TRILITE® SCR-B is a gel-type, strong acid cation ion exchange resin that operates on the principle of exchanging positively charged ions (like Ca²⁺, Mg²⁺, Fe²⁺) with sodium (Na⁺) or hydrogen (H⁺) ions. The resin is supplied typically in the sodium form, but it can also be regenerated to the hydrogen form for demineralization.

ION EXCHANGE RESIN
Brands: TRILITE
Model: TRILITE SCR-B
Origin: Korea
CleanTech Engineering Limited
TRILITE® SCR-B is widely used not only for water treatment like softening and demineralization but also for various special applications like lysine, starch, sugar, pharmaceuticals, and catalysis reaction.
| CHEMICAL & PHYSICAL DATA | |
|---|---|
| ITEMS | DATA |
| Appearance | Gel type beads |
| Matrix | Styrene - DVB |
| Functional Group | Sulfonic acid |
| Ionic Form | Na+ |
| Moisture Content | 43 - 50 % |
| Operating Temperature | 120 °C |
| Uniformity Coefficient | 1.60 min |
| Service Flow Rate | 5~50 m/h |
| Bed Depth(mm) | 1000 |
| Regenerant | HCI, H2SO4 |
| Concentration(%) | HCL(4•10), H2SO4(1•4) |
| Rinse Requirement(BV) | 4~10 m |
Key Features
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High exchange capacity for effective water softening and demineralization
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Stable across wide pH (0–14) and temperature ranges (up to 120 °C)
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Good physical strength for long service life and low bead breakage
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Uniform particle size distribution for optimized flow and backwash behavior
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Complies with ISO 9001 and 14001 standards for quality and environmental management
Benefits (ION Exchange Resin)
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High cation exchange efficiency & capacity
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High chemical & physical durability – low bead breakdown
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Wide pH range and high thermal stability (up to 120 °C)
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Uniform, reliable performance thanks to a low uniformity coefficient
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ISO 9001 & ISO 14001 manufacturing standards.
Operational Considerations
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Flow & bed design: Recommended bed depth ~1 m and flow rates from 5–50 m/h.
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Regeneration cycle: Use appropriate acid concentrations (e.g., HCl 4–10%) followed by rinsing of 4–10 bed volumes.
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Temperature & pH: Nominally stable across the full industrial pH range (0–14), up to 120 °C.
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Form: Ensure correct ionic form (Na⁺ vs H⁺) depending on application.
Best-fit Use Cases
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Large-scale water softening or demineralization
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Food and pharmaceutical sectors where ion purity is critical
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Catalytic processes requiring acidic exchange capability at high temperatures

Industrial Water Plant


