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首页> 外文期刊>Mineralium deposita >Fluid evolution in the Baia Mare epithermal gold/polymetallic district, Inner Carpathians, Romania
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Fluid evolution in the Baia Mare epithermal gold/polymetallic district, Inner Carpathians, Romania

机译:罗马尼亚内喀尔巴阡Baia Mare超热金/多金属区的流体演化

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The Baia Mare district (Romania) represents a complex segment of the Neogene/Quaternary, subduction-related, volcanic chain of the Carpathians. In this province, the calc-alkaline volcanism and associated mineralization are closely related to a major strike-slip fault and an underlying pluton. The ore deposits of the district have many features typical of low-sulfidation (or adularia-sericite) epithermal deposits. The combination of fluid-inclusion microthermometry, Raman spectroscopy, bulk crush-leach analysis, laser ablation-optical emission spectrometry (LA-OES) of individual fluid inclusions and stable isotope data has been used to characterize the ore-forming solutions involved with gold/polymetallic mineralization in three of the largest deposits. Ore fluids at Baia Sprie, Cavnic and Sasar deposits had temperatures of 320 to 150 deg C and salinities in the range 0-21 wt percent NaCl equiv. During phreato-magmatic activity, fracturing and periods of vein dilation, the pressure fluctuations may have caused boiling. The hydrothermal fluids were Na-K-Li-Ca chloride solutions with lesser amounts of SO_4 and F. The Na/K ratios and the stable isotope compositions are consistent with equilibration of the fluids with country rocks at progressively lower temperatures. The halogen ratios (Br/Cl X 10~3 in the range 0.13-1.21), together with sulfur isotopic systematics (delta~(34)S = 0.3-5.2 per mil), are consistent with a dominantly magmatic origin of the solutes, and probably of the ore fluids themselves.
机译:拜亚马雷区(罗马尼亚)代表喀尔巴阡山脉新近纪/第四纪俯冲相关火山链的复杂部分。在该省,钙碱性火山作用和相关的矿化作用与一个主要的走滑断层和潜在的岩体密切相关。该地区的矿床具有许多低硫(或绢云母)超热矿床的典型特征。流体包裹体显微热分析法,拉曼光谱法,块体压滤浸出分析法,单个流体包裹体的激光烧蚀-光发射光谱法(LA-OES)和稳定的同位素数据的结合已用于表征金/三个最大矿床中的多金属矿化。 Baia Sprie,Cavnic和Sasar矿床的矿液温度为320至150摄氏度,盐度范围为0-21 wt%NaCl当量。在深部岩浆活动,破裂和静脉扩张期,压力波动可能引起沸腾。水热流体是Na-K-Li-Ca氯化物溶液,其中SO_4和F的含量较少。Na/ K比和稳定的同位素组成与在逐渐降低的温度下流体与乡村岩石的平衡相一致。卤素比率(Br / Cl X 10〜3在0.13-1.21范围内)以及硫同位素系统(δ〜(34)S = 0.3-5.2 / mil)与溶质的主要岩浆成因相一致,并且可能是矿石流体本身。

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