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Carbonate-bearing eruptives between the Great Karas Mountains and the Bremen igneous complex, South West Africa

Thesis (MSc)--Stellenbosch University, 1975.

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Bibliographic Details
Main Author: Schreuder, C. P.
Other Authors: Verwoerd, W. J.
Format: Thesis
Language:en_ZA
Published: Stellenbosch : Stellenbosch University 2012
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access_status_str Open Access
author Schreuder, C. P.
author2 Verwoerd, W. J.
author_browse Schreuder, C. P.
Verwoerd, W. J.
author_facet Verwoerd, W. J.
Schreuder, C. P.
author_sort Schreuder, C. P.
collection Thesis
dc_rights_str_mv Stellenbosch University
description Thesis (MSc)--Stellenbosch University, 1975.
format Thesis
id oai:scholar.sun.ac.za:10019.1/67914
institution Stellenbosch University (South Africa)
language en_ZA
last_indexed 2026-06-10T12:46:30.498Z
license_str Other — see source repository
provenance_str_mv Harvested via OAI-PMH from SUNScholar — Stellenbosch University Repository
publishDate 2012
publishDateRange 2012
publishDateSort 2012
publisher Stellenbosch : Stellenbosch University
publisherStr Stellenbosch : Stellenbosch University
record_format dspace
source_str SUNScholar — Stellenbosch University Repository
spelling oai:scholar.sun.ac.za:10019.1/67914 Carbonate-bearing eruptives between the Great Karas Mountains and the Bremen igneous complex, South West Africa Schreuder, C. P. Verwoerd, W. J. Stellenbosch University. Faculty of AgriSciences. Dept. of Soil Science. Carbonate rocks Igneous rocks Geology -- Namibia -- Great Karas Mountains Thesis (MSc)--Stellenbosch University, 1975. Maps in multiple parts on last pages of pdf document. ENGLISH ABSTRACT:Minor carbonate-bearing bodies of igneous origin are widely distributed in the Karasberg district, South West Africa. The area in which they occur consists of granites and gneisses of the Namaqualand Metamorphic Complex overlain by relatively flat strata of the Nama and Karoo Groups and intruded by plutonic and hypabyssal rocks of various ages. The latter include a single post-Karoo carbonatite. The largest concentration of carbonate-bearing eruptives is on the farm Garub 266 in the Great Karas Mountains, but they extend approximately 100 km westwards as far as the Bremen Alkaline Complex. The Karas Mountains are now believed to be the result of a series of thrust-faults which may perhaps be associated with the intrusion of plutonic complexes of the Kuboos-Tatasberg-Bremen-Haruchas lineament, to which the Garub eruptives may also be related. The Garub-type pipes, dykes and sills are composed of alkaline-ultrabasic carbonate-bearing breccia, lamprophyric carbonate rock and tuffisite. They intrude rocks of the Namaqualand Metamorphic Complex and the Kuibis, Schwarzrand and lower Fish River Formations of the Nama Group, and are considered to be subvolcanic. The bodies contain between 10 and 20 per cent co2 and about 25 per cent Si02 and are obviously not typical carbonatite. Biotite, pyroxene, amphibole and ilmenite form both phenocrysts and fine-grained ccy.stals in a groundmass of ankerite. Minute ankeritised lath-shaped crystals (either melilite or feldspar originally}, are almost invariably present in the lamprophyric carbona~e rock. Interstitial quartz and feldspar occur sporadically, whereas inclusions of wall-rock, where present, are usually abraded and rounded. Fenitisation has been observed at two localities, where quartz and feldspar in the wall-rock have been replaced by soda amphibole. Fluidisation appears to provide a satisfactory mechanism for the emplacement of these bodies. Strong evidence in favour of this interpretation are the intrusive contacts, abraded and rounded inclusions, nondilational veins in the wall-rock, accretionary pisolites, upward and downward movement of inclusions in the bodies, carbonated inclusions and matrices . and the absence of contact or pyrometamorphic effects. Chemically the carbonate rocks bear similarities to kimberlite and olivine-melilitite, but are most akin to alnoite. Carbonatite, olivine-melilitite, kimberlite, alnoite, damkjernite and the Garub rocks are all considered to have the same magmatic affinities.· It is tentatively suggested that the Garub suite is genetically related to an unexposed alkaline complex of the Fen type, and that the composition of the carbonate-bearing rocks approaches that of the parent magma of the plutonic complexes along the Kuboos lineament. AFRIKAANSE OPSOMMING: Geen opsomming beskikbaar Masters 2012-08-27T12:26:20Z 2012-08-27T12:26:20Z 1975-12 Thesis http://hdl.handle.net/10019.1/67914 en_ZA Stellenbosch University 118 pages : illustrations, maps application/pdf Stellenbosch : Stellenbosch University
spellingShingle Carbonate rocks
Igneous rocks
Geology -- Namibia -- Great Karas Mountains
Schreuder, C. P.
Carbonate-bearing eruptives between the Great Karas Mountains and the Bremen igneous complex, South West Africa
title Carbonate-bearing eruptives between the Great Karas Mountains and the Bremen igneous complex, South West Africa
title_full Carbonate-bearing eruptives between the Great Karas Mountains and the Bremen igneous complex, South West Africa
title_fullStr Carbonate-bearing eruptives between the Great Karas Mountains and the Bremen igneous complex, South West Africa
title_full_unstemmed Carbonate-bearing eruptives between the Great Karas Mountains and the Bremen igneous complex, South West Africa
title_short Carbonate-bearing eruptives between the Great Karas Mountains and the Bremen igneous complex, South West Africa
title_sort carbonate bearing eruptives between the great karas mountains and the bremen igneous complex south west africa
topic Carbonate rocks
Igneous rocks
Geology -- Namibia -- Great Karas Mountains
url http://hdl.handle.net/10019.1/67914
work_keys_str_mv AT schreudercp carbonatebearingeruptivesbetweenthegreatkarasmountainsandthebremenigneouscomplexsouthwestafrica