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In-situ elemental and boron isotopic variations of tourmaline from the Sanfang granite, South China: Insights into magmatic-hydrothermal evolution

机译:原位元素与南方三方花岗岩的电气石同位素变异:洞察岩浆 - 水热进化的见解

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摘要

Tourmaline often occurs in boron-rich granites and its genesis is still in dispute either formed from residual boron-rich silicate melt or from magmatic hydrothermal fluids with or without external fluid involvement. Here, we present a systematic investigation of in-situ major, trace elemental and boron isotopic variations of tourmaline from the Sanfang granite in Guangxi Province of South China, which demonstrate both the magmatic and hydrothermal origin for the formation of the tourmalines. The tourmaline occurs mainly in quartz-tourmaline nodules and tourmaline pegmatitic segregations within the Sanfang granite. Four types of tourmaline are identified: (1) isolated and disseminated tourmaline (Tur-D type) distributed in granite; (2) euhedral and subhedral tourmaline in quartz-tourmaline nodules (Tur-N type); (3) the earlier stage tourmaline (Tur-PE type) in pegmatitic segregations and (4) the later stage tourmaline (Tur-PL type) which replaced the Tur-PE type tourmaline in pegmatitic segregations. All the tourmalines belong to the alkali group representing dravite-schorl solid solution series with the former three types being schorl and the Tur-PL type being dravite. Petrography, chemical discrimination diagrams and Al occupations in the Y-site suggest that the Tur-D, Tur-N and Tur-PE type tourmalines are of magmatic origin and the Tur-PL type tourmalines are of hydrothermal fluid origin. Elemental and boron isotopic composition variations of tourmalines reflect the compositional and environmental evolution from late boron-rich magma to exsolved hydrothermal fluids. Chemical variations from the Tur-D to the Tur-N tourmalines are controlled by magma differentiation. The increase of Mg/(Mg + Fe) and Ca/(Ca + Na) ratios from the Tur-N to the Tur-PE tourmalines suggests the contamination of surrounding strata (e.g. the Sibao Group). Hydrothermal tourmalines have higher Mg/(Mg + Fe) and lower Na/(Na + Ca) ratios than the magmatic tourmalines. There is clear correlation at least in some trace elements (e.g. Sr, Pb) with major elements for all tourmalines, indicating the potential crystal chemical effects on their incorporation. Other trace element incorporation in tourmaline is largely controlled by melt and fluid composition. Hydrothermal tourmalines have high and stable V, Co and Ni contents, indicating relatively constant partition coefficient between hydrothermal tourmalines and the fluid. Hydrothermal tourmalines exhibit lower total REE contents but more pronounced positive Eu anomalies than the magmatic tourmalines. The delta B-11 values of all tourmalines from the Sanfang granite vary from -14.4 parts per thousand to -9.3 parts per thousand, which indicate the boron in the Sanfang granite was mainly derived from partial melting of the metasedimentary source rocks. Boron isotopic variations of tourmaline are controlled by fractionation between melt-fluid and Rayleigh fractionation.
机译:电气石通常发生在富含硼的花岗岩中,其成因仍然是由残留的硼硅酸盐熔体或具有或没有外部流体受累的岩浆水热流体形成的争议。在这里,我们对南方广西南方花岗岩的基于努力,痕量元素和硼同位素变异的系统调查,展示了岩石和水热源的形成。电氧化林主要发生在三方花岗岩内的石英 - 林林结节和电气石钉子泥炭中。鉴定了四种类型的电气石:(1)分布在花岗岩中的孤立和传播的电气石(Tur-D型); (2)石英 - 基马林结节中的Euhedral和次赤胰蛋白石(Tur-n型); (3)紫粉灰偏析中的早期阶段胰蛋白碱(Tur-PE型)和(4)后期胰蛋白酶(Tur-pl型),其在Pegmatitic隔离中取代了Tur-Pe型胰蛋白石。所有陀拓属于代表Droavite-Schorl固体解决方案系列的碱组,其中三种类型是Schorl和Tur-Pl型是Dravite。岩画,化学辨别图和Y型的Al职业表明,Tur-D,Tur-N和Tur-Pe型陀螺素是岩浆起源,Tur-Pl型林林林林是水热流体来源。基因林石的元素和硼同位素组成变化反映了富含硼富含岩浆的组成和环境进化到exsolved水热流体。从Tur-D到Tur-n陀拓的化学变化由岩浆分化控制。从Tur-n到Tur-PE陀螺素的Mg /(Mg + Fe)和Ca /(Ca + Na)比的增加表明周围地层的污染(例如,Sibao组)。水热氧化林含量高于Mg /(Mg + Fe)和低于岩浆林林林的Na /(Na + Ca)比率。在一些痕量元素(例如Sr,Pb)中具有清晰的相关性,具有所有助助林林碱的主要元素,表明潜在的晶体化学效应对其掺入。导菱形中的其他痕量元素掺入主要由熔体和流体组成控制。水热陀螺素具有高且稳定的V,CO和Ni含量,表明水热助液碱和流体之间的相对恒定的分区系数。水热陀螺素表现出较低的总REE含量,但比岩浆林林纳米尔人更明显的正面欧盟异常。来自Sanfang Granite的所有陀拓的Delta B-11值从-14.4份千分之一到-9.3份千分之一,这表明Sanfang花岗岩中的硼主要来自MetaseDary源岩的部分熔化。硼同位素变异的电气石是通过熔融流体和瑞利分馏之间的分馏来控制的。

著录项

  • 来源
    《Chemical geology》 |2019年第2019期|共15页
  • 作者单位

    China Univ Geosci State Key Lab Geol Proc &

    Mineral Resources Collaborat Innovat Ctr Explorat Strateg Mineral R Fac Earth Resources Wuhan 430074 Hubei Peoples R China;

    China Univ Geosci State Key Lab Geol Proc &

    Mineral Resources Collaborat Innovat Ctr Explorat Strateg Mineral R Fac Earth Resources Wuhan 430074 Hubei Peoples R China;

    Univ Southampton Natl Oceanog Ctr Sch Ocean &

    Earth Sci Southampton SO14 3ZH Hants England;

    China Univ Geosci State Key Lab Geol Proc &

    Mineral Resources Collaborat Innovat Ctr Explorat Strateg Mineral R Fac Earth Resources Wuhan 430074 Hubei Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球化学;
  • 关键词

    Tourmaline; Geochemistry; Boron isotope; Magmatic-hydrothermal evolution; South China;

    机译:Tourmaline;地球化学;硼同位素;岩浆水热进化;华南;

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