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Fe-rich ferropericlase and magnesiowustite inclusions reflecting diamond formation rather than ambient mantle

机译:Fe-富含Ferropericlase和镁禽流夹夹杂物,反射菱形形成而不是环境披风

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摘要

At the core of many Earth-scale processes is the question of what the deep mantle is made of. The only direct samples from such extreme depths are diamonds and their inclusions. It is commonly assumed that these inclusions reflect ambient mantle or are syngenetic with diamond, but these assumptions are rarely tested. We have studied inclusion-host growth relationships in two potentially superdeep diamonds from Juina (Brazil) containing nine inclusions of Fe-rich (X-Fe approximate to 0.33 to = 0.64) ferropericlase-magnesiowustite (FM) by X-ray diffractometry, X-ray tomography, cathodoluminescence, electron backscatter diffraction, and electron microprobe analysis. The inclusions share a common [112] zone axis with their diamonds and have their major crystallographic axes within 3 degrees-8 degrees of those of their hosts. This suggests a specific crystallographic orientation relationship (COR) resulting from interfacial energy minimization, disturbed by minor post-entrapment rotation around [112] due to plastic deformation. The observed COR and the relationships between inclusions and diamond growth zones imply that FM nucleated during the growth history of the diamond. Therefore, these inclusions may not provide direct information on the ambient mantle prior to diamond formation. Consequently, a "non-pyrolitic" composition of the lower mantle is not required to explain the occurrence of Fe-rich FM inclusions in diamonds. By identifying examples of mineral inclusions that reflect the local environment of diamond formation and not ambient mantle, we provide both a cautionary tale and a means to test diamond-inclusion time relationships for proper application of inclusion studies to whole-mantle questions.
机译:在许多地球规模过程的核心处是深层地幔的问题。来自这种极端深度的唯一直接样本是钻石及其夹杂物。通常假设这些夹杂物反射环境幔​​或与金刚石的组成,但这些假设很少测试。通过X射线衍射测定,我们研究了来自Juina(巴西)的两个潜在的超级钻石中的含有9个潜在的超级钻石(X-Fe近似为0.33至0.64)铁磷酸盐酶 - 氧化镁(FM), X射线断层扫描,阴极发光,电子反向散射衍射和电子微探针分析。夹杂物与其钻石共用一个共同的[112]区域轴,并在其主机的3度-8度内具有它们的主要晶形轴。这表明由界面能量最小化导致的特定晶体取向关系(COR),由于塑性变形而受到稍微截止的围绕[112]的轻微截止旋转。观察到的COR和夹杂物和钻石生长区之间的关系意味着在钻石的生长历史期间FM核。因此,这些夹杂物可能在金刚石形成之前不提供关于环境披露的直接信息。因此,不需要较低罩的“非焦耳”组合物来解释钻石中Fe富含Fm夹杂物的发生。通过鉴定反映钻石形成的局部环境而不是环境披风的矿物质夹杂物的实例,我们提供了一种警示故事和方法来测试菱形纳入时间关系,以适当地将包含研究应用于全部地幔问题。

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  • 来源
    《Geology 》 |2019年第1期| 共4页
  • 作者单位

    Univ Padua Dipartimento Geosci Via G Gradenigo 6 I-35131 Padua Italy;

    Univ Padua Dipartimento Geosci Via G Gradenigo 6 I-35131 Padua Italy;

    Univ Padua Dipartimento Geosci Via G Gradenigo 6 I-35131 Padua Italy;

    Univ Lille Unite Mat &

    Transformat F-59655 Villeneuve Dascq France;

    Univ Bari Aldo Moro Dipartimento Sci Terra &

    Geoambientali Via Orabona 4 I-70125 Bari Italy;

    Univ Bari Aldo Moro Dipartimento Sci Terra &

    Geoambientali Via Orabona 4 I-70125 Bari Italy;

    Univ Bari Aldo Moro Dipartimento Sci Terra &

    Geoambientali Via Orabona 4 I-70125 Bari Italy;

    Univ Padua Dipartimento Geosci Via G Gradenigo 6 I-35131 Padua Italy;

    Trigon GeoServ Ltd Las Vegas NV 89146 USA;

    Univ Padua Dipartimento Geosci Via G Gradenigo 6 I-35131 Padua Italy;

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  • 正文语种 eng
  • 中图分类 地质学 ;
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