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Pyrite compositions from VHMS and orogenic Au deposits in the Yilgarn Craton, Western Australia: Implications for gold and copper exploration

机译:西澳大利亚州伊尔加恩克拉顿的VHMS和造山型金矿中的硫铁矿组成:对金和铜的勘探意义

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The Archaean Yilgarn Craton (Western Australia) is a world-class metallogenic province, hosting considerable resources of Au, Ag, Ni, Cu, Zn and Fe. Here we present trace element compositions of pyrite from >30 orogenic Au and 5 volcanic hosted massive sulphide (VHMS) deposits across the Yilgarn. Pyrites from VHMS deposits tend to have higher Sn, Se, Cu, Pb, Bi and lower Ni relative to orogenic deposits. VHMS deposit pyrites commonly have Co > Ni, As > 100Au, Te > Au, Se > Te. Orogenic gold deposits could be subdivided based on association of Au with As or Te. Pyrites from Au-As ores generally have Pb/Bi > 5, Se/Te > 5, Pb/Sb < 5 and Tl/Te > 100 and the majority of Au is refractory (in pyrite structure). At the same time Au-Te association pyrites are characterised by lower values of Pb/Bi, Se/re and Tl/Te, higher values of Ag/Au, Pb/Sb and Au generally resides in inclusions of different compositions. Our data can be used at the exploration stage to distinguish between VHMS vs Orogenic Au signatures. For all studied deposits inclusion populations are summarised with implications for Au and Ag deportment. Orogenic Au deposits from the Yilgarn mostly have multistage formation histories reflected in the presence of multiple generations of pyrites. However, only some deposits record multiple high Au mineralisation events. (C) 2016 Elsevier B.V. All rights reserved.
机译:古生的Yilgarn Craton(西澳大利亚州)是世界一流的成矿省,拥有大量的Au,Ag,Ni,Cu,Zn和Fe资源。在这里,我们介绍了在伊尔加尔恩地区> 30个造山型金矿和5个火山寄主块状硫化物(VHMS)矿床中黄铁矿的微量元素组成。相对于造山矿床,来自VHMS矿床的硫铁矿倾向于具有较高的Sn,Se,Cu,Pb,Bi和较低的Ni。 VHMS沉积黄铁矿通常具有Co> Ni,As> 100Au,Te> Au,Se> Te。可以根据Au与As或Te的关联来划分造山金矿床。来自Au-As矿石的黄铁矿通常具有Pb / Bi> 5,Se / Te> 5,Pb / Sb <5和Tl / Te> 100,并且大多数Au是难熔的(呈黄铁矿结构)。同时,Au-Te缔合黄铁矿的特征在于较低的Pb / Bi,Se / re和Tl / Te,较高的Ag / Au,Pb / Sb和Au通常存在于不同组成的夹杂物中。我们的数据可用于勘探阶段,以区分VHMS和造山金特征。对于所有研究的矿床,总结了总含金量,对金和银的迁移有影响。 Yilgarn的造山型金矿床大多具有多阶段的形成历史,反映出存在多代黄铁矿。但是,只有一些矿床记录了多个高金矿化事件。 (C)2016 Elsevier B.V.保留所有权利。

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