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TempleModel Rust-Buster RBF -Flocking and Catalytic Filter System

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Rust-Buster RBF Oxidising, Flocking and Catalytic Filter System: Removes rust, soluble iron, manganese, hydrogen sulphide and reduces arsenic in bore and well waters. Disinfects water and kills bacteria. For iron levels up to 150 mg/l and manganese to 10 mg/l. Uses clarification and catalytic multi media filtration. Produces lowest waste water volume of any high iron treatment system. Treats bore water by a settling process reducing solids before filtration making the system robust for treating heavy loadings of rust.

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  • Flow range (LPM): 18 - 500
  • pH (Units): 5 - 9
  • Turbidity (clarity) (NTU): 20 - 1000; no limit
  • Iron level - max (mg/L): 20 - 250
  • Manganese - max (mg/L): 0 - 10
  • Hardness - Total as CaCO3 (mg/L): 30 - 2,500; little reduction, see NB 2
  • Sodium (mg/L): No limit; however not reduced NB 3
  • Chloride (mg/L): No limit; however not reduced NB 4
  • Sulphate (mg/L): 0 - 250
  • Nitrate as nitrogen (mg/L): No limit; however not reduced NB 5
  • Silica (reactive) (mg/L): No limit; however not reduced NB 6
  • Boron (mg/L): No limit; however not reduced NB 7
  • Arsenic (mg/L): 0 - 0.10 mg/L; see NB 8 for reduction options
  • Colour (TCU): 0 - 30; greater than 30 see NB 9
  • Total organic carbon (mg/L): 0 - 20
  • Tannin (mg/L): 0 - 5
  • Heavy metals - Cu, Pb, Cr, Ni, Hg (mg/L): 0 - 1; see NB 16 for reduction options
  • Gases/methane (mg/L): No limit
  • Chlorine compounds (mg/L): 0 - 10
  • Organics -THM, pesticides (mg/L): See (18) for reduction options
  • Fluoride (mg/L): No limit; see NB 14
  • Total suspended solids (mg/L): 0 - 500
  • Oil (mg/L): Nil
  • E. coli (cfu/100ml): 0 - 1,000
  • Total Plate Count (cfu/100ml): 0 - 10,000
  • Iron Bacteria (cfu/100ml): 0 - 1,000
  • Treatment pump (Power factor): 0.10 kW per M3/hr
  • Backwash pump (Power factor): 0.25 kW per M3/hr
  • Air pressure supply (Required?): Included in treatment system
  • Electricity cost (Dollars per M3): $0.04 per M3
  • Chemical cost (Dollars per M3): On application based on water chemistry