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Heterogeneity in lunar anorthosite meteorites: Implications for the lunar magma ocean model

机译:月球斜长岩陨石的异质性:对月球岩浆海洋模型的影响

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摘要

The lunar magma ocean model is a well-established theory of the early evolution of the Moon. By this model, the Moon was initially largely molten and the anorthositic crust that now covers much of the lunar surface directly crystallized from this enormous magma source. We are undertaking a study of the geochemical characteristics of anorthosites from lunar meteorites to test this model. Rare earth and other element abundances have been measured in situ in relict anorthosite clasts from two feldspathic lunar meteorites: Dhofar 908 and Dhofar 081. The rare earth elements were present in abundances of approximately 0.1 to approximately 10× chondritic (CI) abundance. Every plagioclase exhibited a positive Eu-anomaly, with Eu abundances of up to approximately 20 × CI. Calculations of the melt in equilibrium with anorthite show that it apparently crystallized from a magma that was unfractionated with respect to rare earth elements and ranged in abundance from 8 to 80 × CI. Comparisons of our data with other lunar meteorites and Apollo samples suggest that there is notable heterogeneity in the trace element abundances of lunar anorthosites, suggesting these samples did not all crystallize from a common magma source. Compositional and isotopic data from other authors also suggest that lunar anorthosites are chemically heterogeneous and have a wide range of ages. These observations may support other models of crust formation on the Moon or suggest that there are complexities in the lunar magma ocean scenario to allow for multiple generations of anorthosite formation. © 2014 The Author(s) Published by the Royal Society.
机译:月球岩浆海洋模型是月球早期演化的公认理论。通过这种模型,月球最初主要是融化的,而现在覆盖了大部分月球表面的无脊椎动物壳直接从这个巨大的岩浆源中结晶出来。我们正在研究月球陨石中的钙长石的地球化学特征,以测试该模型。稀土元素和其他元素的丰度已在两个长石型陨石:Dhofar 908和Dhofar 081的残留正斜岩碎屑中进行了现场测量。稀土元素的丰度大约为软骨素(CI)的0.1到10倍。每个斜长石均表现出正Eu异常,Eu丰度高达约20×CI。计算得到的与钙长石平衡的熔体表明,它显然是从岩浆中结晶出来的,该岩浆相对于稀土元素而言是未分级的,其丰度范围为8到80×CI。我们的数据与其他月球陨石和阿波罗样品的比较表明,月球无钙铁矿中微量元素的丰度存在显着的异质性,这表明这些样品并非都来自同一岩浆源结晶。来自其他作者的组成和同位素数据也表明,月球原位生物在化学上是异质的,并且年龄范围很广。这些观察结果可能支持月球上地壳形成的其他模型,或者表明在月岩浆海洋场景中存在复杂性,以允许多代钙铁矿的形成。 ©2014英国皇家学会出版。

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