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Zeolite Molecular Sieves
Zeolite Molecular Sieves
Zeolite Molecular Sieves
Zeolite Molecular Sieves

Zeolite Molecular Sieves

MOQ : 10 Pieces

Zeolite Molecular Sieves Specification

  • Storage Condition
  • Keep in dry, airtight container
  • Use Form
  • Beads, Pellets, Granules
  • Particle Size
  • 1.6-2.5 mm (typical range)
  • Bulk Density
  • 0.65-0.85 g/cm3
  • Color
  • White/Yellow/Beige
  • Pore Size
  • 3A, 4A, 5A, 13X (available variants)
  • Regenerable
  • Yes, heat or vacuum regeneration
  • Moisture Adsorption
  • 20-25% (by weight)
  • Type
  • Synthetic Aluminosilicate
  • Product
  • Zeolite Molecular Sieves
  • Shelf Life
  • 3 years (if unopened and properly stored)
  • Application
  • Gas drying, air separation, hydrocarbon processing, insulating glass, oxygen generation, solvent drying
  • Shape
  • Spherical Beads
  • Chemical Stability
  • Excellent
  • Purity
  • >99% (based on manufacturer)
 

Zeolite Molecular Sieves Trade Information

  • Minimum Order Quantity
  • 10 Pieces
  • Payment Terms
  • Cash in Advance (CID)
  • Supply Ability
  • 100 Pieces Per Month
  • Delivery Time
  • 7 Days
  • Main Domestic Market
  • All India
 

About Zeolite Molecular Sieves



Discover Heroic efficiency and preeminent performance with our Zeolite Molecular Sieves. Engineered as synthetic aluminosilicate beads in white, yellow, or beige-choose your perfect fit with pore sizes 3A, 4A, 5A, or 13X. These spheres (1.6-2.5 mm) deliver a high moisture adsorption of 20-25% by weight and boast superior chemical stability, purity over 99%, and robust regenerability by heat or vacuum. Rapidly Add to Cart now to seize this Hot Deal with exclusive Discount pricing! Manufactured in India for optimal gas drying, air separation, hydrocarbon processing, and more.

Versatile Applications and Exceptional Advantages

Zeolite Molecular Sieves are perfect for gas drying, air separation, hydrocarbon processing, and oxygen generation. Their versatility extends to insulating glass, solvent drying, and more, making them suitable for diverse industrial uses. With superior moisture adsorption, excellent chemical stability, and high purity, these sieves outperform traditional drying agents. Their regenerable nature ensures cost-effectiveness and sustainability, making them the go-to solution for challenging separation and purification applications.


Payment Terms, Shipping, and Domestic Availability

Stock Ready and available for prompt shipment, our Zeolite Molecular Sieves can be dispatched swiftly from major Indian FOB ports. Flexible payment terms are accommodated, keeping your expenditure streamlined and secure. We serve the main domestic market across India, ensuring businesses receive timely deliveries for every order. Trust our reliable supply chain to meet your operational needs efficiently, helping you maximize output with minimal procurement delays.


FAQ's of Zeolite Molecular Sieves:


Q: How can Zeolite Molecular Sieves be regenerated after use?

A: Zeolite Molecular Sieves can be regenerated by applying heat or vacuum. This process removes the adsorbed moisture and restores their adsorption capacity for repeated use.

Q: What are the common applications for these molecular sieves?

A: They are widely used in gas drying, air separation, hydrocarbon processing, insulating glass production, oxygen generation, and solvent drying due to their high moisture adsorption and stability.

Q: When should Zeolite Molecular Sieves be replaced?

A: Replacement is recommended when the sieves show reduced adsorption capacity or reach their 3-year shelf life, especially if the packaging has been opened or improperly stored.

Q: Where should Zeolite Molecular Sieves be stored to maintain purity?

A: Store them in a dry, airtight container at ambient conditions to prevent premature moisture adsorption and maintain their purity and effectiveness.

Q: What makes these molecular sieves a better choice compared to other drying agents?

A: Their excellent chemical stability, regenerability, high purity, and superior moisture adsorption capacity make them more efficient and cost-effective for demanding industrial applications.