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An Apollo 15 Mare Basalt Fragment and Lunar Mare Provinces

机译:阿波罗15号母马玄武岩碎片和月球母马省份

摘要

Lunar sample 15474,4 is a tiny fragment of olivine-augite vitrophyre that is a mare basalt. Although petroraphically distinct from all other Apollo 15 samples, it has been ignored since its first brief description. Our new petrographic and mineral chemical data show that the olivines and pyroxenes are distinct from those in other basalts. The basalt cooled and solidified extremely rapidly; some of the olivine might be cumulate or crystallized prior to extrusion. Bulk-chemical data show that the sample is probably similar to an evolved Apollo 15 olivine-normative basalt in major elements but is distinct in its rare earth element pattern. Its chemical composition and petrography both show that 15474,4 cannot be derived from other Apollo 15 mare basalts by shallow-level crystal fractionation. It represents a distinct extrusion of magma. Nonetheless, the chemical features that 15474,4 has in common with other Apollo 15 mare basalts, including the high FeO/Sc, the general similarity of the rare earth element pattern, and the common (and chondritic) TiO2/Sm ratio, emphasize the concept of a geochemical province at the Apollo 15 site that is distinct from basalts and provinces elsewhere. In making a consistent picture for the derivation of all of the Apollo 15 basalts, both the commonalities and the differences among the basalts must be explained. The Apollo 15 commonalities and differences suggest that the sources must have consisted of major silicate phases with the same composition but with varied amounts of a magma trapped from a contemporary magma ocean. They probably had a high olivine/pyroxene ratio and underwent small and reasonably consistent degrees of partial melting to produce the basalts. These inferences may be inconsistent with models that suggest greatly different depths of melting among basalts, primitive sources for the green glasses, or extensive olivine fractionation during ascent. An integrated approach to lunar mare provinces, of which the Apollo 15 mare basalts constitute only one, offers advances in our understanding of the physical and chemical processes of source formation and mare production but has so far not been utilized.
机译:月球样本15474,4是橄榄石-镁橄榄石玻璃微石的微小碎片,是玄武岩。尽管从石磁学角度上与所有其他Apollo 15样品不同,但是自从对其进行首次简要说明以来,它一直被忽略。我们的新岩石学和矿物化学数据表明,橄榄石和辉石与其他玄武岩中的橄榄石和辉石不同。玄武岩非常迅速地冷却和凝固。在挤出之前,一些橄榄石可能会堆积或结晶。大量化学数据表明,该样品的主要元素可能与演化的Apollo 15橄榄石规范玄武岩相似,但其稀土元素模式却与众不同。其化学成分和岩石学都表明,通过浅层晶体分级分离无法从其他阿波罗15母马玄武岩中得到15474,4。它代表了岩浆的独特挤压。但是,15474,4与其他Apollo 15母马玄武岩具有相同的化学特征,包括较高的FeO / Sc,稀土元素图案的一般相似性以及常见的(和软骨状的)TiO2 / Sm比。阿波罗15号矿山的地球化学省的概念与玄武岩和其他省份不同。在对所有阿波罗15号玄武岩的派生进行一致描述时,必须说明玄武岩之间的共性和差异。阿波罗15号的共同点和差异表明,这些源必定由主要的硅酸盐相组成,这些相具有相同的成分,但从现代岩浆海洋中捕获的岩浆数量却不同。它们可能具有较高的橄榄石/辉石比率,并且经历了较小且合理程度一致的部分熔融程度,以生产玄武岩。这些推论可能与提出玄武岩,绿色玻璃的原始来源或上升过程中广泛的橄榄石分级分离的深度不同的模型不一致。阿波罗15号母马玄武岩仅构成月球母马省的一种综合方法,在我们对源形成和母马生产的物理和化学过程的理解上有所进展,但迄今为止尚未得到利用。

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