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skarn
EntityQ744694· pop 33· linked from 312 articles

Also known as tactite

thumb|Microscopic view of skarn under crossed polarizers thumb|Hand sample of skarn containing serpentinite from the edge of the Alta Stock, [[Little Cottonwood Canyon, Utah]] Skarns or tactites are coarse-grained metamorphic rocks that form by replacement of carbonate-bearing rocks during regional or contact metamorphism and metasomatism. Skarns may form by metamorphic recrystallization of impure carbonate protoliths, bimetasomatic reaction of different lithologies, and infiltration metasomatism by magmatic-hydrothermal fluids. Skarns tend to be rich in calcium-magnesium-iron-manganese-alumin

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Skarn
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12 sections
Contents
  • Etymology
  • Petrology
  • Classification
  • Skarn ore deposits
  • Fe (Cu, Ag, Au) skarn deposits
  • Cu (Au, Ag, Mo, W) skarn deposits
  • Formation
  • Ore deposits
  • See also
  • Notes
  • References
  • External links

thumb|Microscopic view of skarn under crossed polarizers thumb|Hand sample of skarn containing serpentinite from the edge of the Alta Stock, [[Little Cottonwood Canyon, Utah]] Skarns or tactites are coarse-grained metamorphic rocks that form by replacement of carbonate-bearing rocks during regional or contact metamorphism and metasomatism. Skarns may form by metamorphic recrystallization of impure carbonate protoliths, bimetasomatic reaction of different lithologies, and infiltration metasomatism by magmatic-hydrothermal fluids. Skarns tend to be rich in calcium-magnesium-iron-manganese-aluminium silicate minerals, which are also referred to as calc-silicate minerals. These minerals form as a result of alteration which occurs when hydrothermal fluids interact with a protolith of either igneous or sedimentary origin. In many cases, skarns are associated with the intrusion of a granitic pluton found in and around faults or shear zones that commonly intrude into a carbonate layer composed of either dolomite or limestone. Skarns can form by regional or contact metamorphism and therefore form in relatively high temperature environments. The hydrothermal fluids associated with the metasomatic processes can originate from a variety of sources; magmatic, metamorphic, meteoric, marine, or even a mix of these. The resulting skarn may consist of a variety of different minerals which are highly dependent on both the original composition of the hydrothermal fluid and the original composition of the protolith.

If a skarn has a respectable amount of ore mineralization that can be mined for a profit, it can be classified as a skarn deposit.

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