Molecular sieves, 4Å

beads,4-8 mesh

  • Product Code: 93164
  Alias:    Molecular sieve, 4 Å ;4A; 4A molecular sieve
  CAS:    70955-01-0
Molecular Weight: Molecular Formula: Na₁₂AlO₂₁₂SiO₂₁₂H₂O
EC Number: MDL Number: MFCD00131613
Melting Point: Boiling Point:
Density: Storage Condition: Room temperature, dry, dark
Product Description: Used primarily for drying gases and liquids, they effectively remove water and other small molecules due to their uniform pore size. Commonly applied in the petrochemical industry to purify hydrocarbon streams, ensuring the removal of moisture that could otherwise interfere with processes. In laboratories, they are essential for maintaining anhydrous conditions, particularly in reactions sensitive to water. They also play a crucial role in the packaging industry, protecting moisture-sensitive products like electronics, pharmaceuticals, and food. Additionally, they are utilized in natural gas processing to remove contaminants such as carbon dioxide and hydrogen sulfide, enhancing the quality of the gas. Their ability to selectively adsorb molecules makes them valuable in air separation processes, where they help in the production of nitrogen and oxygen.
Product Specification:
Test Specification
PARTICLE SIZE 4-8
APPEARANCE Beige beads
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
1000.000 10-20 days $37.57
+
-
5000.000 10-20 days $177.05
+
-
Molecular sieves, 4Å
Used primarily for drying gases and liquids, they effectively remove water and other small molecules due to their uniform pore size. Commonly applied in the petrochemical industry to purify hydrocarbon streams, ensuring the removal of moisture that could otherwise interfere with processes. In laboratories, they are essential for maintaining anhydrous conditions, particularly in reactions sensitive to water. They also play a crucial role in the packaging industry, protecting moisture-sensitive products like electronics, pharmaceuticals, and food. Additionally, they are utilized in natural gas processing to remove contaminants such as carbon dioxide and hydrogen sulfide, enhancing the quality of the gas. Their ability to selectively adsorb molecules makes them valuable in air separation processes, where they help in the production of nitrogen and oxygen.
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