Brucite Explained

Brucite
Category:Oxide mineral
Formula:Mg(OH)2
Imasymbol:Brc[1]
Strunz:4.FE.05
Class:Hexagonal crystal family (m)
H-M symbol: (2/m)
Symmetry:Pm1
Unit Cell:a = 3.142(1) Å, c = 4.766(2) Å; Z = 1
Color:White, pale green, blue, gray; honey-yellow to brownish red
Habit:Tabular crystals; platy or foliated masses and rosettes – fibrous to massive
Cleavage:Perfect on
Fracture:Irregular
Tenacity:Sectile
Mohs:2.5 to 3
Luster:Vitreous to pearly
Refractive:nω = 1.56–1.59
nε = 1.58–1.60
Opticalprop:Uniaxial (+)
Birefringence:0.02
Streak:White
Gravity:2.39 to 2.40
Diaphaneity:Transparent
Other:Pyroelectric
References:[2] [3] [4]

Brucite is the mineral form of magnesium hydroxide, with the chemical formula Mg(OH)2. It is a common alteration product of periclase in marble; a low-temperature hydrothermal vein mineral in metamorphosed limestones and chlorite schists; and formed during serpentinization of dunites. Brucite is often found in association with serpentine, calcite, aragonite, dolomite, magnesite, hydromagnesite, artinite, talc and chrysotile.

It adopts a layered CdI2-like structure with hydrogen-bonds between the layers.

Discovery

Brucite was first described in 1824 by François Sulpice Beudant[5] and named for the discoverer, American mineralogist, Archibald Bruce (1777–1818). A fibrous variety of brucite is called nemalite. It occurs in fibers or laths, usually elongated along [1010], but sometimes [1120] crystalline directions.

Occurrence

A notable location in the US is Wood's Chrome Mine, Cedar Hill Quarry, Lancaster County, Pennsylvania. Yellow, white and blue brucite with a botryoidal habit was discovered in Qila Saifullah District of Province Baluchistan, Pakistan. In a later discovery, brucite also occurred in the Bela Ophiolite of Wadh, Khuzdar District, Province Baluchistan, Pakistan. Brucite has also occurred from South Africa, Italy, Russia, Canada, and other localities as well, but the most notable discoveries are the US, Russian and Pakistani examples.

Industrial applications

Synthetic brucite is mainly consumed as a precursor to magnesia (MgO), a useful refractory and thermal insulator. It finds some use as a flame retardant because it thermally decomposes to release water in a similar way to aluminium hydroxide and mixtures of huntite and hydromagnesite .[6] [7] It also constitutes a significant source of magnesium for industry. Although generally deemed safe, brucite can be contaminated with naturally occurring asbestos fibers.[8]

Magnesium attack of cement and concrete

When cement or concrete are exposed to Mg2+, the neoformation of brucite, an expansive material, may induce mechanical stress in the hardened cement paste or may clog the porous network creating a and delaying the alteration/transformation of the C-S-H phase (the "glue" phase in the hardened cement paste) into M-S-H phase (a non-cohesive mineral phase). The exact magnitude of impact that brucite has on cement paste is still debatable. Prolonged contact between sea water or brines and concrete may induce durability issues for regularly immersed concrete components or structures.

The use of dolomite as aggregate in concrete can also cause magnesium attack and should be avoided.[9]

See also

Further reading

Notes and References

  1. Warr. L.N.. 2021. IMA–CNMNC approved mineral symbols. Mineralogical Magazine. 85. 3. 291–320. 10.1180/mgm.2021.43. 2021MinM...85..291W. 235729616. free.
  2. http://www.mindat.org/min-820.html Brucite
  3. http://rruff.geo.arizona.edu/doclib/hom/brucite.pdf Handbook of Mineralogy
  4. http://webmineral.com/data/Brucite.shtml Brucite on Webmineral
  5. Web site: 2021-01-13. Blog GeoRarities. 2021-06-02. en.
  6. Hollingbery. LA. Hull TR. The Thermal Decomposition of Huntite and Hydromagnesite - A Review. Thermochimica Acta. 2010. 509. 1–2. 1–11. 10.1016/j.tca.2010.06.012.
  7. Hollingbery. LA. Hull TR. The Fire Retardant Behaviour of Huntite and Hydromagnesite - A Review. Polymer Degradation and Stability. 2010. 95. 12. 2213–2225. 10.1016/j.polymdegradstab.2010.08.019.
  8. Malferrari. Daniele. Di Guisseppe. Dario. Scognamiglio. Valentina. Gualtieri. Alessandro F.. Commercial brucite, a worldwide used raw material deemed safe, can be contaminated by asbestos. Periodico di Mineralogia. 2021. 90. 3. 317–324. 10.13133/2239-1002/17384.
  9. Lee . Hyomin . Cody . Robert D. . Cody . Anita M. . Spry . Paul G. . Observations on brucite formation and the role of brucite in Iowa highway concrete deterioration . Environmental and Engineering Geoscience . 1 May 2002 . 8 . 2 . 137–145 . 10.2113/gseegeosci.8.2.137 . 2002EEGeo...8..137L . 1078-7275.