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首页> 外文期刊>New Zealand journal of geology & geophysics >The ultramafic-intermediate Riwaka Complex, New Zealand: summary of the petrology, geochemistry and related Ni-Cu-PGE mineralisation
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The ultramafic-intermediate Riwaka Complex, New Zealand: summary of the petrology, geochemistry and related Ni-Cu-PGE mineralisation

机译:新西兰超镁铁中间Riwaka矿山:岩石学,地球化学和相关的Ni-Cu-PGE矿化概述

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摘要

The Late Devonian ultramafic-intermediate Riwaka Complex represents a rare example of magmatic-related Ni-Cu-platinum group element (PGE) sulphide mineralisation within a convergent margin setting. We provide a comprehensive review of the petrography, geochemistry, geochronology and associated Ni-Cu-PGE sulphide mineralisation for the dominant lithologies of the Riwaka Complex. This study reveals that the c.364Ma Riwaka Complex was likely emplaced within an extensional intra-arc along the paleo-Pacific subduction margin of east Gondwana. Initial primary melts were derived by partial melting of a metasomatised heterogeneous mantle source, and potentially a young oxidised mafic underplate. Primary melts were tholeiitic, S-undersaturated, and enriched in Ni, Cu and PGE. Crystal accumulation (olivine, clinopyroxene, amphibole), fractionation, and minor magma mixing and crustal contamination account for most of the chemical diversity within the Riwaka Complex, and were the processes responsible for inducing S-saturation of the melt. Sulphide mineralisation occurs as disseminated pyrrhotite-pyrite-chalcopyrite-pentlandite in hornblende-bearing clinopyroxenite and gabbro cumulate lithologies, and is restricted to the southern portion of the complex, interpreted to represent the deeper-level conduit system. The northern portion of the complex represents a more evolved higher-level magma chamber.
机译:泥盆纪晚期超镁铁质中间Riwaka岩体代表了与岩浆有关的镍铜铂族元素(PGE)硫化物在会聚边缘范围内矿化的罕见例子。我们对Riwaka矿床的主要岩性提供了岩石学,地球化学,地球年代学以及相关的Ni-Cu-PGE硫化物矿化的综合综述。这项研究表明,c.364Ma Riwaka复合体很可能位于冈多纳东部东部古太平洋俯冲带边缘的伸展弧内。最初的初级熔体是通过交代化的异质地幔源和潜在的年轻氧化镁铁质底板的部分熔体获得的。初生熔体为高熔体,S不饱和,并富含Ni,Cu和PGE。晶体的积累(橄榄石,斜辉石,角闪石),分馏,少量岩浆混合和地壳污染是Riwaka配合物中大部分化学多样性的原因,并且是引起熔体S饱和的过程。硫化物矿化以含角闪石的斜辉石和辉长岩中的散布的黄铁矿-黄铁矿-黄铜矿-方铁矿的形式堆积,并局限于该复合体的南部,被解释为代表更深层的导管系统。建筑群的北部代表了一个演化程度更高的岩浆室。

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