Formation of the Flatreef deposit, northern Bushveld, by hydrodynamic and hydromagmatic processes

Author:

Maier W. D.ORCID,Abernethy K. E. L.,Grobler D. F.,Moorhead G.

Abstract

AbstractNew lithological and whole rock compositional data show that the main platinum-group element (PGE) horizons of the Flatreef succession show strong compositional similarities to the Merensky and Bastard reefs of the western Bushveld Complex (WBC), notably in terms of many immobile and incompatible minor and trace elements such as TiO2, Zr, Y, and REE. However, Al2O3, CaO, and Na2O contents are markedly lower in the Flatreef, whereas MgO contents are higher. In view of broadly similar silicate mineral compositions in the Flatreef and the WBC reefs, we suggest that the major element compositional differences between the rocks are largely due to higher modal proportions of orthopyroxene and olivine and lower proportions of plagioclase in the Flatreef. The thickness of the mineralised interval is much greater in the Flatreef than in the WBC (several 10 s of m vs ~ 1 m) and the abundance of sulfides in the Flatreef is typically somewhat higher (on average ~ 1.5% vs ~ 1%). These data, complemented by textural observations, are interpreted to reflect enhanced hydrodynamic crystal sorting accompanied by percolation of sulfide melt through incompletely solidified cumulates. Further genetic constraints are provided by metal data: The concentration of Ni (~ 3000 ppm) in the Flatreef is broadly similar to that in the Merensky Reef of the WBC, but Cu contents are markedly higher (average ~ 1500 ppm vs 700 ppm in the WBC). The concentrations of most PGE are slightly lower (Flatreef ~ 1.5–2 ppm Pt, ~ 100–150 ppb Rh; WBC MR 3.7 ppm Pt, 240 ppb Rh), but Pd has broadly similar contents (Flatreef ~ 1.2–2 ppm; WBC MR 1.54 ppm). The relatively high Cu content of the Flatreef is interpreted as a result of assimilation of Cu sulfides from the sedimentary floor rocks. The reason for the enrichment of Pd relative to Pt, especially in the basal rocks, remains unclear. It could reflect mobilisation of Pd via a fluid phase from the country rocks or the interior of the intrusion, relatively enhanced partitioning of Pd into the sulfides, or relative Pt depletion of the earliest magma pulses in response to Pt alloy fractionation triggered by contamination with reducing country rocks.

Funder

Cardiff University

Publisher

Springer Science and Business Media LLC

Subject

Geochemistry and Petrology,Geophysics,Economic Geology

Reference94 articles.

1. Abernethy K (2020) Geochemistry and petrology of the Flatreef, as exposed in deep drill cores UMT 081 and 94, PhD thesis, Cardiff University, 309pp

2. Abernethy K, Maier D, Grobler D, Barnes S-J (2020) Lithogeochemistry of the Flatreef and its floor rocks as intersected by deep drill core UMT081. Min Deposita, special issue

3. Baglow N, Brandl G (2009) The geology to the east of Mokopane, explanation to sheet 2429AA, Council for Geoscience, South Africa

4. Baker SR, Boudreau AE (2019) The influence of the thick banded series anorthosites on the crystallization of the surrounding rock of the Stillwater Complex, Montana. Contrib Mineral Petrol 174. https://doi.org/10.1007/s00410-019-1635-x

5. Ballhaus CG, Stumpfl EF (1985) Occurrence and petrological significance of graphite in the Upper Critical Zone, western Bushveld Complex, South Africa. Earth Planet Sci Lett 74(1):58–68

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