南非Bushveld火成岩杂岩北翼UG-2铬铁矿的硫化物矿物化学和铂族矿物

Malose M. Langa, P. Jugo, M. Leybourne, D. Grobler
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引用次数: 2

摘要

UG-2铬铁矿层铂族元素含量较高,是Bushveld火成岩杂岩东西翼的重要标志层,是目前世界上最大的铂族元素铬铁矿资源。相比之下,对其北部分支的地层等效物“UG-2等效”(UG-2E)铬铁矿的了解则少得多。近年来的铬铁矿矿物化学研究表明,UG-2与UG-2E剖面具有相似性,但UG-2E部分受到局部变质沉积岩同化的污染。在这里,我们提供了UG-2E样品中硫化物矿物和铂族矿物的详细特征,并将结果与UG-2参考样品的数据进行了比较。岩石学观察、电子探针显微分析、激光烧蚀-电感耦合等离子体质谱分析、扫描电镜材料定量评价及δ34S同位素分析结果表明:(1)UG-2E和UG-2中硫化物矿物主要为戊黄铁矿-黄铜矿-磁黄铁矿,但UG-2E中磁黄铁矿含量明显高于UG-2E, UG-2中几乎不含磁黄铁矿;(2) UG-2E的镍黄铁矿铁含量显著高于UG-2;(3)两种铬铁矿硫化物矿物中铂族元素含量不同;(4) UG-2中铂族矿物以砷化物和碲化铋为主,以合金和铂族元素硫化物矿物为主;(5)硫化物矿物化学和δ34S值表明UG-2E存在一定的地壳污染;(6) UG-2E和UG-2的硫化物矿物和次生硅酸盐矿物结构显示了较小的毫米至厘米尺度的热液蚀变。根据我们的观察和结果,我们认为北翼的UG-2E铬铁矿与东、西翼的UG-2铬铁矿相当,它们在侵位过程中受到了德兰士瓦超群下盘岩石的同化。污染导致UG-2E硫化物矿物元素含量、铂族矿物类型和丰度与Bushveld其他地区的UG-2不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sulfide mineral chemistry and platinum-group minerals of the UG-2 chromitite in the northern limb of the Bushveld Igneous Complex, South Africa
The UG-2 chromitite layer, with its elevated platinum-group element content, is a key marker horizon in the eastern and western limbs of the Bushveld Igneous Complex and the largest platinum-group element chromite-hosted resource of its kind in the world. In contrast, much less is known about its stratigraphic equivalent in the northern limb, the “UG-2 equivalent” (UG-2E) chromitite. Recent studies on chromite mineral chemistry show similarities between the UG-2 and sections of the UG-2E, but also that the UG-2E was partially contaminated by assimilation of local metasedimentary rocks. Here, we provide a detailed characterization of sulfide minerals and platinum-group minerals in a suite of samples from the UG-2E and compare the results with data obtained from a reference suite of samples from the UG-2. Results from petrographic observations, electron probe microanalysis, laser ablation-inductively coupled plasma-mass spectrometry, quantitative evaluation of materials by scanning electron microscopy, and δ34S isotopes show that: (1) sulfide minerals in the UG-2E and UG-2 consist mainly of pentlandite-chalcopyrite-pyrrhotite, but pyrrhotite is significantly more abundant in the UG-2E and almost absent in the UG-2; (2) iron contents in pentlandite from the UG-2E are significantly higher than in the UG-2; (3) platinum-group element contents within sulfide minerals are different between the two chromitites; (4) UG-2E platinum-group minerals are dominated by arsenides and bismuthotellurides, and by alloys and platinum-group element-sulfide minerals in the UG-2; (5) sulfide mineral chemistry and δ34S values indicate some crustal contamination of the UG-2E; and (6) sulfide mineral and secondary silicate mineral textures in both the UG-2E and UG-2 are indicative of minor, millimeter- to centimeter-scale, hydrothermal alteration. From our observations and results, we consider the UG-2E chromitite in the northern limb to be the equivalent to the UG-2 in the eastern and western limbs that has been contaminated by assimilation of Transvaal Supergroup footwall rocks during emplacement. The contamination resulted in UG-2E sulfide mineral elemental contents and platinum-group mineral types and abundances that are distinct from those of the UG-2 in the rest of the Bushveld.
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