COMPOSITIONAL DEPENDENCE OF CATION DISTRIBUTION IN SOME SYNTHETIC (MG,ZN) (AL,FE3+)2O4 SPINELS

dc.contributor.authorAndreozzi G.B.
dc.contributor.authorLucchesi S.
dc.contributor.authorSkogby H.
dc.contributor.authorDella Giusta A.
dc.date.accessioned2021-04-09T02:56:42Z
dc.date.available2021-04-09T02:56:42Z
dc.date.issued2001
dc.description.abstractThe compositional dependence of the intracrystalline cation distribution was investigated in four synthetic spinels belonging to binary solid solutions. Spinel single crystals were flux-grown in the (Mg,Zn)(Al,Fe3+)(2)O-4 system, and cation distribution was determined by means of single-crystal X-ray structural refinement, electron-microprobe analysis and Mossbauer spectroscopy. Experimental data were processed and a detailed topochemical model was obtained for each sample: (IV)(Mg0.76Al0.24)(VI)(Al1.76Mg0.24)O-4; (IV)(Zn0.65Mg0.22 Al-0.13)(VI)(Al1.87Mg0.13)O-4; (IV)(Mg0.73Al0.18Fe0.093+)(VI)(Al1.62Mg0.27Fe0.113+)O-4 and (IV)(Mg0.62Zn0.15Al0.15Fe0.083+) (VI)(Al1.61Mg0.23Fe0.163+)O-4. Zinc was found to occupy only the tetrahedrally coordinated site and its presence strongly influenced intersite cation partitioning. In Zn-bearing crystals both intracrystalline exchanges Mg <--> Al and Mg <--> Fe3+ turned out to be limited. Zinc in octahedral coordination, which is rare in natural spinels, was shown to be favoured by high Fe3+ contents and high equilibration temperatures. The cation distributions determined experimentally were found to be in close agreement with those calculated-using the general thermodynamic model for spinel solid solutions by O'Neill & Navrotsky (1984).
dc.identifierhttps://www.elibrary.ru/item.asp?id=32118329
dc.identifier.citationEuropean Journal of Mineralogy, 2001, 13, 2, 391-402
dc.identifier.issn0935-1221
dc.identifier.urihttps://repository.geologyscience.ru/handle/123456789/27590
dc.titleCOMPOSITIONAL DEPENDENCE OF CATION DISTRIBUTION IN SOME SYNTHETIC (MG,ZN) (AL,FE3+)2O4 SPINELS
dc.typeСтатья

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