Fluoroapatite

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Fluoroapatite
General
Systematic name Fluoroapatite
Other names Fluorapatite
Molecular formula Ca5(PO4)3F
Molar mass 504.3 g/mol
Appearance hard solid, various colors
CAS number 68877-08-7
Properties
Solubility in water almost insoluble
Structure
Crystal structure hexagonal
Related compounds
Related compounds Ca5(PO4)3OH
Ca5(PO4)3Cl
Except where noted otherwise, data are given for
materials in their standard state (at 25 °C, 100 kPa)
Infobox disclaimer and references

Fluoroapatite, often with the alternate spelling of fluorapatite, is a mineral with the formula Ca5(PO4)3F. Fluoroapatite is a hard crystalline solid. Although samples can have various color (green, brown, blue, violet, or colorless), the pure mineral is colourless as expected for a material lacking transition metals. It is an important constituent of tooth enamel.[1]

Fluoroapatite crystallizes in a hexagonal crystal system. It is often combined as a solid solution with hydroxylapatite (Ca5(PO4)3OH) in biological matrices. Chloroapatite (Ca5(PO4)3Cl) is another related structure.[1]

Fluoroapatite can be synthesized in a two step process. First, calcium phosphate is generated by combining calcium and phosphate salts at neutral pH.This material then reacts further with fluoride sources (often sodium monofluorophosphate or calcium fluoride (CaF2)) to give the mineral. This reaction is integral in the global phosphorous cycle.[2]

3Ca2+ + 2PO43- → Ca3(PO4)2
3 Ca3(PO4)2 + CaF2 → 2 Ca5(PO4)3F

Fluoroapatite can also be used as a precursor for the production of phosphorus. The mineral can be reduced by carbon in the presence of quartz, ultimately generating white phosphorus, P4:

Ca5(PO4)3F + 3SiO2 + 5C → 3CaSiO3 + 5CO + P2

2P2 → P4 after cooling

[edit] References

  1. ^ a b Hurlbert and Klein. "Manual of Mineralogy, 19th Edition". 1977. ISBN 0471251771
  2. ^ Holleman, A. F.; Wiberg, E. "Inorganic Chemistry" Academic Press: San Diego, 2001. ISBN 0-12-352651-5.

[edit] Further reading

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