Chemistry:Edenite

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Short description: Amphibole, double chain inosilicate mineral
Edenite
Edenite-188165.jpg
Edenite crystal from Bancroft District, Ontario
General
CategoryAmphibole mineral
Formula
(repeating unit)
NaCa2Mg5(Si7Al)O22(OH)2
Strunz classification9.DE.15
Crystal systemMonoclinic
Crystal classPrismatic (2/m)
(same H-M symbol)
Space groupC2/m
Unit cella = 9.83, b = 17.95
c = 5.3 [Å], β = 105.18°; Z = 2
Identification
Formula mass834.25 g/mol
ColorWhite to gray, pale to dark green, also brown and pale pinkish-brown
Crystal habitPrismatic crystals, fibrous, as reaction rims on pyroxenes
TwinningSimple or multiple parallel to {010}
CleavageGood on (110)
FractureConchoidal
TenacityBrittle
Mohs scale hardness5–6
|re|er}}Vitreous
StreakWhite
DiaphaneitySemitransparent
Specific gravity3.05–3.37
Optical propertiesBiaxial (+)
Refractive indexnα = 1.606 – 1.649, nβ = 1.617 – 1.660, nγ = 1.631 – 1.672
Birefringenceδ = 0.025
PleochroismDistinct, greens, blue-greens, and yellow-browns
2V angle50–82°
References[1][2][3][4]

Edenite is a double chain silicate mineral of the amphibole group with the general chemical composition NaCa2Mg5(Si7Al)O22(OH)2. Edenite is named for the locality of Edenville, Orange County, New York, where it was first described.[3]

Occurrence

Edenite has been found primarily in metamorphic rocks, occurring in pods of other magnesium-rich minerals within a marble formation or with garnet-rich lherzolites from deep within the Earth's crust.[6][7] Thus, finding edenite in the field can indicate high-temperature regional metamorphism of the surrounding rocks.

Uses and importance

While edenite is not important for commercial or industrial applications, it is often studied because of its unique chemical substitution properties. Results from research performed on amphiboles have shown that edenite is particularly suited for fitting chloride anions into its chemical framework.[8] This makes edenite a good candidate for use in chlorine isotope fractionation in amphibole-bearing rocks. Many synthetic variations of edenite are also used in geochemical research to produce a boron analogue of fluoroedenite.[9]

Crystal habit

Edenite is a member of the monoclinic crystal system and is in the crystal class 2/m (space group C2/m).[6] This means crystalline edenite is symmetrical around a two-fold rotation axis that is then reflected across a mirror plane perpendicular to the long axis of the mineral.[10]

Optical properties

Edenite is a biaxial positive mineral. When viewed in thin section with a petrographic microscope, it is white-gray with pale green pleochroism in plane-polarized light. Under crossed polars, its interference colors range from first order gray to first order blue.[2]

References

  1. Edenite Handbook of Mineralogy
  2. 2.0 2.1 Edenite on Mindat.org
  3. 3.0 3.1 Edenite on Webmineral
  4. IMA Master List
  5. Warr, L.N. (2021). "IMA–CNMNC approved mineral symbols". Mineralogical Magazine 85 (3): 291–320. doi:10.1180/mgm.2021.43. Bibcode2021MinM...85..291W. 
  6. 6.0 6.1 Oberti, R.; Cámara, F.; Della Ventura, G.; Iezzi, G.; Benimoff, A.I. (2006). "Parvo-mangano-edenite, parvo-manganotremolite, and the solid solution between Ca and Mn2+ at the M4 site in amphiboles". American Mineralogist 91 (4): 526–532. doi:10.2138/am.2006.1905. Bibcode2006AmMin..91..526O. http://rruff.geo.arizona.edu/doclib/am/vol91/AM91_526.pdf. 
  7. Yang, J. (2003). "Relict edenite in a garnet lherzolite from the Chinese Su-Lu UHP metamorphic terrane: Implications for metamorphic history". American Mineralogist 88 (1): 180–188. doi:10.2138/am-2003-0121. Bibcode2003AmMin..88..180Y. Archived from the original on 2012-03-29. https://web.archive.org/web/20120329105748/http://www.igcas.ac.cn/admin/uploadfiles/20041028175038_Yang-AM-03.pdf. 
  8. Oberti, R.; Hawthorne, F.C.; Cannillo, E.; Cámara, F. (2007). "Long-Range Order in Amphiboles". Reviews in Mineralogy and Geochemistry 67 (1): 125–171. doi:10.2138/rmg.2007.67.4. Bibcode2007RvMG...67..125O. 
  9. Oberti, R.; Della Ventura, G.; Cámara, F. (2007). "New Amphibole Compositions: Natural and Synthetic". Reviews in Mineralogy and Geochemistry 67 (1): 89–124. doi:10.2138/rmg.2007.67.3. Bibcode2007RvMG...67...89O. 
  10. Klein, C., and Dutrow, B. (2007) The 23rd Edition of the Manual of Mineral Science, John Wiley and Sons, Inc. Hoboken, New Jersey, U.S.