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首页> 外文期刊>Mineralogical Magazine >Mineralogical and S isotopic features of the supergene profile of the Zapadno-Ozernoe massive sulphide and Au-bearing gossan deposit, South Urals
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Mineralogical and S isotopic features of the supergene profile of the Zapadno-Ozernoe massive sulphide and Au-bearing gossan deposit, South Urals

机译:南乌拉尔Zapadno-Ozernoe块状硫化物和含Au的戈桑矿床的超基因剖面的矿物学和S同位素特征

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The profile of the supergene zone of the Zapadno-Ozernoe massive sulphide Cu-Zn deposit differs from the classic model (Emmons, 1917) in that it includes a prominent dark sooty subzone rich in secondary sulphides. This subzone is situated above residual pyrite sands, which overlie the massive sulphide body and below quartz-baryte leached sands. It contains a diverse mineral assemblage which consists of secondary sulphides such as galena, sphalerite, metacinnabar, Se-bearing pyrite–dhzarkenite series, tiemannite, native Au, native S and native Se, and unidentified sulphosalts of Ag and Hg. The very light S isotope composition of the secondary sulphides (lowest values 34S = –17.2 VCDT) in comparison with primary pyrite ~0 and baryte +18.4 is indicative of bacterial sulphate reduction. The overlying oxidized part of the supergene column contains minerals of the jarosite–beudantite–segnitite series. The maximum concentrations of Au, up to 150 ppm, occur in the lower part of the profile. The atypical structure, mineral assemblage and S isotope composition of the secondary sulphides in the dark layer of the supergene profile are indicative of particular geochemical conditions due to the existence of a stagnant water body that gave rise to intense bacterial activity, in turn controlled by fluctuations in the redox boundary.
机译:Zapadno-Ozernoe块状 硫化物Cu-Zn矿床的超基因带的剖面与经典模型(Emmons,1917)富含第二硫化物的 。该分区位于残留的 硫铁矿砂之上,该硫铁矿砂覆盖在块状硫化物体之上,并位于 石英-黄水晶浸出砂之下。它包含多种矿物组合物,其中包括二次硫化物,如方铅矿,闪锌矿, metacinnabar,含硒黄铁矿-dhzarkenite系列,铁锰矿, 天然金,天然S和天然Se,以及未识别的Ag和Hg的硫盐 。次级 硫化物的极轻S同位素组成(最低值 34 S = –17.2 VCDT)与初级黄铁矿〜0和重晶石的比较 +18.4表示细菌 硫酸盐减少。超基因 列的上层氧化部分包含黄钾铁矾–膨润土–菱镁矿 系列的矿物。最大的Au浓度最高可达150 ppm,发生在轮廓的下部 。超基因剖面暗层中次生硫化物 的非典型结构,矿物 组合和S同位素组成指示了 特殊的地球化学条件导致存在 死水的水体,引起强烈的细菌活性, 依次受氧化还原边界的波动控制。

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