enters through the impeller eye. It is then forced into a circular movement by rotating impeller vanes. These rotating impeller vanes transfer mechanical work to the fluid in the impeller channel. The fluid is then pressed out of the impeller by formed centrifugal force and finally leaves the impeller channel with increased pressure and velocity. The velocity of the fluid is also partly converted into pressure by the pump casing before it leaves the pump through the outlet.

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