印度中部Bastar克拉通Gondpipri基性-超镁铁质杂岩中Tsumoite (BiTe)及相关Ni-PGE矿化:矿物学及成因意义

M. Dora, H. Singh, A. Kundu, M. Shareef, K. Randive, S. Joshi
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引用次数: 6

摘要

本文报道了在印度中部Gondpipri基性-超镁铁杂岩Heti Cu-Ni-PGM远景区发现的一种碲化铋(Tsumoite)。Gondpipri杂岩由若干个构造断裂的辉长岩-辉长岩-斜长辉长岩-橄榄辉长岩-辉长辉长岩组成,分布在~ 10 km长的闪长岩(TTG)和绿辉岩-暗长岩套中。成矿发生在由辉长岩变体赋存的硫化物带。寄主岩石已变形变质至麻粒岩级,并受到不同程度的热液蚀变作用。矿化主要有黄铜矿、镍黄铁矿、磁黄铁矿、古巴铜矿、针勒矿和黄铁矿。除此之外,还存在(1)闪辉石(2)闪辉石,以蒙脱石、梅伦斯特、Pd-mellonite和Pt-Pd-Te-Bi-Fe-S合金的形式存在。研究表明,成矿分岩浆期和热液期,分别与富cu硫化物、膨润土和PGM的再活化、输运及其在氢硅酸盐蚀变带的再沉积有关。在不同的fS2、T和fTe2条件下,Heti矿化可能是由于Te和S总浓度的变化和(或)冷却而形成的。由于S的作用有限,Te和冷却是影响硫化土矿物学和组成及伴生矿化的重要因素。矿化以两种不同的赋存方式发生。早期矿化表现为硫化物的泡状、斑点状和浸染状,即磁黄铁矿、黄铜矿、镍黄铁矿和少量黄铁矿±PGM,而后期矿化表现为细条纹状、少量硫化物脉状,即黄铁矿、针勒矿、立方铁矿、sijenite、tsumoite和±PGM。河堤地区的矿物组合和结构关系表明,在裂缝和次生硅酸盐中有沸石和伴生PGM的沉淀,证实了它们的热液成因。
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Tsumoite (BiTe) and associated Ni-PGE mineralization from Gondpipri mafic-ultramafic complex, Bastar Craton, Central India: mineralogy and genetic significance
This paper reports the occurrence of Tsumoite (a bismuth telluride) in the Heti Cu-Ni-PGM prospect, Gondpipri mafic-ultramafic complex, Central India. The Gondpipri complex consists of several tectonically dismembered gabbronorite-gabbro-anorthositic gabbro — olivine gabbro -websterite disposed in ∼10 km long tonalite-trondhjemitegranodiorite (TTG) and charnockite-enderbite suite of rocks. The mineralization occurs in the sulphide zone hosted by gabbro variants. The host rocks have been deformed and metamorphosed to granulite grade and subjected to various degrees of hydrothermal alteration. The mineralization comprises chalcopyrite, pentlandite, pyrrhotite, cubanite, millerite, and pyrite. In addition to these, occur (1) tsumoite (2) PGM in the form of moncheite, merenskyite, Pd-mellonite, and Pt-Pd-Te-Bi-Fe-S alloy.The present study indicates that the mineralization occurs in two stages related to: (i) magmatic and (ii) hydrothermal remobilization and transport of Cu-rich sulphides, tsumoite and PGM, and their re-deposition in hydrosilicate alteration zones. It is possible that the mineralization at Heti formed at different stages of bismuth activity under variable fS2, T, and fTe2 conditions due to change in total concentration of Te and S and /or cooling. Since the role of S is limited, Te and cooling are important factor influencing mineralogy and composition of tsumoite and associated mineralization. Mineralization occurs in two different modes of occurrences. The early mineralisation occur as blebs, specks and dissemination of sulphides, viz. pyrrhotite, chalcopyrite, pentlandite and minor pyrite ± PGM, whereas later mineralisation occur as stringers, minor veins of sulphides viz. pyrite, millerite, cubanite, sijenite, tsumoite and ± PGM.Mineral assemblages and textural relationships at Heti has indicated precipitation of tsumoite and associated PGM along fractures and secondary silicates, which confirms their hydrothermal origin.
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Central European Journal of Geosciences
Central European Journal of Geosciences GEOSCIENCES, MULTIDISCIPLINARY-
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