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Molecular sieve 4 Å, 250 g, glass

0,4 nm, type 514, beads
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Melting point (mp) >600 °C
WGK 1
CAS No. 1318-02-1
EG-Nr. 215-283-8

Metal-aluminium silicates for drying, cleaning or separating of liquids and gases. Spheres Ø 1.6-2.5 mm.

€42.90 /Pack Qty.

€36.40/Pack Qty.  Campaign price!

excl. VAT. | 250 g per Pack Qty.

Art. No. 8471.1

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Molecular sieve 4 Å
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Art. No. Pack Qty. Pack. Price Quantity
8471.1 250 g glass
€42.90

€36.40

8471.2 750 g glass
€96.25

€81.75

8471.3 2.5 kg plastic
€246.20

€209.25

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Downloads / MSDS


General information

Molecular Sieves

For drying, cleaning or separating liquids and gases.

Properties:

  • Spherical or powdered metal aluminosilicates
  • Spheres Ø 1,6-2,5 mm and 2,5-5,0 mm
  • Active surface: 600-700 m2/g
  • Activated at 500-600 °C; we nevertheless recommend activating the molecular sieve again before using it for the first time
Application:
  • In desiccators, drying tubes, columns
  • For drying streaming gases
  • For absoluting organic solvents
  • For separating organic solvents


Regenerating:

• In drying cabinets at 200-300 °C
• Through pressure change or rinsing


Critical molecular diameter for frequently occurring molecules, in Å (1 angstrom = 10-10 m = 0.1 nm)

Molecule Size [Å]

Molecule Size [Å]
Acetylene 3.3

Helium 2.0
Ammonia 2.9

Hydrogen 2.4
Argon 3.8

Hydrogen sulphide 3.6
Benzole/toluene 5.8

Methane 3.8
n-Butanes and higher n-hydrocarbons 4.3

Methanol 3.6
i-Butane and higher i-hydrocarbons 5.1

Methyl mercaptan 3.8
i-Butene 4.0

Nitrogen 3.6
trans-2-Butene 5.1

Oxygen 3.5
1,3-Butadiene 5.8

Propane 4.3
Cyclohexane 6.0

Propylene 4.0
Carbon dioxide 3.3

Tetrahydrofurane 5.0
Carbon monoxide 3.7

Thiophene 5.3
Carbon tetrachloride 5.9

Triethylamine 7.8
Dimethylpropane 6.2

Trichlormethane/Chloroform 6.9
Ethane 4.2

Water 2.6
Ethanol 4.2

o-Xylene 6.6
Ethylene 3.9

m-Xylene 6.3
Ethyl mercaptan 3.8

p-Xylene 5.9

Melting Point Information:

The melting points of our molecular sieves can vary depending on the test method used. The safety data sheets indicate melting points of >600 °C, which is due to the test method employed (OECD Test No. 102). This method states that no precise endpoint is required as long as the substance does not melt at temperatures up to 600 °C.

However, the actual melting point of our molecular sieves is significantly higher and can be estimated to exceed 1000 °C. This discrepancy is caused by the specific definition of the test method and does not reflect the actual thermal stability of the products.


Drying methods for solvents

Solvent Molecular

sieve
Potassium

carbonate
Calcium

chloride
Phosphous

pentoxide
Acetic acid - - - +
Acetic acid anhydride - - + -
Acetic acid ethyl ester 4 Å + - +
Acetic acid methyl ester 4 Å + - +
Acetone 3 Å + + -
Acetonitrile 3 Å + + +
Benzene 4 Å - + -
1-Butanol - + - -
2-Butanol - + - -
1-Butanone - + + -
Chloroform 4 Å - + +
Cyclohexane 4 Å - - -
Dichloremethane 4 Å - - -
Diethylether 4 Å - + -
Diisopropyl ether 4 Å - + -
Dimethyl formamide 4 Å - - -
Dioxan 4 Å - + -
Ethanol 3 Å - - -
Ethyle formate - - + -
n-Hexane 4 Å - - -
Methanol 3 Å - + -
2-Propanol 3 Å - - -
Pyridine 4 Å - - -
Tetrahydrofurane 4 Å - + -
Toluene 4 Å - + -
Trichloroethylene - + - -
Xylene (Isomer compound) 4 Å - + -

Certificates of Analysis

You can search for and download your certificate of analysis for the selected product here. Please provide your batch number.
The following analysis certificates have been found:

Type analysis

H2O ads. capacity (10 % R.H./25 °C)≥17,5 %
Loss on ignition≤3,0 %
Globe diameter1,6-2,5 mm
Crush strength≥20 N
Regeneration: In drying cabinets at 200-300 °C, through pressure change or rinsing.