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首页> 外文期刊>Meteoritics & planetary science >Melt inclusions in augite of the Nakhla martian meteorite: Evidence for basaltic parental melt
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Melt inclusions in augite of the Nakhla martian meteorite: Evidence for basaltic parental melt

机译:Nakhla火星陨石的闪长岩中的熔体包裹体:玄武岩父母熔体的证据

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Nakhla contains crystallized melt inclusions that were trapped in augite and olivine when these phases originally formed on Mars. Our study involved rehomogenization (slow-heating and fast-heating) experiments on multiphase melt inclusions in Nakhla augite. We studied melt inclusions trapped in augite because this phase re-equilibrated with the external melt to a lesser extent than olivine and results could be directly compared with previous Nakhla melt inclusion studies. Following heating and homogenization of encapsulated melt inclusions, single mineral grains were mounted and polished to expose inclusions. Major element chemistry was determined by electron microprobe. The most primitive melt inclusion analyzed in Nakhla NA03 is basaltic and closely matches previously reported nakhlite parent melt compositions. MELTS equilibrium and fractional crystallization models calculated for NA03 and previous Nakhla parent melt estimates at QFM and QFM-1 produced phase assemblages and compositions that can be compared to Nakhla. Of these models, equilibrium crystallization of NA03 at QFM-1 produced the best match to mineral phases and compositions in Nakhla. In all models, olivine and augite co-crystallize, consistent with the hypothesis that olivine is not xenocrystic but has undergone subsolidus re-equilibration. In addition, measured melt inclusion compositions plot along the MELTS-calculated liquid line of descent and may represent pockets of melt trapped at various stages during crystallization. We attempt to resolve discrepancies between previous estimates of the Nakhla parental melt composition and to reinterpret the results of a previous study of rehomogenized melt inclusions in Nakhla. Melt inclusions demonstrate that Nakhla is an igneous rock whose parent melt composition and crystallization history reflect planetary igneous processes.
机译:Nakhla含有结晶的熔体夹杂物,当这些相最初在火星上形成时,它们就被困在了辉石和橄榄石中。我们的研究涉及Nakhla辉石中多相熔体包裹体的均质化(慢热和快热)实验。我们研究了困在辉石中的熔体夹杂物,因为与外部熔体相比,该相在外部熔体中重新平衡的程度比橄榄石小,并且可以将结果与以前的Nakhla熔体夹杂物研究直接进行比较。加热并均化包裹的熔体夹杂物后,安装并抛光单个矿物颗粒以暴露夹杂物。主要元素化学由电子探针确定。在Nakhla NA03中分析的最原始的熔体夹杂物是玄武质,与先前报道的纳赫石母体熔体成分非常匹配。为NA03和先前的Nakhla母体熔体估计在QFM和QFM-1处计算的MELTS平衡和分步结晶模型产生了可以与Nakhla进行比较的相组合和组成。在这些模型中,NAFM在QFM-1处的平衡结晶与Nakhla的矿物相和组成最匹配。在所有模型中,橄榄石和辉石共同结晶,这与以下假设有关:橄榄石不是异晶的,但经历了亚固相线的重新平衡。此外,测得的熔体夹杂物组成沿MELTS计算的下降液体线绘图,可能代表结晶过程中各个阶段捕获的熔体袋。我们试图解决Nakhla父母熔体成分先前估计之间的差异,并重新解释Nakhla先前均质熔体包裹体研究的结果。熔体包裹体表明,纳赫拉是火成岩,其母体熔体成分和结晶历史反映了行星的火成过程。

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