Dorrite

Dorrite
Reddish-brown dorrite crystals from Chelyabinsk, Russia
General
CategoryInosilicate
Sapphirine supergroup
FormulaCa2Mg2Fe43+(Al4Si2)O22
IMA symbolDor[1]
Strunz classification9.DH.40
Dana classification69.2.1a.2
Crystal systemTriclinic
Unknown space group
Unit cella = 9.98, b = 5.08
c = 5.24 [Å]; β = 99.9°
Identification
Formula mass893.97 g/mol
ColorDark red-brown to dark brown
Crystal habitAnhedral; Small prismatic crystals; Pseudomonoclinic
TwinningCommon, producing a pseudomonoclinic symmetry
CleavageGood cleavage assumed to be parallel to {010} and {001}
FractureIrregular
Mohs scale hardness5
LusterSubmetallic
StreakGrey
DiaphaneitySubopaque
Density3.959 g/cm3
Refractive indexα=1.82
β=1.84
γ=1.86
Birefringenceδ = 0.040
PleochroismX=red-orange to brown
Y=yellowish brown
Z=greenish brown
2V angle90°
Absorption spectraVery strong
References[2][3]

Dorrite is a silicate mineral that is isostructural to the aenigmatite group.[2] It is most chemically similar to the mineral rhönite [Ca2Mg5Ti(Al2Si4)O20], made distinct by a lack of titanium (Ti) and the presence of Fe3+.[2] Dorrite is named for Dr. John (Jack) A. Dorr, a late professor at the University of Michigan that researched in outcrops where dorrite was found in 1982.[3] This mineral is sub-metallic resembling colors of brownish-black, dark brown, to reddish brown.

Discovery

Dorrite was first reported in 1982 by A. Havette in a basalt-limestone contact on Réunion Island off of the coast of Africa.[2] The second report of dorrite was made by Franklin Foit and his associates while examining a paralava from the Powder River Basin, Wyoming in 1987. Analyses determined that this newly found mineral was surprisingly similar to the mineral rhönite, lacking Ti but presenting dominant Fe3+ in its octahedral sites.[2] Other minerals that coexist with this phase are plagioclase, gehlenite-akermanite, magnetite-magnesioferrite-spinel solid solutions, esseneite, nepheline, wollastonite, Ba-rich feldspar, apatite, ulvöspinel, ferroan sahamalite, and secondary barite, and calcite.[2]

Occurrence

Dorrite can be found in mineral reactions that relate dorrite + magnetite + clinopyroxene, rhönite + magnetite + olivine + clinopyroxene, and aenigmatite + pyroxene + olivine assemblages in nature.[2] These assemblages favor low pressures and high temperatures.[2] Dorrite is stable in strongly oxidizing, high-temperature, low-pressure environments. It occurs in paralava, pyrometamorphic melt rock, formed from the burning of coal beds.[3]

Crystallography

Researchers conclusively determined that dorrite is triclinic-pseudomonoclinic and twinned by a twofold rotation about the pseudomonoclinic b axis. The parameters for dorrite are a=10.505, b=10.897, c=9.019 Å, α=106.26°, β=95.16°, γ=124.75°.[3]

Chemical Composition

Calcium 8.97%
Magnesium 5.44%
Aluminum 6.04%
Iron 37.48%
Silicon 6.28%
Oxygen 35.79%[3]

Oxides

CaO 12.55%
MgO 9.02%
Al2O3 11.41%
Fe2O3 53.59%
SiO2 13.44%[3]

References

  1. ^ Warr, L.N. (2021). "IMA–CNMNC approved mineral symbols". Mineralogical Magazine. 85 (3): 291–320. Bibcode:2021MinM...85..291W. doi:10.1180/mgm.2021.43. S2CID 235729616.
  2. ^ a b c d e f g h Cosca, Michael A.; Rouse, Roland R.; Essene, Eric J. (December 1988). "Dorrite [Ca2 (Mg2 Fe3+4)(Al4Si2) O20], a new member of the aenigmatite group from a pyrometamorphic melt-rock". American Mineralogist. 73 (11–12): 1440–1448.
  3. ^ a b c d e f Barthelmy, Dave. "Dorrite Mineral Data". webmineral.com. Retrieved 11 December 2015.

Content Disclaimer

Informasi ini disarikan dari Wikipedia dan disajikan kembali untuk tujuan edukasi. Konten tersedia di bawah lisensi CC BY-SA 3.0. Kami tidak bertanggung jawab atas ketidakakuratan data yang bersumber dari kontribusi publik tersebut.

  1. The information displayed on this website is sourced in part or in whole from Wikipedia and has been adapted for the purpose of restating it. We strive to provide accurate and relevant information, however:
  2. There is no guarantee of absolute accuracy. Wikipedia is an open, collaborative project that can be edited by anyone, so information is subject to change.
  3. It is not intended to constitute professional advice. The content displayed is for informational and educational purposes only. For important decisions (e.g., medical, legal, or financial), please consult a professional.
  4. Content copyright. Wikipedia is licensed under the Creative Commons Attribution-ShareAlike License (CC BY-SA). This means that content may be reused with appropriate attribution and shared under a similar license.
  5. Responsible use. Any risk arising from the use of information from this website is entirely the responsibility of the user.