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CeCl3•6H2O 99.99% Cerium Chloride Hydrate 18618-55-8 White Powder

CeCl3•6H2O 99.99% Cerium Chloride Hydrate 18618-55-8 White Powder

99.99% Cerium Chloride Hydrate

CeCl3•6H2O 99.99% Cerium Chloride

18618-55-8 White Powder

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Product Details
CAS #:
18618-55-8
Molecular Formula:
CeCl3• 6H2O
EC No.:
232-227-8
Purity:
99.9-99.99%
Molecular Weight:
335.26
Appearance:
White Powder Or Crystals
Melting Point:
N/A
Boiling Point:
N/A
Density:
N/A
Exact Mass:
334.955916
Monoisotopic Mass:
334.955916
Highlight:

99.99% Cerium Chloride Hydrate

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CeCl3•6H2O 99.99% Cerium Chloride

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18618-55-8 White Powder

Payment & Shipping Terms
Minimum Order Quantity
500g
Packaging Details
0.5-1 kilogram per bottle, 50 kilograms per drum, 500 kilograms per pallet
Delivery Time
45-60 Workdays
Payment Terms
T/T
Supply Ability
100 tons
Product Description

Cerium Chloride Hydrate (CeCl₃·6H₂O): Chemical Additive, Reaction Catalyst, Growth Promoter

Cerium chloride is an inorganic compound with the chemical formula CeCl₃•6H₂O, appearing as white crystals. It is soluble in water (~25g per 100mL at 18°C) and benzene. When heated to 760°C, it decomposes into cerium oxide.

 

Applications

  1. Chemical industry additive
  2. Catalyst for various reactions
  3. Growth promoter for crops

 

Product Series

Product

Product Code

Safety Data

Technical Data

Cerium Chloride  99.99%

ET-CeCl

Cerium Chloride Heptahydrate.pdf Cerium Chloride Hydrate CeCl3 6H2O  99.99.pdf

 

Health and Safety Information

Signal Word N/A
Hazard Statements N/A
Hazard Code N/A
Risk Code N/A
Safety Statements N/A
Transport Information N/A
GHS Pictogram CeCl3•6H2O 99.99% Cerium Chloride Hydrate 18618-55-8 White Powder 0CeCl3•6H2O 99.99% Cerium Chloride Hydrate 18618-55-8 White Powder 1

 

Preparation of Cerium Chloride Hydrate

  1. Dissolve an appropriate amount of cerium oxide in 50% hydrochloric acid solution using steam bath heating.
  2. Filter if any oxide residue remains at the container bottom.
  3. Heat the clarified solution in a 75°C water bath to evaporate most of the solvent.
  4. Crystals form upon cooling. Collect by filtration.
  5. Dry the crystals in a vacuum desiccator containing granular sodium hydroxide and magnesium perchlorate under reduced pressure to obtain hydrated cerium chloride.

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