SEPLITE® CT1310W uniform particle strong acid polymeric catalyst resin for producing BPA of unsurpassed color and purity

SEPLITE® CT1310W uniform particle strong acid polymeric catalyst resin for producing BPA of unsurpassed color and purity

Catalog Number:
CR02110737SUN
Mfr. No.:
CT1310W
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    • Overview
      • SEPLITE® CT1310W is an uniform particle size, gel type strong acid polymeric resin based on the matrix of styrene-DVB copolymers, specially designed as a catalyst for producing BPA of unsurpassed color and purity.
        It highly reduced pressure drop and achieved higher productivity than conventional catalyst.

        Please contact us at for specific academic pricing.

    • Properties
      • Categories
        Uniform particle size, gel type strong acid polymeric resin based on the matrix of styrene-DVB copolymers
        Other Properties
        Ionic form: H+
        Functional group: Sulfonic acid
        Matrix: Crosslinked polystyrene
        Physical appearance: opaque beads
        Total Capacity H+: ≥1.35 eq/L≥4.8 mmol/g
        Water retention %: 62-68
        Shipping weight g/ml: 0.70-0.80
        Density g/ml: 1.10-1.20
        Harmonic mean size mm: 0.70-0.80
        Whole beads count %: ≥95
        Uniformity coefficient: ≤1.15
        Shrinkage: Water to phenol 48%
        Maximum Operating temperature °C: 130
        Recommended storage temperature °C: Room temperature
        Note
        Resins should be stored in sealed containers or bags where temperature was above 0°C in dry conditions without exposure to direct sunlight.
        Do not mix ion exchange resin with strong oxidizing agents; otherwise it will cause violent reactions.
        In case of eyes contact with resins, rinse eyes immediately with plenty of water, and consult a specialist. Material and samples must be disposed according to local regulations.
        Dry polymers will expand when become wet and may cause an exothermic reaction. Spilled materials may be slippery.
    • Applications
      • Application
        Bisphenol-A Synthesis

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