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首页> 外文期刊>Mineralogy and Petrology >Gold scavenged by bismuth melts:An example from Alpine shear-remobilizates in the Highis Massif, Romania
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Gold scavenged by bismuth melts:An example from Alpine shear-remobilizates in the Highis Massif, Romania

机译:铋熔体清除黄金的例子:罗马尼亚Highis Massif的高山剪切活化剂的例子

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摘要

Gold mineralization occurs in the Soimus Ilii vein, the main Cu prospect in the Highis. Massif, Western Apuseni Mts., Romania. The Highis Massif is part of the Highis. Biharia Shear Zone, a 320-300 Ma Variscan greenschist belt, with a 114-100 Ma Alpine overprint. In Highis, phyllonites enclose an igneous core consisting of an Early Permian basic complex intruded by Middle Permian granitoids. The vein is hosted within basalt hornfels at its contact with the 264 Ma Jernova granite. Gold is not only present as native gold, but also as jonassonite (ideally AuBi_5S_4). The latter occurs as inclusions 1-30 urn in size in chalcopyrite; microanalysis gives the empirical formulae Au_(1.02)(Pb_(0.47)Bi_(4.51))_(4.98)S_4. The two Au minerals are spatially associated with Bi-(Pb) sulfosalts (oversubstituted bismuthinite, cosalite) and sulfotellurides/selenides (ingo-dite, ikunolite and laitakarite) in blebs/patches, mainly hosted in chalcopyrite. This Au-Bi-Te association overprints an earlier, chalcopyrite-quartz assemblage, occurring as trails along discrete zones of brecciation that crosscut former mineral boundaries. Curvilinear and cuspate boundary textures within the blebs/patches suggest deposition in a molten form. Mineral associations in combination with phase relations indicate that the Au-Bi-Te association formed as a result of melting of pre-existing native Bi (and possibly sulfosalts) at 400 deg C under sulfidation conditions. These melts incorporated Au, Pb, Te and S as they moved in the vein during shearing and were locked within dilational sites. Native Bi occurs as coarse aggregates along vein margins, but in the Au-Bi-Te association, it is present only as small droplets in shear gashes, never together with other Bi- and Au-minerals. The Bi-derived melts are part of an internal remo-bilizate which also includes chlorite and adularia. Minerals in the system Au-Bi-Te were deposited from a neutral low reducing fluid during Alpine shearing in the Early Cretaceous. The fluid also assisted solid-state mobilisation of chalcopyrite and cobal-tite. This study illustrates the significant potential of Bi, a low melting-point chalcophile element (LMCE), to act as Au scavenger at temperatures as low as 400 deg C.
机译:金矿化发生在Soimus Ilii脉中,Highis的主要铜矿床。地块,西部Apuseni山,罗马尼亚。 Highis地块是Highis的一部分。 Biharia Shear Zone,一条320-300 Ma的Variscan greenschist带,上面印有114-100 Ma的高山叠印。在Highis中,压纹岩包裹着火成岩芯,该岩芯由早二叠世的基本复合体组成,并由中二叠纪的花岗岩侵入。该脉与264 Ma Jernova花岗岩接触时位于玄武岩角岩中。金不仅以本机金的形式存在,而且还以钠钠榴石(理想的是AuBi_5S_4)的形式存在。后者以黄铜矿中大小为1-30 um的夹杂物形式出现;微观分析给出了经验公式Au_(1.02)(Pb_(0.47)Bi_(4.51))_(4.98)S_4。这两种金矿物质在气泡/斑块中与Bi-(Pb)硫盐(过度取代的双变菱锰矿,共沸石)和磺碲化物/硒化物(硬石膏,伊库诺石和laitakarite)在空间上相关,主要存在于黄铜矿中。这个Au-Bi-Te协会覆盖了一个较早的黄铜矿-石英组合物,沿着沿着过去的矿物边界横穿的不连续断裂区域的痕迹出现。气泡/斑点内的曲线和尖锐的边界纹理建议以熔融形式沉积。矿物缔合相关系表明,Au-Bi-Te缔合是由于硫化条件下预先存在的天然Bi(可能还有硫盐)在400摄氏度下熔化而形成的。这些熔体在剪切过程中在静脉中移动时掺入了Au,Pb,Te和S,并被锁定在扩张部位。天然铋以沿脉缘的粗聚集体形式出现,但在Au-Bi-Te协会中,它仅以小液滴形式出现在剪切缝隙中,从未与其他Bi-和Au矿物一起存在。源自Bi的熔体是内部remobilizate的一部分,也包括亚氯酸盐和Adularia。在早白垩世的高山剪切过程中,Au-Bi-Te系统中的矿物是从中性的低还原性流体中沉积的。该流体还有助于黄铜矿和钴铁矿的固态动员。这项研究表明,Bi(一种低熔点亲硫性元素(LMCE))在低至400摄氏度的温度下具有作为Au清除剂的巨大潜力。

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