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Petrology of a nonindigenous microgranitic clast in polymict ureilite EET 87720: Evidence for formation of evolved melt on an unknown parent body

机译:多微生物苏打石EET 87720中非原生微晶岩的岩石学:在未知母体上形成熔体的证据

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EET 87720 is a polymict ureilite breccia known to contain numerous nonindigenous fragments. We have discovered a microgranitic clast in an interior chip of Elephant Moraine (EET) 87720. The clast consists of a granophyre-like intergrowth of a pure SiO2 phase (tridymite) and albite, mantling a zoned oligoclase phenocryst. In the intergrowth, the tridymite occurs as thin elongate vermicular blebs within larger albite crystals. The granophyre-like intergrowth and the oligoclase phenocryst share a common margin, suggesting that the clast was originally part of a larger fragment. An estimate of its bulk composition is equivalent to that of granite (77 wt% SiO2). Patches of high-Si K-bearing glass occur interstitially within the clast; they have high concentrations of SO3 (11-12 wt%) and contain Cl (0.6 wt%), suggesting that the clast formed on a volatile-rich parent body perhaps resembling early Mars. The mean oxygen isotope composition of the feldspar and tridymite in the clast is very different from the oxygen isotope compositions of ureilites, and is similar to those of silicate inclusions in IIE and IVA irons. Thus, the clast is not indigenous to the ureilite parent body, but it provides evidence for the formation of evolved melts on an unknown parent body in the early solar system.
机译:EET 87720是一种多菌种的苏莱尔角砾岩,已知含有许多非本地碎片。我们在Elephant Moraine(EET)87720的内部芯片中发现了一条微晶岩碎屑。该碎屑由纯SiO2相(绿闪石)和钠长石的花岗石状共生物组成,可处理带区的寡聚寡糖现象。在共生体中,鳞闪石在较大的钠长石晶体中以细长的蠕虫状泡状出现。颗粒状的共生体和寡糖类隐突共有一个共同的边缘,这表明该碎屑最初是较大碎片的一部分。其总体组成的估算值等同于花岗岩(77 wt%SiO2)的估算值。高硅含量的含K的玻璃块在间隙内发生间隙。它们具有高浓度的SO3(11-12 wt%)和Cl(0.6 wt%),表明在富含挥发物的母体上形成的碎屑可能类似于火星早期。地层中的长石和鳞闪石的平均氧同位素组成与脲铁矿的氧同位素组成非常不同,并且与IIE和IVA铁中的硅酸盐夹杂物相似。因此,该碎屑不是苏莱石母体固有的,而是为早期太阳系中未知母体上形成的熔体形成提供了证据。

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