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首页> 外文期刊>Geochemistry International >Mineralizing Fluid Composition and Genesis of Gold -Sulfide-Telluride Mineralization at the Megdradzor Deposit: Evidence from Fluid Inclusions
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Mineralizing Fluid Composition and Genesis of Gold -Sulfide-Telluride Mineralization at the Megdradzor Deposit: Evidence from Fluid Inclusions

机译:Megdradzor矿床的矿化流体成分和金-硫化-碲化金成矿:来自流体包裹体的证据

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摘要

Evidence provided by fluid inclusions points to a broad interval of physical condition and fluid compositions at which a the mineralization as produced: temperatures of 360-132 deg c, pressures of 2180-130 bar, fluid salinities of 18.5-1.4 wt % equiv. NaCl , 5.7-0.9 mol CO-2/kg of solution, and 4X10~(-2) to 10~(-2) mol H_2S/kg of solution . The solutions are determined to contain Cl(0.77-0.24 mol/kg of solution) , Na(0.7-0.3 mol/kg of solution) and K(0.14-1.5X10~(-3) mol/kg of solution) . thermodynamic calculation indicate that the most probable deposition factors of metals early in the mineralizing process were an increase in the pH and a decrease in the temperature, perhaps, due to the ascent of the mineralizing solution and its mixing with meteoric waters. The origin of the telluride mineralization was controlled by the involvement of fluids of other geneses (probably related to connate solutions) into the hydrothermal system . The early hydrothermal mineral assemblages are demonstrated to have been formed at relatively high temperatures and pressures by fluids compositionally most close to magmatic fluids. Gold bearing mineral assemblages were deposited in environments most close to epithermal systems. The fact that gold-bearing mineral assemblages inherit certain features from early assemblages suggests that the Megradzor deposit was produced with the participation of deep-seated fluids
机译:流体包裹体提供的证据表明,所产生矿化的物理条件和流体组成的范围很广:温度为360-132℃,压力为2180-130 bar,流体盐度为18.5-1.4 wt%当量。 NaCl,5.7-0.9 mol CO-2 / kg溶液和4X10〜(-2)至10〜(-2)mol H_2S / kg溶液。确定溶液包含Cl(0.77-0.24 mol / kg溶液),Na(0.7-0.3 mol / kg溶液)和K(0.14-1.5X10〜(-3)mol / kg溶液)。热力学计算表明,在矿化过程早期,金属最可能的沉积因素是pH升高和温度降低,这可能是由于矿化溶液的上升及其与流水的混合所致。碲化物矿化的成因受其他成因流体(可能与原生溶液有关)的参与控制到热液系统中。事实证明,早期的热液矿物组合是在相对较高的温度和压力下由组成最接近岩浆流体的流体形成的。含金矿物组合沉积在最接近超热系统的环境中。含金矿物组合从早期组合继承某些特征这一事实表明,Megradzor矿床是在深层流体的参与下生产的

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