Progressive Cavity Pump in Sewage and Sludge Pumping

Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping
Progressive Cavity Pump in Sewage and Sludge Pumping

Progressive cavity pumps are ideal pumping solutions for sewage and sludge transmission operations. These pumps are commonly applied in environmental protection jobs thanks to their high transport capacity even with mediums with significant solid content and high viscosity. Advantages that lend the pump an edge over similar product for every day applications such as sewage and sludge treatment. Subtor progressive cavity pumps are designed to handle municipal sewage, industrial sewage, dilute sludge, activated sludge, dewatered sludge, flocculants, additives, and many other mediums with ease. The monoblock progressive cavity pump design is used to transport mediums with a solid content less than 5%, the metering progressive cavity pump is designed for flocculants and additives, and the hopper progressive cavity pump is intended for the transport of dewatered sludge with solid content between 18-28%.

Sewage treatment pumping process flow in environmental protection applications
Recommended model

Pump type:
Recommended medium: flocculants
Rate of flow: 1.5M3/H
Pressure: 2Bar
Motor power: 1.5KW

Pump type:
Recommended medium: sludge
Rate of flow: 11-20M3/H
Pressure: 6Bar
Motor power: 5.5KW

Pump type:
Recommended medium: sewage
Rate of flow: 25.2M3/H
Pressure: 2Bar
Motor power: 5.5KW

Pump type:
Recommended medium: sewage
Rate of flow: 67M3/H
Pressure: 4Bar
Motor power: 22KW

Pump type:
Recommended medium: PAM
Rate of flow: 0.6M3/H
Pressure: 6Bar
Motor power: 0.25KW

Pump type:
Recommended medium: dewatered sludge
Rate of flow: 25M3/H
Pressure: 6Bar
Motor power: 30KW

Pump type:
Recommended medium: PAM
Rate of flow: 1M3/H
Pressure: 2Bar
Motor power: 0.75KW

Pump type:
Recommended medium: PAM polyacrylamide
Rate of flow: 0.6m3/h
Pressure: 4Bar
Reduction motor: 0.75KW

Pump type:
Recommended medium: active carbon solution
Rate of flow: 4m3/h
Pressure: 4Bar
Reduction motor: 2.2KW

Pump type:
Recommended medium: PAC
Rate of flow: 1.1m3/h
Pressure: 4Bar
Reduction motor: 0.75KW

Pump type:
Recommended medium: sewage
Rate of flow: 4m3/h
Pressure: 3Bar
Reduction motor: 3KW

Pump type:
Recommended medium: sludge
Rate of flow: 10m3/h
Pressure: 24Bar
Reduction motor: 22KW

Pump type:
Recommended medium: dewatered sludge
Rate of flow: 6m3/h
Pressure: 6Bar
Reduction motor: 11KW

Pump type:
Recommended medium: dewatered sludge
Rate of flow: 5m3/h
Pressure: 20Bar
Reduction motor: 22KW

Pump type:
Recommended medium: dewatered sludge
Rate of flow: 10m3/h
Pressure: 14Bar
Reduction motor: 22KW

Pump type:
Recommended medium: sludge
Rate of flow: 0.5m3/h
Pressure: 10Bar
Reduction motor: 4KW

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