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Dowex™ SBR-P ion exchange resin 25 L

Article : SBRP
  • Suitable for commercial water treatment systems  ?
  • Long term operation  ?
  • Organic matter pollution resistance  ?
  • Low cost water treatment  ?

Dowex™ SBRP is a strong base, gel-type anion exchange resin designed by Dow® Chemical Corporation (USA) for application in commercial systems of water demineralization, nitrates and heavy metals content reduction.

The resin’s high capacity provides excellent kinetic behavior. It exhibits good physical, chemical and thermal stability.

Key advantages

  • Excellent kinetic properties provide high regeneration efficiency

  • Porous beads make the resin resistant to organic contaminants

  • Quick establishment of ion exchange equilibrium

  • High efficiency of heavy metals' removal, as well as restoration of noble metals

  • Stable effective operation for more than 5 years

During the filtration through anion exchange resin unwanted ions are replaced with Cl- ions, content of nitrates, sulfates, phosphates decreases, resulting in a reduction of total content of salts in the water.

As the water passes through the anion resin, number of Cl- ions able to perform the exchange decreases, and a number of unwanted anions retained on the resin increases, so the anion resin is being exhausted. That is why it should be regenerated by passing the solution of sodium chloride through the layer of anion resin so that the exchange capacity of the resin is restored.

Technical characteristics of the media




Functional group

Dowex™ SBR-P

Strong base anion

Styrene-DVB, gel

Quaternary amine



Ionic form during delivery


Total exchange capacity, eq/L (min.)


Moisture content, %


Number of unfrocked beads, %


Beads density, g/ml


Bulk weight, g/L


Recommended operational parameter

  • Maximum operating temperature: 100 °C

  • pH's range: 0...14

  • Bed depth, min.: 800 mm

  • Flow rates:

Service/fast rinse: 5...50 m/h

Co-current regeneration/displacement rinse: 1...10 m/h

  • Total rinse water consumption: 3...6 bed volumes

  • Brine solution: 4...8% HCI

  • Salt consumption for regeneration: 100...150 g/L