DuPont Dow Resin – AmberLite MB6113 H/OH Ion Exchange Resin

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Description

Dyed Mixture of Gaussian, Gel, Strong Acid Cation and Strong Base Anion Exchange Resins for Industrial Demineralization Applications

AmberLite MB6113 H/OH Ion Exchange Resin is a dyed mixture of strong acid cation and strong base anion exchange resins. It is fully regenerated, ready-to-use, nonregenerable, pre-mixed resin developed for the production of high-purity water. The premixed resin also allows for faster initial rinse-up prior to service, which minimizes rinse wastewater volume at start-up.

AmberLite MB6113 H/OH is specifically designed for a full demineralization of water. A color indicator enables the visualization of the resin exhaustion point, which allows the production of demineralized water without a conductivity meter to detect the service endpoint.
After exhaustion, AmberLite MB6113 H/OH cannot be regenerated.

AmberLite MB6113 H/OH is the reference mixed bed for the production of demineralized water in small cartridge systems. The resin mixture is prepared from high quality components and the proprietary manufacturing process ensures a homogeneous blue-green color consistently from batch to batch.

In operation, the resin provides a stable, high-quality demineralized water for laboratories, steam ironing, or battery fill-up. The sharp visible color change from regenerated (blue-green) to exhausted (amber-yellow) makes AmberLite MB6113 H/OH the product of choice for small cartridge deionization
systems.

 

 

Specifications

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Specifications

Manufacturer DuPont - Dow
Series AmberLite Ion Exchange Resin
Model Number MB6113 H/OH
Part Number MB6113 H/OH
Description Typical Properties -- Cation Resin -- Anion Resin
Physical Properties
Copolymer Styrene-divinylbenzene Styrene-divinylbenzene
Matrix Gel Gel
Type Strong acid cation Strong base anion, Type I
Functional Group Sulfonic acid Trimethylammonium
Physical Form translucent, spherical beads Translucent, spherical beads
Blue-green (as delivered) to Amber-yellow (exhausted)
Volume Ratio 37-46% 63-54%
Chemical Properties
Ionic Form as Shipped H+ OH-
Particle Size
< 300 μm ≤ 90%
Density
Shipping Weight 700 g/L

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