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Enigmatic Cathodoluminescent Objects in the Dhofar 025 Lunar Meteorite: Origin and Sources

机译:Dhofar 025月陨石中的神秘阴极发光物体:起源和来源

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摘要

Dhofar 025 is a lunar highland breccia consisting mainly of anorthositic, with less common noritic, gabbronoritic, and troctolitic material. Rare fragments of low-Ti basalts are present as well, but no KREEP (component enriched in incompatible elements) was found in the meteorite. The cathodoluminescence study of this meteorite showed that its impact-melt matrix contains unusual cathodoluminescent (CL) objects of feldspathic composition, which frequently contain microlites of Fe-Mg spinel (pleonaste). They were presumably formed by impact mixing and melting of olivine and plagioclase with subsequent rapid quenching of the impact melts. Such mixing could happen either during assimilation of anorthosites by picritic/troctolitic magmas or during impact melting of troctolites. The enrichment of CL objects of Dhofar 025 in incompatible trace elements suggests that the mafic component of the impact mixture may be related to the high-magnesium suite rocks, which are frequently enriched in KREEP component. The depletion of CL objects in alkalis indicates their possible relation with residual glasses formed by evaporation. However, the presence of FeO in most objects points to the insignificant extent of evaporation. Thus, evaporation cannot explain the enrichment of the CL objects in Al2O3 and other refractory components, although this process definitely took place in their formation. Their similarity to the lunar pink spinel anorthosites, whose existence was predicted from orbital data, serves as an argument in support of the possible formation of the latters by impact mixing.
机译:Dhofar 025是一个农历高地Breccia,主要由华盛症,幼稚园,北部常见,加油和匍匐茎材料组成。还存在罕见的低TI底座的稀有片段,但在陨石中没有发现kreep(富含不相容元素的组分)。该陨石的阴极发光研究表明,其冲击熔体基质含有不寻常的阴茎发光(Cl)对象的常规组合物,其经常含有Fe-Mg尖晶石(渗碳物)的微胆晶。大概是通过橄榄石和普发基酶的影响和熔化而形成的,随后对冲击熔体的快速淬火。在通过皮质/卵石岩浆的增强剂和雷岩的影响熔化期间,这种混合可能发生在增强剂期间。在不相容的微量元素中,Dhofar 025的Cl对象的富集表明,冲击混合物的MAFIC组分可能与高镁套件岩石有关,其经常富含Kreep组分。碱中CL对象的耗竭表明它们与通过蒸发形成的残留玻璃的关系。然而,在大多数物体中存在Feo的存在指向蒸发的微不足道。因此,蒸发无法解释Al2O3和其他耐火元件中的CL对象的富集,尽管该过程肯定发生在其形成中。它们与月球粉红色尖晶石的相似性,其存在从轨道数据预测的,作为支持通过冲击混合形成无效的参数。

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  • 来源
    《Petrology》 |2017年第2期|共11页
  • 作者单位

    Vernadsky Inst Geochem &

    Analyt Chem Kosygin St 19 Moscow 119991 Russia;

    Vernadsky Inst Geochem &

    Analyt Chem Kosygin St 19 Moscow 119991 Russia;

    Vernadsky Inst Geochem &

    Analyt Chem Kosygin St 19 Moscow 119991 Russia;

    Vernadsky Inst Geochem &

    Analyt Chem Kosygin St 19 Moscow 119991 Russia;

    Univ Vienna Dept Lithosphorenforsch Althanstr 14 A-1090 Vienna Austria;

    Nat Hist Museum Burgring 7 A-1014 Vienna Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 岩石学;
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