Molecular sieves, 4Å

40-60 mesh, dedicated for gas phase and liquid chromatography columns

  • Product Code: 93160
  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: Molecular sieves, 4Å, are widely used for drying gases and liquids, particularly in industrial and laboratory settings. They are highly effective in removing water molecules from air, natural gas, and refrigerants, ensuring the purity and stability of these substances. In the petrochemical industry, they are employed to separate and purify hydrocarbons, such as removing water from ethanol or other solvents. Additionally, they play a crucial role in the packaging industry, where they are used to maintain a moisture-free environment for sensitive products like electronics, pharmaceuticals, and food items. Their ability to selectively adsorb molecules based on size makes them valuable in gas separation processes, such as removing carbon dioxide or hydrogen sulfide from natural gas streams.
Product Specification:
Test Specification
PARTICLE SIZE 40mesh 60mesh
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
25.000 10-20 days ฿900.00
+
-
100.000 10-20 days ฿2,870.00
+
-
500.000 10-20 days ฿13,630.00
+
-
Molecular sieves, 4Å
Molecular sieves, 4Å, are widely used for drying gases and liquids, particularly in industrial and laboratory settings. They are highly effective in removing water molecules from air, natural gas, and refrigerants, ensuring the purity and stability of these substances. In the petrochemical industry, they are employed to separate and purify hydrocarbons, such as removing water from ethanol or other solvents. Additionally, they play a crucial role in the packaging industry, where they are used to maintain a moisture-free environment for sensitive products like electronics, pharmaceuticals, and food items. Their ability to selectively adsorb molecules based on size makes them valuable in gas separation processes, such as removing carbon dioxide or hydrogen sulfide from natural gas streams.
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