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首页> 外文期刊>Journal of Asian earth sciences >Geochemistry of the Late Neoproterozoic Hadb adh Dayheen ring complex, Central Arabian Shield: Implications for the origin of rare-metal-bearing post-orogenic A-type granites
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Geochemistry of the Late Neoproterozoic Hadb adh Dayheen ring complex, Central Arabian Shield: Implications for the origin of rare-metal-bearing post-orogenic A-type granites

机译:中元古代晚期新元古代Hadb adh Dayheen环复合体的地球化学:含稀土的造山后A型花岗岩的成因意义

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摘要

The Hadb adh Dayheen ring complex (HDRC), Central Arabian Shield, is an alkaline to peralkaline A-type granite complex. It consists of an inner core of monzogranite followed outward by porphyritic alkali feldspar granite (hornblende biotite granite and aegirine riebeckite granite). Field and textural observations indicate that the different granite types were separated from magma reservoir, at different stages, and emplaced at higher levels along pre-existing fractures. The geochemical characteristics indicate that their magma was most plausibly originated by partial melting of juvenile lower crust following collision between East and West Gondwana at the final stage of the Arabian Shield evolution. The alkali feldspar granites have high abundances of albite and fluorite and wide variation of HFSE and REE that indicate interaction with hydrothermal F-rich fluids. Although there are many geochemical, mineralogical and textural evidence of secondary metasomatic alteration superimposed on the granitic rocks, they show textural features such as the arrangement of albite inclusions along growth planes in quartz (snowball texture) and aegirine that indicate early magmatic crystallization of albite. Also, the strong linear positive correlation of Ta vs. Nb and Zr vs. Hf emphasize that the behavior and enrichment of Ta and Nb are largely controlled by magmatic processes. The events that can explain the evolution of these rocks are: (1) during magmatic evolution, F dissolved in the magma and lowered the crystallization temperature causing REE and HFSE to form complexes and thus behave as incompatible elements, (2) prolonged crystallization of the major mineral phases (quartz and feldspar) formed a late-stage magmatic fluid enriched in volatiles (H_2O, F) and trace elements, (3) accessory minerals crystallized from such a phase in the interstices between the major mineral phases, and (4) post-magmatic re-equilibration and formation of secondary albite (Na-metasomatism) has probably led to the redistribution of some major elements and limited redistribution of HFSE and REE.
机译:阿拉伯中部盾牌(Haad adh Dayheen ring complex,HDRC)是一种碱性至碱性的A型花岗岩复合物。它由辉长花岗岩的内芯组成,其后依次是斑状的碱性长石花岗岩(角闪石黑云母花岗岩和艾吉里恩里贝岗花岗岩)。野外和质地的观察表明,不同的花岗岩类型在不同的阶段与岩浆储集层分开,并沿已存在的裂缝以较高的水平包裹。地球化学特征表明,它们的岩浆最有可能是由于阿拉伯盾构演化的最后阶段东西方冈瓦纳发生碰撞后少年下地壳的部分融化所致。碱性长石花岗岩具有丰富的钠长石和萤石,并且HFSE和REE的变化很大,这表明它们与富热热液流体相互作用。尽管有许多地球化学,矿物学和质地上的次生变质作用叠加在花岗岩岩石上的证据,但它们却显示出质地特征,例如钠长石夹杂物沿石英(雪球状构造)和eg石的生长平面排列,表明钠长石的早期岩浆结晶。另外,Ta与Nb的强线性正相关以及Zr与Hf的强线性正相关强调了Ta和Nb的行为和富集程度主要受岩浆作用控制。可以解释这些岩石演化的事件有:(1)在岩浆演化过程中,F溶解在岩浆中并降低了结晶温度,从而导致REE和HFSE形成络合物,因此表现为不相容元素,(2)岩石的长时间结晶主要矿物相(石英和长石)形成了富含挥发物(H_2O,F)和微量元素的后期岩浆流体,(3)在主要矿物相之间的间隙中从该相结晶出来的辅助矿物,以及(4)岩浆作用后的重新平衡和次生钠长石的形成(Na-致突变作用)可能导致了某些主要元素的重新分布以及HFSE和REE的有限重新分布。

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  • 来源
    《Journal of Asian earth sciences》 |2011年第6期|p.1324-1340|共17页
  • 作者单位

    Department of Mineral Resources and Rocks, Faculty of Earth Sciences, King Abdulaziz University, P.O. Box 80206, Jeddah 21589. Saudi Arabia,Department of Geology, Faculty of Science, Alexandria University, Alexandria, Egypt;

    Department of Mineral Resources and Rocks, Faculty of Earth Sciences, King Abdulaziz University, P.O. Box 80206, Jeddah 21589. Saudi Arabia;

    Department of Mineral Resources and Rocks, Faculty of Earth Sciences, King Abdulaziz University, P.O. Box 80206, Jeddah 21589. Saudi Arabia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    arabian shield; geochemistry; post-collision a-type granite; ring complex; saudi arabia; rare-metals;

    机译:阿拉伯盾构;地球化学;碰撞后a型花岗岩;环状复合体;沙特阿拉伯;稀有金属;

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