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首页> 外文期刊>Transactions of the Institutions of Mining and Metallurgy, Section B. Applied Earth Science >The mineralogy and petrology of platinum-group element-bearing sulphide mineralisation within the Grasvally Norite-Pyroxenite-Anorthosite (GNPA) member, south of Mokopane, northern Bushveld Complex, South Africa
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The mineralogy and petrology of platinum-group element-bearing sulphide mineralisation within the Grasvally Norite-Pyroxenite-Anorthosite (GNPA) member, south of Mokopane, northern Bushveld Complex, South Africa

机译:南非北部布什维尔德综合体Mokopane南部Grasvally Norite-Pyroxenite-Anorthosite(GNPA)成员内含铂族元素的硫化物矿化的矿物学和岩石学

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The Grasvally Norite-Pyroxenite-Anorthosite (GNPA) member is a 400 to 800 m thick cumulate package located in the northern limb of the Bushveld Complex, south of the town of Mokopane. On the farm Rooipoort it forms the lowermost unit of the magmatic stratigraphy, overlying Transvaal Supergroup sediments, whereas further south on the farm Grasvally it overlies Lower Zone rocks of the Bushveld Complex. The GNPA member is divided into three units; the Lower Mafic Unit (LMF), the Lower Gabbronorite Unit (LGN) and the Mottled Anorthosite Unit (MANO). Platinum-group element (PGE) mineralisation is closely associated with base metal sulphides (BMS) and is confined to the LMF and MANO where PGE grades range from 1 to 4 ppm (3PGE+Au). A number of distinct BMS assemblages are observed throughout the area and are interpreted to be the result of a combination of primary magmatic processes and low temperature alteration. In areas where the GNPA member is underlain by Lower Zone rocks, a pyrrhotite-chalcopyrite-pentlandite sulphide assemblage dominates, representing initial orthomagmatic sulphide mineralisation. Late-stage low temperature alteration has significantly altered much of the sulphide mineralogy, producing two secondary pyrite-chalcopyrite-pentlandite + pyrrhotite ± millerite and pyrite-pentlandite ± millerite sulphide assemblages. The primary assemblage was variably altered by crystallisation of pyrite and millerite from pyrrhotite and pentlandite at temperatures below 230°C. Sulphide replacement was associated with the precipitation of quartz and secondary silicates. This replacement of sulphides is more prevalent towards the base of the unit where the GNPA member is underlain by quartzites. These features suggest a strong footwall control over the low temperature alteration and thus the extent of the development of the secondary sulphide assemblages.
机译:地名Norite-Pyroxenite-Anorthosite(GNPA)成员是一个400至800 m厚的堆积包裹,位于Mokopane镇以南的Bushveld Complex的北肢。在Rooipoort农场上,它形成了岩浆地层的最低单元,覆盖了德兰士瓦河超群沉积物,而在农场上更南的Grasvally上,则覆盖了Bushveld Complex的低层岩石。 GNPA成员分为三个单位;下黑手党单位(LMF),下辉长石单位(LGN)和斑驳的钙长石单位(MANO)。铂族元素(PGE)矿化与贱金属硫化物(BMS)密切相关,并且仅限于LMF和MANO,其中PGE的品位范围为1-4 ppm(3PGE + Au)。在整个区域内观察到许多独特的BMS组合,它们被解释为主要岩浆作用过程和低温变化的结合。在GNPA成员被低层岩石所覆盖的地区,黄铁矿-黄铜矿-绿铁矿硫化物组合占主导地位,代表了最初的顺磁性硫化物矿化。后期的低温蚀变已显着改变了大部分硫化物的矿物学特征,产生了两个次生的黄铁矿-黄铜矿-膨润土+硫铁矿±辉石和黄铁矿-膨润土±辉石硫化物组合。通过在低于230°C的温度下从黄铁矿和方铁矿中结晶黄铁矿和Millerite,可以改变一次组装。硫化物的置换与石英和次硅酸盐的沉淀有关。硫化物的这种替换在GNPA成员被石英岩覆盖的单元底部更为普遍。这些特征表明对低温变化以及继发硫化物组合的发展程度有很强的控制作用。

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