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The kimeerlite occurrences from the vicinity of Rayton, South of premier mine, and from East Lynne, East of Pretoria

Dissertation (MSc)--University of Pretoria, 1982.

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Other Authors: Snyman, C.P.
Format: Thesis
Language:English
Published: University of Pretoria 2022
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access_status_str Open Access
author2 Snyman, C.P.
author_browse Snyman, C.P.
author_facet Snyman, C.P.
collection Thesis
dc_rights_str_mv © 2020 University of Pretoria. All rights reserved. The copyright in this work vests in the University of Pretoria. No part of this work may be reproduced or transmitted in any form or by any means, without the prior written permission of the University of Pretoria.
description Dissertation (MSc)--University of Pretoria, 1982.
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institution University of Pretoria (South Africa)
language English
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license_str Other — see source repository
provenance_str_mv Harvested via OAI-PMH from UPSpace — University of Pretoria Institutional Repository
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publisherStr University of Pretoria
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spelling oai:repository.up.ac.za:2263/85472 The kimeerlite occurrences from the vicinity of Rayton, South of premier mine, and from East Lynne, East of Pretoria Snyman, C.P. Viljoen, Elmer Anton UCTD Kimeerlite Occurances Rayton Premier mine East Lynne Dissertation (MSc)--University of Pretoria, 1982. The mineralogy, petrography, and petrology of five kimberlite occurrences were investigated. Four of the occurrences i.e., Rietfontein, Kaalfontein, and Montrose No. 1 pipes, and the Puntlyf fissure are south of Premier Mine. The East Lynne occurrence is just east of Pretoria. The mineralogy and petrography of the groundmass, cognate inclusions, and foreign inclusions are compared and six stages can be identified in the evolution of the kimberlites. Stage I represents the crystallization of the first generation minerals such as olivine I, phlogopite I and ilmenite in the kimberlite magma. Magnesium enrichment and possible differentiation of the potassium and water rich phase to form the Puntlyf type of micaceous kimberlite, is represented in the second stage. Stage III starts with the crystallization of second generation minerals such as olivine II. The magnesium enrichment is especially portrayed by the increase in geikielite (MgTi03) content of the ilmenite towards the outer rim, and zoning in olivine I. Crystallization of most of the groundmass minerals are completed in this stage where the chromium-rich spinels are supplanted by titanomagnetite followed by the crystallization of perovskite from the residual titanium and calcium-rich liquid. The oxygen fugacity and iron content of the older intrusions in the Kaalfontein pipe and in the Montrose No. 1 pipe increased slightly resulting in the crystallization of more manganese-rich phases (pyrophanite) and magnetite and hematite. Serpentinization of the kimberlite occurs in stage IV but depending on localized compositional differences, phlogopite II and biotite form the last sequel to the crystallization of the serpentine matrix. Silica activity results in the alteration of perovskite to titanite during this stage. Stage V represents mainly the metamorphism of serpentine to tremolite and actinolite owing to a rise in temperature in the kimberlite. Crystallization of zeolites and hydrogrossularite constitutes the hypergene alteration and crystallization in stage VI. The history of the kimberlites can be visualized from the mineralogical differences, stages of evolution and field relations. The Rietfontein pipe contained four different types of kimberlite that were emplaced in two major cycles. Five major kimberlite types were recognized in the Kaalfontein pipe. The youngest group resembling that of the Rietfontein pipe and the oldest that of the Montrose pipe where only one kimberlite is present. The micaceous kimberlite of Puntlyf represents the early stages of kimberlite formation and emplacement in fissures in to the earth's crust. Kimberlite constitutes only a small proportion of the carbonatite of the East Lynne occurrence. It is exceptionally rich in biotite and carbonate and is most probably a residual phase of the carbonatite intrusion. Thus it is not related to the same kimberlite activity as the other occurrences. Geology MSc Unrestricted 2022-05-17T11:21:40Z 2022-05-17T11:21:40Z 30/7/2021 1982 Dissertation * https://repository.up.ac.za/handle/2263/85472 en © 2020 University of Pretoria. All rights reserved. The copyright in this work vests in the University of Pretoria. No part of this work may be reproduced or transmitted in any form or by any means, without the prior written permission of the University of Pretoria. application/pdf University of Pretoria
spellingShingle UCTD
Kimeerlite
Occurances
Rayton
Premier mine
East Lynne
The kimeerlite occurrences from the vicinity of Rayton, South of premier mine, and from East Lynne, East of Pretoria
title The kimeerlite occurrences from the vicinity of Rayton, South of premier mine, and from East Lynne, East of Pretoria
title_full The kimeerlite occurrences from the vicinity of Rayton, South of premier mine, and from East Lynne, East of Pretoria
title_fullStr The kimeerlite occurrences from the vicinity of Rayton, South of premier mine, and from East Lynne, East of Pretoria
title_full_unstemmed The kimeerlite occurrences from the vicinity of Rayton, South of premier mine, and from East Lynne, East of Pretoria
title_short The kimeerlite occurrences from the vicinity of Rayton, South of premier mine, and from East Lynne, East of Pretoria
title_sort kimeerlite occurrences from the vicinity of rayton south of premier mine and from east lynne east of pretoria
topic UCTD
Kimeerlite
Occurances
Rayton
Premier mine
East Lynne
url https://repository.up.ac.za/handle/2263/85472