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Specific genesis of gold and silver sulfides at the Yunoe deposit (Magadan Region, Russia)

机译:Yunoe矿床(俄罗斯马达加丹地区)的金和银硫化物的特殊成因

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Hypogene uytenbogaardtite, acanthite, and native gold parageneses have been revealed at the epithermal Yunoe gold-silver deposit, Magadan Region, Russia. Thermodynamic calculations in the system Si-Al-Mg-Ca-Na-K-Fe-Pb-Zn-Cu-Ag-Au-S-C-Cl-H2O were carried out at 25-400 degrees C and 1-1000 bars to elucidate the role of hydrothermal solutions in the formation of gold and silver sulfides. Several most probable scenarios for ore-forming processes in the deposit are considered: (1) interaction between cold and heated meteoric waters percolating along cracks from surface to depth and reacting with the host rock-rhyolite; (2) evolution of ascending postmagmatic fluid resulting in chloride-carbonic acid solution, which interacts with rhyolite at 100-400 degrees C; (3) stepwise cooling of hydrothermal ore-bearing solutions; (4) rapid cooling of ore-bearing hydrotherms on their mixing with cold surface waters. Rhyolite with Pb, Zn, Cu, Cl, S, Ag, and Au clarke contents was taken as an initial host rock. Calculations by model 3 showed the possible formation of uytenbogaardtite and petrovskaite at low-temperature stages. Gold and silver sulfides can be deposited during the mixing of ore-bearing acid chloride-carbonic acid hydrothermal solutions with surface alkaline waters.
机译:在俄罗斯马加丹州的超热尤诺金银矿床中发现了次生uytenbogaardtite,方尖石和天然金共生。 Si-Al-Mg-Ca-Na-K-Fe-Pb-Zn-Cu-Ag-Au-SC-Cl-H2O系统中的热力学计算是在25-400摄氏度和1-1000巴下进行的水热溶液在硫化金和硫化银形成中的作用。该矿床中成矿过程的几种最可能的情况被考虑:(1)冷热水和热水之间的相互作用,从地表到深度沿裂缝渗透,并与主体流纹岩反应。 (2)上升的岩浆后流体演化,生成氯化物-碳酸溶液,在100-400摄氏度时与流纹岩相互作用。 (3)逐步冷却热液含矿溶液; (4)含矿热液与冷地表水混合后迅速冷却。以铅,锌,铜,氯,硫,银和金克拉克含量的流纹岩为初始基质岩。通过模型3进行的计算表明,在低温阶段可能会形成Uytenbogaardtite和petrovskaite。含矿的酰氯-碳酸水热溶液与表面碱性水混合时,可能会沉积出硫化金和硫化银。

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