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dc.contributor.author Liferovich R.P.
dc.contributor.author Mitchell R.H.
dc.date.accessioned 2025-04-12T04:41:59Z
dc.date.available 2025-04-12T04:41:59Z
dc.date.issued 2006
dc.identifier https://elibrary.ru/item.asp?id=14463500
dc.identifier.citation Mineralogical Magazine, 2006, 70, 5, 463-484
dc.identifier.issn 0026-461X
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/48844
dc.description.abstract The nepheline syenites of the Pilansberg alkaline complex (South Africa) have undergone extensive subsolidus equilibration and alteration with a deuteric Cl- and Na-rich fluid phase. Complex assemblages of secondary minerals result from the replacement of primary aluminosilicates, rinkite, eudialyte and fluorapatite. The composition of apatite group minerals formed during these alteration processes reflects the Sr- and rare earth element (REE) content, Na/Cl ratio and pH of the deuteric fluids. Apatite-group minerals are observed to have formed in the following sequence: orthomagmatic fluorapatite; strontian britholite-(Ce); strontian fluorapatite; Sr-apatite; REE-rich Sr-apatite; Sr-Na-REE-rich minerals approaching the stoichiometry of belovite-(Ce) and deloneite-(Ce); britholite-(Ce). Increasing alkalinity of the deuteric fluids is reflected by increasing amounts of Sr replacing Ca in apatite and culminates in the formation of Sr apatite containing 62.1 wt.% SrO (~4.17 a.p.f.u. Sr). Pilansberg apatite-group minerals form a near-complete solid solution between fluorapatite and a fluorine analogue of Sr apatite with limited solution towards belovite-(Ce), Si-rich belovite-(Ce) and strontian britholite-(Ce). © 2006 The Mineralogical Society.
dc.subject ALTERATION
dc.subject BELOVITE-(CE)
dc.subject BRITHOLITE-(CE)
dc.subject FOYAITE
dc.subject HYPERAGPAITIC
dc.subject LUJAVRITE
dc.subject PILANSBERG
dc.subject SR-APATITE
dc.subject STRONTIAN
dc.subject SUBSOLIDUS
dc.title APATITE-GROUP MINERALS FROM NEPHELINE SYENITE, PILANSBERG ALKALINE COMPLEX, SOUTH AFRICA
dc.type Статья
dc.identifier.doi 10.1180/0026461067050346


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