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Active geothermal systems with entrained seawater as analogues for low-sulphidation epithermal mineralization

机译:带有夹带海水的活性地热系统作为低硫化浅成热液矿化的类似物

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摘要

The paradigm for low-sulphidation (LS) volcanic-arc associated mineralization is the active geothermal systems located along the Taupo Volcanic Zone (e.g. Broadlands). However, this analogue is inapt where fluid salinities are consistently in excess of 3.5 wt % NaCl. LS mineralization on Milos (Aegean arc) records high paleofluid-salinities. The δD and δ18O data do not exemplify 18O-shifted meteoric waters—typical of terrestrial geothermal systems. Nor is a submarine origin indicated—stable isotope data show mixing between meteoric, seawater and volcanic-arc gases. Strontium isotope data are comparable to a nearby active seawater-entrained geothermal system. These are features seen in hydrothermal systems associated with emergent volcanoes. For the Milos LS mineralization, high-salinity fluids show it cannot be explained by a Broadlands-type model. The absence of saliferous sequences and significant intrusive rocks preclude these as salinity sources. The similarities between paleo and active systems in terms of salinity, δD–δ18O and strontium isotope systematics strongly suggest that seawater is the main source for Na and Cl. We suggest geothermal systems, containing seawater, associated with emergent volcanoes are an alternative analogue for LS epithermal mineralization. Furthermore, they bridge the gap between submarine, and large-scale terrestrial geothermal systems—the modern analogues for VHMS and epithermal mineralisation in the scheme of intrusion-centered hydrothermal mineralization.
机译:低硫化(LS)火山弧相关矿化的范例是沿陶波火山带(例如Broadlands)分布的活跃地热系统。然而,当流体盐度持续超过3.5 wt%NaCl时,这种类似物是不合适的。芦粟(爱琴海弧)上的LS矿化记录了高古盐度。 δD和δ18O数据不能代表18O位移的陨石水,这是陆地地热系统的典型现象。也没有表明潜艇的起源-稳定的同位素数据显示了陨石,海水和火山弧气体之间的混合。锶同位素数据可与附近的活跃海水夹带地热系统相媲美。这些是在与火山喷发有关的热液系统中看到的特征。对于Milos LS矿化来说,高盐度流体表明它不能用Broadlands型模型来解释。缺少含盐序列和大量侵入性岩石,因此无法将其作为含盐量的来源。盐度,δD–δ18O和锶同位素系统学方面的古生物系统与活性系统之间的相似性强烈表明,海水是Na和Cl的主要来源。我们建议与火山喷发有关的包含海水的地热系统是LS超热矿化的替代类似物。此外,它们在潜艇与大规模陆地地热系统之间架起了桥梁,这是入侵型热液成矿方案中VHMS和超热矿化的现代类似物。

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