Crystal Right Media

£280.00£300.00 Incl. VAT

Crystal Right media is popular for private water supplies thanks to its ability to remove iron, manganese and hardness. The media can also be used to reduce ammonia and in the case of CR100 – to balance the pH of acidic water. Suitable for use in backwashing systems, the media is designed to be regenerated using a brine solution much like with an ion-exchange water softener. Performing the job of multiple treatment stages from a single media bed.

Product Features
  • Effectively treats water hardness, iron and manganese
  • Regenerable ion exchange resin for a long service life
  • Lasts up to 20 years with pre-treatment
  • Can reduce ammonia and balance pH
CR100 Versus CR200
Crystal Right CR100 has a high capacity for reducing iron and manganese but a lower capacity for hardness – recommended for water with a pH level between 6-7. Crystal Right CR200 has a high capacity for reducing iron and manganese alongside a comparatively higher capacity for hardness caused by calcium and magnesium – recommended for water with a pH between 7-11.
Help & Advice
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Crystal Right Media
Crystal Right Media
£280.00£300.00 Incl. VAT
SKU: CR100/CR200 Category: Tag:
Crystal Right Media
Crystal Right Media
£280.00£300.00 Incl. VAT

CRYSTAL RIGHT MEDIA

CR100 & CR200 Formulas

Crystal Right media is a synthetic Zeolite manufactured in the USA for the treatment of non-oxidised iron and manganese in water from private supplies. The media can be sanitised using chlorine to tackle the potential build-up of bacterial iron (where identified in a water analysis). Compared with other iron and manganese treatment media Crystal Right CR100/CR200 is relatively light, meaning its backwash flow rate is lower than the service flow rate.

CR100 Media Usage Parameters (Feed Requirements):
Minimal hardness (50mg/L); Minimum TDS > 80 mg/L
Maximum content of iron and manganese: 15 mg / L
Hydrogen sulphide (H2S): Less than 0.5ppm
Aluminium should not be present in the water
Free from sediment and insoluble ferric iron
Capacity CR100: 30g/L resin
pH between 5.7 – 14

CR200 Media Usage Parameters (Feed Requirements):
Minimal hardness (50mg/L); Minimum TDS > 80 mg/L
Maximum content of iron and manganese: 15 mg/L
Hydrogen sulphide (H2S): Less than 0.5ppm
Aluminium should not be present in the water
Free from sediment and insoluble ferric iron
Capacity CR200: 40g/L resin
pH between 7 – 14

For the removal of Ammonia (NH3) CR100 is to be used

How Often Do I Need To Replace Crystal Right Media?
When used appropriately the media has a lifetime 20+ years, with some systems running in excess of 35 years with the original media. To ensure the media is backwashed correctly ensure the brine tank is kept topped up with salt at all times.

Why Choose Crystal Right Media?

  • Excellent for customers with private water supplies
  • CR100 suitable for water with a pH as low as 5.7
  • Two formulas to choose from (CR100 / CR200)
  • Can be sanitised using chlorine
  • Filters non-dissolved particles

Compatible Products:
Crystal Right Evolve Systems

Product Resources:
Crystal Right CR100 Data Sheet →
Crystal Right CR200 Data Sheet →

Water Treatment Products

We’re pleased to offer a comprehensive range of water treatment products, from replacement media to complete systems. Can’t find exactly what you’re looking for? Get in touch with a member of our team today.

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Water Treatment Product Range

Additional Information

Suitable For: No selection

Crystal Right Systems (CR100/CR200)
Iron & Manganese Removal

Volume: No selection

Supplied In 22.7kg Bags (1 Cuft / 28.3L)

pH Range: No selection

CR100 6-7
CR200 7-11

Max Temperature: No selection

2-38⁰C

Backwash Flow Rate: No selection

CR100 8-10 GPM/Sq. Ft.
CR200 6-8 GPM/Sq. Ft.

Capacity Per Cuft: No selection

CR100 Hardness as CaCo3: Up To 17,000 Grains, 10 PPM of Iron or Manganese = 1 GPG Hardness, 8 PPM of Sodium—1 GPG Hardness
CR200 Hardness as CaCo3: Up To 22,000 Grains, 10 PPM of Iron or Manganese = 1 GPG Hardness, 8 PPM of Sodium—1 GPG Hardness

Certification: No selection

NSF/ANSI 61