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Assessing the extent of local crust assimilation within the Flatreef, northern limb of the Bushveld Igneous Complex, using sulfur isotopes and trace element geochemistry

Evan Keir-Sage; Matthew I. Leybourne; Pedro J. Jugo; Danie F. Grobler; Cédric C. Mayer
Mineralium Deposita · Vol. 56, Issue 1 · pp. 91-102 · 2021

Abstract

The proximity to metasedimentary footwall rocks relative to platinum group element (PGE) mineralized intrusive rocks in the northern limb of the Bushveld Igneous Complex (BIC) has resulted in complex local contamination in the intrusions. To assess the extent of incorporation of non-magmatic material and its effects on PGE mineralization, major element, trace element, and S isotopic data were collected from drill core UMT094 on the Turfspruit farm, where core logging has shown that the mineralized Platreef, forming the Flatreef deposit, is located stratigraphically well above local sedimentary footwall rocks. The S isotopic data combined with whole rock geochemistry data (including CaO/Al 2 O 3 , (V/Ti) PM , (Ni/Cr) PM , S/Se, loss on ignition) were used to assess incorporation of a range of local footwall material. The δ 34 S data show a steady decrease from the footwall assimilation zone (δ 34 S typically + 8 to + 9‰, maximum 12‰) to near constant δ 34 S values (δ 34 S < + 4‰) below the main PGE reef. Similar values have been documented for the Merensky Reef in the eastern and western limbs of the BIC (δ 34 S ~ 0 to + 3.5‰). Other geochemical parameters, such as S/Se and CaO/Al 2 O 3 , also match the ranges documented for the Merensky Reef elsewhere in the BIC. In addition, parameters such as whole rock V/Ti, normalized to primitive mantle (V/Ti) PM , are shown to be useful indicators of contamination and the type of contaminant with 1 < (V/Ti) PM < 2 for uncontaminated magmatic units; [V/Ti] pm > 2 for shale assimilation; and [V/Ti] pm < 1 for carbonate assimilation. The results suggest that the main PGE mineralization in the Flatreef deposit formed without significant in situ contamination and that the primary mechanism of PGE mineralization in the Platreef at Turfspruit was no different than the mechanism that generated the Merensky Reef in the eastern and western limbs of the BIC.

Bibliographic Information

JournalMineralium Deposita
PublisherSpringer
Publication Date2021-01-01
Publication Year2021
Volume56
Issue1
Pages91-102
Document TypeJournal Article
Print ISSN0026-4598
eISSN1432-1866
DOI10.1007/s00126-020-01024-1

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Journal Homepagehttps://www.springer.com/journal/126
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