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Zirconium phosphate (α-ZrP)

Zirconium phosphate (α-ZrP)

Zirconium phosphate is currently a high quality haemodialysis adsorbent material alternative with the commonality of a layered compound, high chemical stability, both ion exchange properties like ionic resins and shape selective a…

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Zirconium phosphate is currently a high quality haemodialysis adsorbent material alternative with the commonality of a layered compound, high chemical stability, both ion exchange properties like ionic resins and shape selective adsorption and catalytic properties like zeolites, high thermal stability and acid and base resistance.


 Features:

1. The zirconium phosphate itself can withstand temperatures up to 1300°, which improves the high temperature resistance of the product and has a significant synergistic flame retardant effect.

2. Enhances mechanical strength, hardness, impact resistance, abrasion and wear resistance and chemical stability of the product.

3. Enhances acid and alkali resistance, weathering resistance, corrosion resistance and oxidation resistance.

4. Imparts significant barrier properties to products, and silver-loaded zirconium phosphate also has significant antibacterial properties.

Applications in polymer engineering plastics and composites:

Zirconium phosphate added to ABS, PC, PVC, PS, AD, PP, PE, etc. 1. increases mechanical strength, toughness and tensile strength; 2. can be used at high temperatures and enhances flame retardancy; 3. has very good plasticizing ability; 4. enhances wear resistance; 5. resists oxidation and has very good durability; 6. has good compatibility with synthetic resins.



 Uses: Dialysis materials for medical use, optical field, electrical field, biological field, catalytic field, environmental protection, etc. Electrical: preparation of electrochemical devices, solid-phase gas sensor polymers, inorganic proton-conducting membrane materials, all-solid-phase fuel cells. Optics: molecular electronics, non-linear optical materials, artificial photosynthesis devices. Catalysis: catalysts. Environmental protection: radioactive nuclear waste, sewage treatment. Biological field: pharmaceutical preparations, immobilised proteins, carriers for biomolecules.

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