AMBERPACK
SANDWICH POLISHING SYSTEM
AMBERPACK SANDWICH POLISHING SYSTEM
T
he AMBERPACK SANDWICH™ polishing system is a unique system that uses anion and cation resins that are separated by a nozzle plate and situated in a dual chamber configuration. Having the capacity to hold twice the amount of resin that a mixed bed system can, and with a much smaller footprint, this efficient polishing system can produce a high-quality fluid stream comparable a traditional mixed bed system, while occupying half the space. Ideal for treating low-salinity water, this polishing system also eliminates cross-contamination because the resins are not mixed, and the frequency of regeneration is greatly reduced.
Advantages:
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- Smaller footprint
- Efficient removal of sodium and silica
- Little water consumed during generation
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- Can use 2 or 3 chambers (cation, anion, cation for higher quality)
- Lower sodium leakages
- Can handle high variations in feedwater chemistry
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- Proven, long operating history
Disadvantages:
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- Chemical feed storage tanks and chemicals required
- Neutralization process required
- Must be filtered to low articles prior
PROJECT BRIEFS
Rare Earth Mine Recycles Brine Stream for Acid and Caustic Production with LANTERN Multi-Stage Brine Conditioning System
When a rare earth mine in North America sought to improve efficiency by recovering brine for acid and caustic production, it turned to LANTERN for a brine conditioning circuit to handle its complex blend of contaminants.
Oil Refinery Replaces Old Softening Equipment and Reduces Boiler Makeup Water Hardness with UPCORE™ Softening System
When an oil refinery in West Virginia needed to replace its softening equipment with a more efficient system, LANTERN helped the client install and run an effective UPCORE™ ion exchange system for minimal hardness and maximum results.
Specialty Metals Producer Optimizes Cadmium Recovery, Leveraging LANTERN Ion Exchange Technology for Wastewater Treatment
When a specialty metals producer in the Midwest needed an efficient solution for capturing cadmium from its wastewater streams, it looked to LANTERN for an ion exchange (IX) solution to maximize its resources.






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