首页> 外文期刊>Minerals >The Gersdorffite-Bismuthinite-Native Gold Association and the Skarn-Porphyry Mineralization in the Kamariza Mining District, Lavrion, Greece ?
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The Gersdorffite-Bismuthinite-Native Gold Association and the Skarn-Porphyry Mineralization in the Kamariza Mining District, Lavrion, Greece ?

机译:希腊拉夫里翁Kamariza矿区的Gersdorffite-Bistuthinite-Native黄金协会和Skarn-Porphyry矿化区?

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Vein-type Pb-Ni-Bi-Au-Ag mineralization at the Clemence deposit in the Kamariza and “km3” in the Lavrion area, was synchronous with the intrusion of a Miocene granodiorite body and related felsic and mafic dikes and sills within marbles and schists in the footwall of (and within) the Western Cycladic detachment system. In the Serpieri deposit (Kamariza area), a porphyry-style pyrrhotite-arsenopyrite mineralized microgranitic dike is genetically related to a garnet-wollastonite bearing skarn characterized by a similar base metal and Ni (up to 219 ppm) enrichment. The Ni–Bi–Au association in the Clemence deposit consists of initial deposition of pyrite and arsenopyrite followed by an intergrowth of native gold-bismuthinite and oscillatory zoned gersdorffite. The zoning is related to variable As, Ni, and Fe contents, indicating fluctuations of arsenic and sulfur fugacity in the hydrothermal fluid. A late evolution towards higher sulfur fugacity in the mineralization is evident by the deposition of chalcopyrite, tennantite, enargite, and galena rimming gersdorffite. At the “km3” locality, Ni sulfides and sulfarsenides, vaesite, millerite, ullmannite, and polydymite, are enclosed in gersdorffite and/or galena. The gersdorffite is homogenous and contains less Fe (up to 2 wt.%) than that from the Clemence deposit (up to 9 wt.%). Bulk ore analyses of the Clemence ore reveal Au and Ag grades both exceeding 100 g/t, Pb and Zn 1 wt.%, Ni up to 9700 ppm, Co up to 118 ppm, Sn 100 ppm, and Bi 2000 ppm. The “km3” mineralization is enriched in Mo (up to 36 ppm), Ni (1 wt.%), and Co (up to 1290 ppm). Our data further support a magmatic contribution to the ore-forming fluids, although remobilization and leaching of metals from previous mineralization and/or host rocks, through the late involvement of non-magmatic fluid in the ore system, cannot be excluded.
机译:在Kamariza的Clemence矿床和Lavrion地区的“ km3”处的静脉型Pb-Ni-Bi-Au-Ag矿化与中新世花岗闪长岩体以及相关的长笛岩和镁铁矿脉和基岩在大理石和在西部基克拉迪脱离体系的下盘(和内部)片岩。在Serpieri矿床(Kamariza地区),斑岩型黄铁矿-毒砂矿化微晶石堤与一种石榴石-硅灰石矽卡岩具有遗传关系,其特征是相似的贱金属和Ni(最高219 ppm)富集。 Clemence矿床中的Ni-Bi-Au缔合包括黄铁矿和毒砂的初始沉积,然后是天然金-双菱镁矿和振荡带状的Gersdorffite的共生。分区与变量As,Ni和Fe含量有关,表明热液中砷和硫的逸度波动。矿化过程中向黄铜矿,黄铁矿,顽固辉石和方铅矿镶边辉石的沉积证明了向更高的硫逸度的晚期发展。在“ km3”处,硫化镍和亚砷化镍,镁铝矿,镁橄榄石,钙锰矿和多水银矿被包裹在硅藻土和/或方铅矿中。钙锰矿是均质的,并且比Clemence矿床中的铁(最多9重量%)含有更少的Fe(最多2重量%)。对Clemence矿石的大块矿石分析显示,金和银品位均超过100 g / t,铅和锌> 1 wt。%,镍最高9700 ppm,钴最高118 ppm,锡> 100 ppm,铋> 2000 ppm 。 “ km3”矿化区富含Mo(最高36 ppm),Ni(> 1 wt。%)和Co(最高1290 ppm)。我们的数据进一步支持了岩浆对成矿流体的贡献,尽管不能排除由于非岩浆流体的后期介入而使先前矿化和/或主岩中的金属迁移和浸出。

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