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SIX slurry pumps

With their simple and robust design, SIX positive displacement slurry pumps are capable of pumping even the most abrasive slurries while working in high operating ranges.

SIX Slurry Pump

Description

With their simple and robust design SIX positive displacement slurry pumps are capable of pumping even the most abrasive slurries while working in high operating ranges (up to 200 m3/h and up to 16 bar). They are designed specifically for filter press fillings and abrasive slurry pumping processes

SIX slurry pumps are easier to maintain than other solutions in the market as they have few moving parts and even those are easily accessible. Operation is simplified by the fact that the pumps have a hydraulic drive based on load sensing technology. This enables the pump to self-regulate in changing process conditions, both while pumping slurry and also while filling with filter presses.

The positive displacement working principle of SIX slurry pump means that slurry characteristics remain unchanged while it is being pumped to the filter press. This is fundamental in processes that require slurry to be conditioned before it is filtered, avoiding high shear of flocculated or sensible slurries.

Characteristics

A slurry pump with a robust, reliable design and a small number of moving parts.

Hydraulic drive with load-sensing technology.

Double action with alternating working chambers.

Larger pressure discs to improve slurry pump performance.

High strength elastomer flap type check valves pumping systems.

Complete version (SIX) including the basic pump, intake and pressure dampeners and electronic control and regulation cabinet in a single skid mounted unit.

A slurry pump with different surface options in the areas in contact with the fluid.

Benefits

  • Longer useful lifetime.
  • Less wear in parts in contact with the fluid.
  • Easy maintenance.
  • The equipment can self-regulate to ensure optimal pressures and flow rates with no need for ancillary electronic equipment.
  • Optimal slurry pump energy consumption.

Auxiliary Components

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