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Oxycalcioroméite, Ca2Sb2O6O, from Buca della Vena mine, Apuan Alps, Tuscany, Italy: a new member of the pyrochlore supergroup.

Authors :
BIAGIONI, C.
ORLANDI, P.
NESTOLA, F.
BIANCHIN, S.
Source :
Mineralogical Magazine. Oct2013, Vol. 77 Issue 7, p3027-3037. 11p.
Publication Year :
2013

Abstract

The new mineral species oxycalcioroméite, Ca2Sb5+2 O6O, has been discovered at the Buca della Vena mine, Stazzema, Apuan Alps, Tuscany, Italy. It occurs as euhedral octahedra, up to 0.1 mm in size, embedded in dolostone lenses in the baryte + pyrite + iron oxides ore. Associated minerals are calcite, cinnabar, derbylite, dolomite, hematite, 'mica', pyrite, sphalerite and 'tourmaline'. Oxycalcioroméite is reddish-brown in colour and transparent. It is isotropic, with ncalc = 1.950. Electron microprobe analysis gave (wt.%; n = 6) Sb2O5 63.73, TiO2 3.53, SnO2 0.28, Sb2O3 10.93, V2O3 0.68, Al2O3 0.28, PbO 0.68, FeO 5.52, MnO 0.13, CaO 13.68, Na2O 0.83, F 1.20, O = F - 0.51, total 100.96. No H2O, above the detection limit, was indicated by either infrared or micro-Raman spectroscopies. The empirical formula, based on 2 cations at the B site, is (Ca1.073Fe2+0.338Sb3+0.330Na0.118 Pb0.013Mn0.008)Σ=1.880(Sb5+ 1.734Ti0.194V0.040Al0.024Sn0.008)Σ=2.000(O6.682F0.278)Σ6.960. The crystal structure study gives a cubic unit cell, space group Fd3m, with a 10.3042(7) Å, V 1094.06(13) Å 3, Z = 8. The five strongest X-ray powder diffraction lines are [d (Å)I (visually estimated)(hkl)]: 3.105(m)(311); 2.977(s)(222); 2.576(m)(400); 1.824(ms)(440); and 1.556(ms)(622). The crystal structure of oxycalcioroméite has been solved by X-ray single-crystal study on the basis of 114 observed reflections, with a final R1 = 0.0114. It agrees with the general features of the members of the pyrochlore supergroup. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0026461X
Volume :
77
Issue :
7
Database :
Academic Search Index
Journal :
Mineralogical Magazine
Publication Type :
Academic Journal
Accession number :
112541748
Full Text :
https://doi.org/10.1180/minmag.2013.077.7.12