Lece岩浆杂岩图拉雷矿田铅、硫的成因

Milos Velojic, D. Prelević, R. Jelenković
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引用次数: 3

摘要

塞尔维亚西南部的Lece岩浆杂岩是塞尔维亚-马其顿成矿省最有前途的铅、锌和贵金属矿区之一。该杂岩是由从渐新世到晚古近纪的碰撞后岩浆活动形成的。在这项研究中,铅和硫的同位素测量进行了不同的矿石矿物,以约束矿化金属的起源和它们的沉积温度。Bakrenjaca矿田方铅矿具有较高的207Pb/204Pb值,表明铅主要来源于上陆地壳地球化学储层,可能是第三纪碰撞后岩浆作用下地幔内的再循环和喷发。对该矿区的方铅矿、闪锌矿和黄铁矿进行了硫同位素测定,其d34S值均在0 ~ 3‰之间,表明硫来源于地幔。利用硫同位素对矿脉中矿物沉积温度进行了估算,计算温度在300 ~ 400℃之间。由于这个温度对于浅成热液矿床来说太高了,这些矿物很可能不是在同位素平衡状态下沉积的,因此应该采用其他方法进行更精确的温度测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The origin of lead and sulfur in Tulare ore field, Lece magmatic complex
Lece magmatic complex in SW Serbia is one of the most promising zones for lead, zinc and precious metals in the Serbo-Macedonian metallogenic province. This complex was formed by post-collisional magmatic activity that lasted from Oligocene to late Paleogene. In this study, lead and sulphur isotope measurements were performed on different ore minerals in order to constrain the origin of mineralizing metals and the temperatures of their deposition.  The galenas from the Bakrenjaca ore field show high 207Pb/204Pb values implying that the lead was dominantly derived from the upper continental crustal geochemical reservoir which was probably recycled within the mantle and erupted during tertiary post-collisional magmatism. Sulphur isotopes were measured on galena, sphalerite and pyrite from this ore field and all d34S values are between 0 and 3 ‰, which indicate that sulphur has a mantle origin.  Sulphur isotopes were also used to estimate temperature of mineral deposition in veins and the calculated temperature was between 300 and 400°C. Since this temperature is too high for epithermal deposits, it is probable that these minerals weren’t deposited in isotopic equilibrium and other methods should be conducted for more precise temperature measurement.
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