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首页> 外文期刊>Journal of South American earth sciences >Mesoarchean sanukitoid rocks of the Rio Maria Granite-Greenstone Terrane, Amazonian craton, Brazil
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Mesoarchean sanukitoid rocks of the Rio Maria Granite-Greenstone Terrane, Amazonian craton, Brazil

机译:巴西亚马孙克拉通的里约玛丽亚花岗岩-绿岩地带的中古构造的sanukitoid岩石

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摘要

The Archean sanukitoid Rio Maria Granodiorite yielded zircon ages of ~2.87 Ga and is exposed in large domains of the Rio Maria Granite-Greenstone Terrane, southeastern Amazonian craton. It is intrusive in the greenstone belts of the Andorinhas Supergroup, in the Arco Verde Tonalite and Caracol Tonalitic Complex (older TTGs). Archean potassic leucogranites, younger TTGs and the Paleoproterozoic granites of Jamon Suite are intrusive in the Rio Maria Granodiorite.rnThe more abundant rocks of the Rio Maria Granodiorite have granodioritic composition and display medium to coarse even-grained textures. These rocks show generally a gray color with greenish shades due to strongly saussuritized plagioclase, and weak WNW-ESE striking foliation. The significant geo-chemicai contrasts between the occurrences of Rio Maria Granodiorite in different areas suggest that this unit corresponds in fact to a granodioritic suite of rocks derived from similar but distinct magmas. Mingling processes involving the Rio Maria Granodiorite and similar mafic to intermediate magmas are able to explain the constant occurrence of mafic enclaves in the granodiorite.rnThe associated intermediate rocks occur mainly near Bannach, where mostly quartz diorite and quartz monzodiorite are exposed. The dominant rocks are mesocratic, dark-green rocks, with fine to coarse even-grained texture. The Rio Maria Granodiorite and associated intermediate rocks show similar tex-tural and mineralogical aspects. They follow the calc-alkaline series trend in some diagrams. However, they have high-Mg#, Cr, and Ni conjugate with high contents of large ion lithophile elements (LILEs), typical of sanukitoids series. The patterns of rare earth elements of different rocks are similar, with pronounced enrichment in light rare earth elements (LREEs) and strong to moderate fractionation of heavy rare earth elements (HREEs).rnField aspects and petrographic and geochemical characteristics denote that the granodiorites and intermediate rocks have sanukitoid affinity. However, geochemical data suggest that the intermediate rocks and the granodiorites are not related by a fractional crystallization process. It is concluded that the intermediate rocks derived from similar sources to the granodiorites, but probably result from a higher degree of melting, being both cogenetic, but not comagmatic rocks.rnMineralogical aspects associated with experimental evidence suggest that the Rio Maria Granodiorite magma was relatively water-enriched (>4wt.%), explaining the presence of hornblende at the liquidus and the absence of clinopyroxene and orthopyroxene in the studied rocks. The occurrence of well-preserved magmatic epidote crystals, admitting that the Rio Maria Granodiorite was emplaced at shallow crustal levels, points to a rapid ascent of the Rio Maria Granodiorite magma.
机译:太古宙的sanukitoid Rio Maria Granodiorite的锆石年龄为〜2.87 Ga,并暴露于亚马逊河东南克拉通的Rio Maria Granite-Greenstone Terrane的大区域。它侵入了安多里尼亚斯超级集团的绿岩带,阿尔科·佛得角托纳石和Caracol Tonalitic Complex(旧的TTG)。里约玛丽亚花岗闪长岩侵入了太古代钾质白云岩,年轻的TTG和Jamon Suite的古元古代花岗岩。这些岩石通常显示为灰色,带有绿色阴影,这归因于强烈的锯齿状斜长石和弱的WNW-ESE撞击叶面。在不同地区发生的里奥玛丽亚花岗闪长岩之间显着的地球化学对比表明,该单元实际上对应于由相似但不同的岩浆衍生的一组花岗闪长岩。涉及里奥玛丽亚花岗闪长岩和类似镁铁质至中间岩浆的混杂过程能够解释花岗闪长岩中镁铁质飞地的不断发生。相关的中​​间岩石主要发生在班纳赫附近,那里大部分是石英闪长岩和石英单闪闪岩。主要的岩石是中观的深绿色岩石,质地细密至粗糙。 Rio Maria Granodiorite及其相关的中间岩石表现出相似的质构和矿物学特征。在某些图中,它们遵循calc-碱性系列趋势。但是,它们具有高Mg#,Cr和Ni共轭物,以及大量的大型离子亲石元素(LILE),这是sanukitoids系列的典型特征。不同岩石的稀土元素形态相似,轻稀土元素(LREEs)明显富集,重稀土元素(HREEs)强至中等分馏.rn场方面和岩石学和地球化学特征表明花岗闪长岩和中间岩岩石具有sanukitoid亲和力。但是,地球化学数据表明,中间岩石和花岗闪长岩与分步结晶过程无关。结论是,中间岩石的来源与花岗闪长岩相似,但可能是由于较高的融化程度造成的,都是同生岩,而不是岩浆岩。与实验证据相关的矿物学方面表明,Rio Maria花岗闪长岩岩浆是相对水的-富集(> 4wt。%),说明在液相线中存在角闪石,而在研究的岩石中不存在斜辉石和邻辉石。保存完好的岩浆埃迪奥晶体的存在,承认里约玛丽亚花岗闪长岩是在浅地壳水平上发生的,这表明里约玛丽亚花岗闪长岩的岩浆迅速上升。

著录项

  • 来源
    《Journal of South American earth sciences 》 |2009年第3期| 146-160| 共15页
  • 作者单位

    Group of Research on Granite Petrology, Institute de Geociencias (IG). Universidade Federal do Para (UFPA), Caixa Postal 8608, CEP 66075-900, Belem, Para, Brazil Programa de Pos-Graduacao em Geologia e Geoquimica (PPGG), IG, UFPA, Brazil;

    Group of Research on Granite Petrology, Institute de Geociencias (IG). Universidade Federal do Para (UFPA), Caixa Postal 8608, CEP 66075-900, Belem, Para, Brazil Programa de Pos-Graduacao em Geologia e Geoquimica (PPGG), IG, UFPA, Brazil;

    Group of Research on Granite Petrology, Institute de Geociencias (IG). Universidade Federal do Para (UFPA), Caixa Postal 8608, CEP 66075-900, Belem, Para, Brazil Programa de Pos-Graduacao em Geologia, Universidade do Vale do Rio dos Sinos, Caixa Postal 275, CEP 93022-000, Sao Leopoldo, RS, Brazil;

    Group of Research on Granite Petrology, Institute de Geociencias (IG). Universidade Federal do Para (UFPA), Caixa Postal 8608, CEP 66075-900, Belem, Para, Brazil CDM - Centro de Desenvolvimento MineralBR 381 Km 450, CEP 33040 900, Companhia Vale, Brazil;

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

    archean; sanukitoid series; granodiorite; intermediate rocks; amazonian craton;

    机译:太古代sanukitoid系列;花岗闪长岩中级岩石亚马逊克拉通;

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