Difference between revisions of "Iron disulfide"

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* Can evolve low levels of sulfur dioxide.   
 
* Can evolve low levels of sulfur dioxide.   
 
* Degrades in high humidity environments.
 
* Degrades in high humidity environments.
 
+
* ThermoFisher: [https://www.fishersci.com/shop/msdsproxy?productName=AC233300010&productDescription=IRON(II)SULFIDE%2CC.P.%2C+FU+1KG&catNo=AC23330-0010&vendorId=VN00032119&storeId=10652 SDS]
ThermoFisher: [https://www.fishersci.com/shop/msdsproxy?productName=AC233300010&productDescription=IRON(II)SULFIDE%2CC.P.%2C+FU+1KG&catNo=AC23330-0010&vendorId=VN00032119&storeId=10652 SDS]]
 
 
== Physical and Chemical Properties ==
 
== Physical and Chemical Properties ==
  
Insoluble in water.  Magnetic after heating.  Crystal system = isometric  Cleavage = poor  Fracture = uneven  Luster = metallic  Streak = greenish black to brown
+
* Insoluble in water.   
 +
* Magnetic after heating.   
 +
* Crystal system = isometric   
 +
* Cleavage = poor   
 +
* Fracture = uneven   
 +
* Luster = metallic   
 +
* Streak = greenish black to brown
  
 
{| class="wikitable"
 
{| class="wikitable"
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|-
 
|-
 
! scope="row"| Melting Point
 
! scope="row"| Melting Point
| 1171-1188
+
| 1171-1188 C
 
|-
 
|-
 
! scope="row"| Density
 
! scope="row"| Density
| 4.9-5.1
+
| 4.9-5.1 g/ml
 
|-
 
|-
 
! scope="row"| Molecular Weight
 
! scope="row"| Molecular Weight
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* Jack Odgen, ''Jewellery of the Ancient World'', Rizzoli International Publications Inc., New York City, 1982
 
* Jack Odgen, ''Jewellery of the Ancient World'', Rizzoli International Publications Inc., New York City, 1982
  
* Submitted information: Jon Byler, Jan. 23, 2006. melting point = 1171 C (Lange's Handbook 1985), melting point=1188C (CRC 78th ed.)
+
* Jon Byler, Submitted information, Jan. 23, 2006. melting point = 1171 C (Lange's Handbook 1985), melting point=1188C (CRC 78th ed.)
  
 
* Wikipedia: http://en.wikipedia.org/wiki/Pyrite (Accessed Sept. 14, 2005)
 
* Wikipedia: http://en.wikipedia.org/wiki/Pyrite (Accessed Sept. 14, 2005)

Revision as of 09:29, 21 September 2022

Iron pyrite inlays
MFA# 26.20
Iron pyrite

Primarily occurs as a yellowish mineral with a metallic luster called Pyrite. Iron disulfide also occurs as that mineral Marcasite. Major sources for iron pyrite include sites in India, Turkey, and Russia. It was called fool's gold because its color and metallic sheen often is mistake for gold. Polished pieces of iron pyrite have been used for necklaces and bracelets. Ethanolamine thioglycollate treatments have been used to minimize the decomposition of pyritic specimens (Cornish 1984).

See also Pyrrhotite.

Synonyms and Related Terms

iron (II) disulfide; iron pyrite; pyrite; fool's gold; martial pyrite; mundic; factitous pyrite; Pyrit (Deut.); pyrite (Fr.); pyriet (Ned.); piryt (Pol.); pirita (Port.);

Raman

PyriteRS.jpg

Raman

Pyriteitaly2.jpg

Risks

  • Can evolve low levels of sulfur dioxide.
  • Degrades in high humidity environments.
  • ThermoFisher: SDS

Physical and Chemical Properties

  • Insoluble in water.
  • Magnetic after heating.
  • Crystal system = isometric
  • Cleavage = poor
  • Fracture = uneven
  • Luster = metallic
  • Streak = greenish black to brown
Composition FeS2
CAS 1309-36-0
Mohs Hardness 6.0 - 6.5
Melting Point 1171-1188 C
Density 4.9-5.1 g/ml
Molecular Weight mol. wt. = 119.967

Resources and Citations=

  • L. Cornish, A.M. Doyle. "Use of Ethanolamine Thioglycollate in the Conservation of Pyritised Fossils" Palaeontology 27(2), 1984, 421-424.
  • C.W.Chesterman, K.E.Lowe, Audubon Society Field Guide to North American Rocks and Minerals, Alfred A. Knopf, New York, 1979
  • CRC Handbook of Chemistry and Physics, Robert Weast (ed.), CRC Press, Boca Raton, Florida, v. 61, 1980 Comment: density=4.95-5.1
  • Jack Odgen, Jewellery of the Ancient World, Rizzoli International Publications Inc., New York City, 1982
  • Jon Byler, Submitted information, Jan. 23, 2006. melting point = 1171 C (Lange's Handbook 1985), melting point=1188C (CRC 78th ed.)
  • G.S.Brady, Materials Handbook, McGraw-Hill Book Co., New York, 1971 Comment: p. 422
  • Susan E. Schur, Conservation Terminology: A review of Past & Current Nomenclature of Materials, Technology and Conservation, Spring (p.34-39); Summer (p.35-38); Fall (p.25-36), 1985

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