Technical Data Sheet
Sodium
≥99 %, rods, in paraffin oil
H260-H314-EUH014
in contact with water releases flammable gases which may ignite spontaneously, causes severe skin burns and eye damage
P223 P280 P301+P330+P331 P305+P351+P338 P370+P378
do not allow contact with water, wear protective gloves/protective clothing/eye protection/face protection, IF SWALLOWED: rinse mouth. Do NOT induce vomiting, IF IN EYES: Rinse cautiously with water for several minutes. Remove contact lenses, if present and easy to do. Continue rinsing, in case of fire: Use metal fire powder to extinguish - never use water
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Empirical formula Na
Boiling point (bp) 889 °C
Melting point (mp) 97,82 °C
ADR 4.3 I
WGK 1
CAS No. 7440-23-5
EG-Nr. 231-132-9
UN-Nr. 1428
Boiling point (bp) 889 °C
Melting point (mp) 97,82 °C
ADR 4.3 I
WGK 1
CAS No. 7440-23-5
EG-Nr. 231-132-9
UN-Nr. 1428
Packaging: glass, outer packaging: metal can
Rods: Length approx. 20 cm, Ø approx. 2.5 cm
€203.20/Pack Qty.
excl. VAT. | 250 g per Pack Qty.
Art. No. 4469.1
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Product details
Sodium ≥99 %, rods, in paraffin oil
Rods: Length approx. 20 cm, Ø approx. 2.5 cm
Technical Information
Suitable (as desiccant) for | Ethers, saturated aliphatic and aromatic hydrocarbons, tertiary amines |
Not suitable (as desiccant) for | Acids, acid derivatives, alcohols, aldehydes, ketones, alkyl and aryl halides |
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4469.1 | 250 g | glass |
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Downloads / MSDS
General information
Desiccants
Desiccants can absorb water and bind it chemically (reversibly or irreversibly) or physically. The main desiccants can be subdivided into four categories:
- non-renewable chemical desiccants
- renewable chemical desiccants
- silica gels
- molecular sieves
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 | - | + | - |
Reducing Agents
As with oxidation reactions, reduction reactions are also widely used in organic synthesis. An example of this reductive amination, which is shown above. You can find commonly used reducing agents here:
Certificates of Analysis
Type analysis
Assay (Na) | ≥99,0 % |