首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Metal endowment reflected in chemical composition of silicates and sulfides of mineralized porphyry copper systems, Urumieh-Dokhtar magmatic arc, Iran
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Metal endowment reflected in chemical composition of silicates and sulfides of mineralized porphyry copper systems, Urumieh-Dokhtar magmatic arc, Iran

机译:金属禀赋反映在硅酸盐和矿化斑纹铜系统的硅酸盐和硫化硫化物中的化学成分中,Urumieh-Dokhtar Magmatic弧,伊朗

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摘要

The present work attempts to discriminate between the geochemical features of magmatic-hydrothermal systems involved in the early stages of mineralization in high grade versus low grade porphyry copper systems, using chemical compositions of silicate and sulfide minerals (i.e., plagioclase, biotite, pyrite and chalcopyrite). The data indicate that magmatic plagioclase in all of the porphyry copper systems studied here has high An% and Al content with a significant trend of evolution toward AlAl3SiO8 and square Si4O8 endmembers, providing insight into the high melt water contents of the parental magmas. Comparably, excess Al and An% in the high grade deposits appears to be higher than that of selected low grade deposits, representing a direct link between the amounts of exsolving hydrothermal fluids and the potential of metal endowment in porphyry copper deposits (PCDs). Also, higher Al contents accompanied by elevated An% are linked to the increasing intensity of disruptive alteration (phyllic) in feldspars from the high grade deposits. As calculated from biotite compositions, chloride contents are higher in the exsolving hydrothermal fluids that contributed to the early mineralization stages of highly mineralized porphyry systems. However, as evidenced by scattered and elevated log (fH(2)O)/(fHF) and log (fH(2)O)/(fHCl) values, chloride contents recorded in biotite could be influenced by post potassic fluids. Geothermometry of biotite associated with the onset of sulfide mineralization indicates that there is a trend of increasing temperature from high grade to low grade porphyry systems. Significantly, this is coupled with a sharp change in copper content of pyrite assemblages precipitated at the early stages of mineralization such that Cu decreased with increasing temperature. Based on EMPA and detailed WDS elemental mapping, trace elements do not exhibit complex compositional zoning or solid solution in the sulfide structure. Nevertheless, significant amounts of
机译:目前的作品试图歧视岩浆 - 水热系统的地球化学特征,涉及高级矿化早期矿化的早期阶段,使用硅酸盐和硫化物矿物的化学成分(即Plagioclase,Biotite,黄铁矿和黄铜矿) )。这些数据表明,这里研究的所有斑岩铜系统中的岩浆拼接酶高,呈现出朝向Alal3SiO8和Square Si4O8终点的显着趋势的趋势,提供了进入父母岩浆的高熔体水含量的洞察力。相当,高级沉积物中的过量的Al和%似乎高于所选择的低级沉积物,其代表渗透水热流体的量与斑岩铜沉积物(PCD)中的金属禀赋之间的直接联系。此外,伴随升高的较高的Al含量与来自高级沉积物中的长度开石中的破坏性变化(Phyllic)的增加强度相关。如来自Biotite组合物的计算,氯化物含量较高,透露水热流体有助于高矿化斑纹系统的早期矿化阶段。然而,如散射和升高的数值(FH(2)O)/(FHF)和log(FH(2)O)/(FHCL)值所证明的,在Biotite中记录的氯化物含量可能受到后的牛流体的影响。与硫化物矿化的开始相关的Biotite的地质测定表明,在高等级到低级斑岩系统中存在温度升高的趋势。值得注意的是,这与在矿化的早期阶段沉淀的硫铁矿组件的铜含量急剧改变,使得Cu随着温度的增加而降低。基于EMPA和详细的WDS元素映射,微量元素在硫化物结构中没有表现出复杂的组成分区或固溶体。然而,大量的

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