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The Almadén mercury metallogenic cluster (Ciudad Real, Spain): alkaline magmatism leading to mineralization processes at an intraplate tectonic setting

机译:阿尔玛登汞成矿星团(西班牙雷阿尔城):碱性岩浆作用导致板内构造环境下的矿化过程

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摘要

The Silurian to Devonian Almadén mercury deposits are directly 01' indirectly related to mafic rocks. The geochemical characteristics of these rocks suggest mantle-derived intraplate magmas, that yielded basalts (s.l.) and olivine diabases of alkaline affinity, and quartz-diabases of transitional to tholeiitic affinity. These rocks may have been generated from a volatile- and incompatible elemeht-rich asthenospheric source of EM-I type. O, C, and S isotopic data provide new insights into the genesis of the Almadén mineralization. Close correspondence betweenudestimated and observed 8180fluid values suggest that hydrothermal activity in the Almadén basin was favoured by interaction of basaltic rocks with seawater. The observed 813e values (-3.6%0 to - 9.0%0), together with the lack of correlation between 8180 and 813C, favour multiple carbon sources for the hydrothermal carbonates associated with the Almadén deposits, Le., besides seawater, both mantle and organic sedimentary carbon sources were contributors to these carbonates. This is supported by sulphur isotopic data (-1.6%0 to +9.0%0; cinnabar), which may reflect variable source compositions. Leaching of spilitic sulphur by geothermal waters provides an indirect mechanism for incorporating variable proportions of magmatic and seawater sulphur into the mineralizing fluids, explaining the different isotopic compositions of Hg sulphides. Ar-Ar, Rb/Sr, and 87Sr/88Sr data suggest that hydrothermal activity in the Almadén basin was long-Iasting, spanning both theudSilurian and Devonian. The huge, unique Almadén Hg deposits would have required exceptional conditions for their genesis. It is proposed that a world-class geochemical anomaly such as Almadén should ultimately reflect the characteristics of the mantle source for the alkali basaltic magmas; indeed, mantle metasomatic activity and the initiallow degrees of partial mel'ting inherent to theudgenesis of the Almadén mafic magmas could have converged to pro vide an efficient mechanism for Hg pre-enrichment of the basaltic rocks
机译:志留纪至泥盆纪的Almadén汞矿床与镁铁质岩直接相关,直接为01'。这些岩石的地球化学特征表明,地幔源于板内岩浆,产生玄武岩(s.l.)和橄榄石辉绿岩,具有碱性亲和力,而石英辉绿岩则过渡到生烃亲和力。这些岩石可能是由易挥发且不相容的富含元素的软流圈EM-I类型产生的。 O,C和S同位素数据为Almadén矿化的成因提供了新的见解。估算和观察到的8180流体值之间的密切对应关系表明,阿尔玛登盆地的热液活动受玄武岩与海水相互作用的影响。观测到的813e值(-3.6%0至-9.0%0),以及8180和813C之间缺乏相关性,除了与海水有关的地幔和海水外,还有利于与Almadén矿床相关的热液碳酸盐的多种碳源。有机沉积碳源是这些碳酸盐的来源。硫同位素数据(-1.6%0至+ 9.0%0;朱砂)对此提供了支持,该数据可能反映了可变的来源组成。地热水浸出的轻质硫提供了一种间接机制,可将岩浆和海水中不同比例的岩浆硫和海水硫掺入矿化液中,从而解释了硫化汞的不同同位素组成。 Ar-Ar,Rb / Sr和87Sr / 88Sr数据表明,Almadén盆地的热液活动是长期持续的,横跨 udSilurian和泥盆纪。巨大而独特的AlmadénHg矿床将为其成因提供特殊条件。有人建议,一个世界级的地球化学异常,如阿尔玛登,应最终反映出碱性玄武岩浆的地幔源特征。的确,地幔交代活动和Almadén基性岩浆的催化作用固有的部分熔融的初始低度可能已经融合,从而为Hg预富化玄武岩提供了一种有效的机制。

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