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首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Precious metals assemblages at the Mikheevskoe porphyry copper deposit (South Urals, Russia) as proxies of epithermal overprinting
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Precious metals assemblages at the Mikheevskoe porphyry copper deposit (South Urals, Russia) as proxies of epithermal overprinting

机译:Mikheevskoe斑岩铜矿(南乌拉尔,俄罗斯)的贵金属组合作为膜状叠印代理

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Mineral assemblages and formation conditions of precious metals (Au, Ag, PGE) in ores of the Mikheevskoe porphyry copper deposit (South Urals) are the subject of our study. Three mineralization types can be distinguished: (1) Gold-silver-telluride mineralization overlapping porphyry-style bornite-chalcopyrite ores includes native gold (fineness 863-873), electrum (fineness 593-672), galena, hessite, coloradoite, and, more rarely, petzite, stutzite, Au-Ag ditellurides, native tellurium, tellurobismuthite, tetradymite-kawazulite, altaite, and extremely rare melonite NiTe2, merenskyite PdTe2, and sopcheite Ag4Pd3Te4; (2) Gold-arsenopyrite-basemetal mineralization within quartz-tetrahedrite-sphalerite veinlets cutting porphyry-style mineralization; (3) Gold-telluride mineralization with argillic alteration and mineralogically similar to that of type (1) but distinct because of the presence of Au-Ag, Ag, and Pb selenides. Textural relationships supported by fluid inclusions data and chlorite geothermometry provide evidence that occurrence of precious metals minerals at the Mikheevskoe deposit is mostly linked to epithermal overprint of the porphyry mineralization and was deposited at ca. 300-200 degrees C from moderately saline fluids (ca. 5-10 wt%-eq.NaCI). It is suggested that the observed variability in Au and Ag minerals results from small fluctuations of S-2 and/or Te-2 fugacity.
机译:Mikheevskoe Porphyry铜矿床(南乌拉尔)矿石中矿物组合和贵金属(AU,AG,PGE)的形成条件是我们研究的主题。可以区分三种矿化类型:(1)金银蛋白矿化矿化重叠斑岩型铜矿铜矿矿石包括天然金(细度863-873),electrum(Feceneness 593-672),Galena,Hessite,Coloradoite,以及更少数,丝石,斯图里西塔,Au-Ag Ditellides,天然碲,碲肌动蛋白,四元蛋白 - kazulite,Altaite和极其稀有的蛋白质Nite2,MerenskyityPTE2和Sopcheite Ag4PD3Te4; (2)石英 - 四氢盐 - 斯普利氏岩内的金 - 阿塞替石源型矿化,切割斑岩式矿化; (3)金 - 碲化物矿化,具有野石改变,与(1)型,但由于Au-Ag,Ag和Pb Selenides的存在而不同。流体夹杂物数据和氯酸盐地热支持的纹理关系提供了米卡夏普矿床的贵金属矿物质的含量与斑岩矿化的颌骨叠印有关,并在CA沉积。来自中等盐水的300-200摄氏度(约5-10wt%-eq.naci)。建议,AU和AG矿物质的观察到可变性是由S-2和/或TE-2 Fugacity的小波动产生。

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