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An analysis of Apollo lunar soil samples 12070,889, 12030,187, and 12070,891: Basaltic diversity at the Apollo 12 landing site and implications for classification of small-sized lunar samples

机译:阿波罗月球土壤样品12070,889、12030,187和12070,891的分析:阿波罗12号登陆点的玄武岩多样性及其对小型月球样品分类的影响

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Lunar mare basalts provide insights into the compositional diversity of the Moon's interior. Basalt fragments from the lunar regolith can potentially sample lava flows from regions of the Moon not previously visited, thus, increasing our understanding of lunar geological evolution. As part of a study of basaltic diversity at the Apollo 12 landing site, detailed petrological and geochemical data are provided here for 13 basaltic chips. In addition to bulk chemistry, we have analyzed the major, minor, and trace element chemistry of mineral phases which highlight differences between basalt groups. Where samples contain olivine, the equilibrium parent melt magnesium number (Mg#; atomic Mg/[Mg + Fe]) can be calculated to estimate parent melt composition. Ilmenite and plagioclase chemistry can also determine differences between basalt groups. We conclude that samples of approximately 1-2mm in size can be categorized provided that appropriate mineral phases (olivine, plagioclase, and ilmenite) are present. Where samples are fine-grained (grain size <0.3mm), a paired samples t-test can provide a statistical comparison between a particular sample and known lunar basalts. Of the fragments analyzed here, three are found to belong to each of the previously identified olivine and ilmenite basalt suites, four to the pigeonite basalt suite, one is an olivine cumulate, and two could not be categorized because of their coarse grain sizes and lack of appropriate mineral phases. Our approach introduces methods that can be used to investigate small sample sizes (i.e., fines) from future sample return missions to investigate lava flow diversity and petrological significance.
机译:月球母玄武岩提供了对月球内部组成多样性的见解。月球重生岩的玄武岩碎片可以潜在地采样来自以前未曾访问过的月球区域的熔岩流,从而增加了我们对月球地质演化的了解。作为对阿波罗12号登陆点玄武岩多样性的研究的一部分,此处提供了13种玄武岩碎屑的详细岩石学和地球化学数据。除了本体化学外,我们还分析了矿物相的主要,次要和微量元素化学,这些化学元素突出了玄武岩组之间的差异。如果样品中含有橄榄石,则可以计算出平衡的母体熔体镁数(Mg#;原子Mg / [Mg + Fe])来估计母体熔体组成。钛铁矿和斜长石化学也可以确定玄武岩组之间的差异。我们得出的结论是,只要存在适当的矿物相(橄榄石,斜长石和钛铁矿),就可以对大约1-2mm的样品进行分类。如果样品是细颗粒的(粒度小于0.3毫米),则配对的t检验可提供特定样品与已知月球玄武岩之间的统计比较。在这里分析的碎片中,发现三个属于先前确定的橄榄石和钛铁矿玄武岩组中的每个,四个属于皂石玄武岩组,一个是橄榄石堆积物,两个由于其粗大的晶粒尺寸和缺乏而无法归类。适当的矿物相。我们的方法引入了可用于调查未来样本返回任务中的小样本量(即罚款)的方法,以研究熔岩流的多样性和岩石学意义。

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