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首页> 外文期刊>Contributions to Mineralogy and Petrology >Disturbance versus preservation of U–Th–Pb ages in monazite during fluid–rock interaction: textural, chemical and isotopic in situ study in microgranites (Velay Dome, France)
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Disturbance versus preservation of U–Th–Pb ages in monazite during fluid–rock interaction: textural, chemical and isotopic in situ study in microgranites (Velay Dome, France)

机译:独居石在流体与岩石相互作用过程中的U-Th-Pb年龄扰动与保存:微花岗岩的质地,化学和同位素原位研究(Velay Dome,法国)

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摘要

Monazite is extensively used to date crustal processes and is usually considered to be resistant to diffusive Pb loss. Nevertheless, fluid-assisted recrystallisation is known to be capable of resetting the monazite chronometer. This study focuses on chemical and isotopic disturbances in monazite grains from two microgranite intrusions in the French Central Massif (Charron and Montasset). Petrologic data and oxygen isotopes suggest that both intrusions have interacted with alkali-bearing hydrothermal-magmatic fluids. In the Charron intrusion, regardless of their textural location, monazite grains are sub-euhedral and cover a large domain of compositions. U–Pb chronometers yield a lower intercept age of 297 ± 4 Ma. An inherited component at 320 Ma is responsible for the scattering of the U–Th–Pb ages. The Montasset intrusion was later affected by an additional F-rich crustal fluid with crystallisation of Ca-REE-fluorocarbonates, fluorite, calcite and chloritisation. Pristine monazite is chemically homogeneous and displays 208Pb/232Th and 206Pb/238U concordant ages at 307 ± 2 Ma. By contrast, groundmass monazite shows dissolution-recrystallisation features associated with apatite and thorite precipitation (Th-silicate) and strong chemical reequilibration. 208Pb/232Th ages are disturbed and range between 270 and 690 Ma showing that the Th/Pb ratio is highly fractionated during the interaction with fluids. Apparent U–Pb ages are older due to common Pb incorporation yielding a lower intercept age at 312 ± 10 Ma, the age of the pristine monazite. These results show that F-rich fluids are responsible for Th mobility and incorporation of excess Pb, which thus strongly disturbed the U–Th–Pb chronometers in the monazite.
机译:独居石广泛用于约会地壳过程,通常被认为可以抵抗扩散的Pb损失。然而,已知流体辅助重结晶能够使独居石天文台复位。这项研究的重点是法国中部地块(Charron和Montasset)的两次微花岗岩侵入对独居石晶粒的化学和同位素扰动。岩石学数据和氧同位素表明,这两次侵入均与含碱热液岩浆流体相互作用。在Charron侵入体中,独居石颗粒无论其质地在哪里,都是近半面体的,并且覆盖了大范围的成分。 U–Pb天文钟的截距年龄较低,为297±4 Ma。 320 Ma处的继承分量负责U–Th–Pb年龄的散射。后来,蒙塔斯特侵入体受到额外的富含F的地壳流体的影响,该流体具有Ca-REE-氟碳酸盐,萤石,方解石和氯化作用的结晶。原始独居石在化学上是均质的,在307±2 Ma下显示208Pb / 232Th和206Pb / 238U一致的年龄。相比之下,地基独居石显示出与磷灰石和石沉淀(Th-硅酸盐)相关的溶解-再结晶特征,以及强烈的化学再平衡。 208Pb / 232Th年龄受到扰动,范围在270至690 Ma之间,表明Th / Pb比在与流体相互作用的过程中高度分馏。由于常见的Pb掺入,表观的U–Pb年龄更大,从而在312±10 Ma(原始独居石的年龄)处产生较低的截距年龄。这些结果表明,富F流体负责Th的迁移和过量Pb的掺入,从而严重干扰了独居石中的U–Th–Pb天文钟。

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  • 来源
    《Contributions to Mineralogy and Petrology》 |2013年第6期|1051-1072|共22页
  • 作者单位

    Laboratoire Magmas et Volcans Clermont Université Université Blaise Pascal">(1);

    CNRS UMR6524 LMV">(2);

    IRD R 163 LMV">(3);

    Laboratoire Magmas et Volcans Clermont Université Université Blaise Pascal">(1);

    CNRS UMR6524 LMV">(2);

    IRD R 163 LMV">(3);

    Géosciences Rennes UMR 6118 CNRS Observatoire des Sciences de l’Univers de Rennes Université de Rennes 1">(4);

    Laboratoire Magmas et Volcans Clermont Université Université Blaise Pascal">(1);

    CNRS UMR6524 LMV">(2);

    IRD R 163 LMV">(3);

    Laboratoire Magmas et Volcans Clermont Université Université Blaise Pascal">(1);

    CNRS UMR6524 LMV">(2);

    IRD R 163 LMV">(3);

    G2R CNRS Ecole Nationale Supérieure de Géologie Nancy-université">(5);

    Laboratoire Magmas et Volcans Clermont Université Université Blaise Pascal">(1);

    CNRS UMR6524 LMV">(2);

    IRD R 163 LMV">(3);

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

    Monazite; U–Th–Pb dating; Fluid; LA-ICP-MS; Velay;

    机译:独居石;U–Th–Pb约会;体液;LA-ICP-MS;维莱;

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