BIODEC™ C

ADVANCED WASTEWATER DECANTERS

C series is our newest addition to the BIODEC™ family of decanters. This composite model has obvious advantages over its stainless-steel counterpart, i.e., total corrosion resistance, lower shipping costs and ease of installation due to its low weight.

Wastewater Decanter
The BIODEC™ C series is a circular decanter operating on the same air float principle as the S series and achieves nearly constant flow using a submerged weir design. The series also features our unique solids excluding arrangement and emergency overflow functions. Installed at the tank edge, the C series is simple to maintain and relocate if required. Modular in design, each unit has a maximum flow rate of 400 m3/h and can be infinitely expanded to accommodate higher flows to serve any size treatment facility. By installing multiple decanters, clients can take advantage of our algorithm to precisely set the discharge flow rates and utilize the full decant cycle times. Serial production guarantees consistent quality and quick delivery.

ADVANTAGES

  • Constant flow – single unit allows constant flow from 50 – 400 m3/h
  • Modular design – Multiple units operate in cohesion to deliver unlimited capacity
  • Algorithm driven Intelligent decanter to suit Process Conditions
  • Utilize full decant cycle times rather than pre-set value
  • Composite contruction – 20+ years life span
  • Submerged weir design – eradicate sludge suction
  • Emergency overflow – built in auto-stop mechanism
  • Scum/solids exclusion – air-cushion design guarantees floatables exclusion
  • Simple installation – Lightweight, flanged construction for quick and easy installation
  • Low weight and packing volume – low transport and handling costs
Specifications Table
Specifications Unit BIODEC™ C
Max decanting flow Qv [m3/h] 400
Decanting flow at H = 1 m Qv [m3/h] 280
Effluent pipe ØD DN 200
Three way ball valve – GF+ [size] DN 25
Electric actuator – GF+ Type EA25
Compressed air needs [liter/min] 300
Pressure of compressed air [bar] 0.03