purolite Equipment

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Purolite - Model C100x16MBH - Demineralization - Mixed Beds

by Purolite Corporation     based in Bala Cynwyd, PENNSYLVANIA (USA)

Purolite C100x16MBH is a premium high purity grade of conventional gel poly(styrene sulphonate) cation-exchange resin. Its high bead integrity, excellent chemical and physical stability, good resistance to oxidation and specially tailored particle size play a large part in its successful employment in the hydrogen cycle both in co-flow and ...

Purolite - Model C100x10EMB - Demineralization - Mixed Bed Grade - Potable Water

by Purolite Corporation     based in Bala Cynwyd, PENNSYLVANIA (USA)

Purolite C100x10EMB is a gel type poly(styrene sulphonate) cation exchange resin that is suitable for treatment of potable water.Purolite C100x10EMB has high resistance to bead fracture both from attrition and osmotic shock.It has good kinetics, high operating capacity and high selectivity for sodium and when efficiently regenerated produces ...

Purolite - Model OL100 - Removal of Oil from Condensate

by Purolite Corporation     based in Bala Cynwyd, PENNSYLVANIA (USA)

Purolite OL100 is a premium grade oleophilic resin which acts as a coalescing agent designed for the removal of oil from condensate. This specially treated ion exchange resin is a copolymer of styrene and divinylbenzene which has a high capacity for oil removal and excellent kinetics. Purolite OL100 has very good mechanical strength with bead ...

Purolite - Model C124SH - Sugar Inversion

by Purolite Corporation     based in Bala Cynwyd, PENNSYLVANIA (USA)

Purolite C124SH is a premium grade of conventional gel poly(styrene sulphonate) cation-exchange resin of exceptionally high purity, specially manufactured for use in hydrolysis of sucrose.

Purolite - Model C100EFM - Softening - Fine Mesh Grading Na+ form - Potable Use

by Purolite Corporation     based in Bala Cynwyd, PENNSYLVANIA (USA)

Higher Operating Capacities, Minimal Salt Requirements, Faster Kinetics, More Effective Iron Removal, Shallower Bed Requirements, Less Rinse Water Needed

Purolite - Model C100 - Softening and Demineralization - supplied in Na+ Form

by Purolite Corporation     based in Bala Cynwyd, PENNSYLVANIA (USA)

Purolite C100 is supplied in the sodium form and it is primarily used in coflow regenerated industrial softening or when regenerated with mineral acids (hydrochloric or sulfuric acids) as the cation resin in demineralization plants used in industrial water treatment. This premium gel product has been optimized to give a high working capacity and ...

Purolite - Model C160MBH - Demineralization - Mixed Bed

by Purolite Corporation     based in Bala Cynwyd, PENNSYLVANIA (USA)

Purolite C160MBH is a macroporous poly(styrene sulphonate) cation-exchange resin with excellent resistance to both osmotic and thermal shock designed specifically as the cation component in mixed beds both for make-up and polishing applications. It is designed for use especially where the cation load is high and the main requirement is to maximise ...

Purolite - Model A400S - Sugar Applications

by Purolite Corporation     based in Bala Cynwyd, PENNSYLVANIA (USA)

Basic Features: Application - Sugar Applications, Polymer Structure - Gel polystyrene crosslinked with divinylbenzene, Appearance - Spherical Beads, Functional Group - Type 1 Quaternary Ammonium, Ionic Form as Shipped - Cl-

Purolite - Model C100S - Demineralization of Sugar Solutions - Supplied in Na+ Form

by Purolite Corporation     based in Bala Cynwyd, PENNSYLVANIA (USA)

Basic Features: Application - Demineralization of Sugar Solutions - supplied in Na+ form, Polymer Structure - Gel polystyrene crosslinked with DVB, Appearance - Amber, clear spherical beads, Functional Group - Sulfonic acid, Ionic Form as Shipped - Na+

Purolite - Model SST80DL - Shallow Shell Technology Resin for Regenerant and Rinse Savings - Na+ Form

by Purolite Corporation     based in Bala Cynwyd, PENNSYLVANIA (USA)

The Purolite SST family of high efficiency softening resins is based on shallow shell technology. Simply stated, the shorter the diffusion path, the more rapid the softening exchange occurs. This is particularly important during regeneration. Reducing the depth of penetration required to cleanse the resin allows for a more complete regeneration ...

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