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Searching for nonlocal lithologies in the Apollo 12 regolith: a geochemical and petrological study of basaltic coarse fines from the Apollo lunar soil sample 12023,155

机译:寻找阿波罗12号风化层中的非局部岩性:阿波罗月球土壤样品中玄武岩粗细粒的地球化学和岩石学研究12023,155

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摘要

New data from a petrological and geochemical examination of 12 coarse basaltic fines from the Apollo 12 soil sample 12023,155 provide evidence of additional geochemical diversity at the landing site. In addition to the bulk chemical composition, major, minor, and trace element analyses of mineral phases are employed to ascertain how these samples relate to the Apollo 12 lithological basalt groups, thereby overcoming the problems of representativeness of small samples. All of the samples studied are low-Ti basalts (0.9–5.7 wt% TiO2), and many fall into the established olivine, pigeonite, and ilmenite classification of Apollo 12 basaltic suites. There are five exceptions: sample 12023,155_1A is mineralogically and compositionally distinct from other Apollo 12 basalt types, with low pigeonite REE concentrations and low Ni (41–55 ppm) and Mn (2400–2556 ppm) concentrations in olivine. Sample 12023,155_11A is also unique, with Fe-rich mineral compositions and low bulk Mg# (=100 × atomic Mg/[Mg+Fe]) of 21.6. Sample 12023,155_7A has different plagioclase chemistry and crystallization trends as well as a wider range of olivine Mg# (34–55) compared with other Apollo 12 basalts, and shows greater similarities to Apollo 14 high-Al basalts. Two other samples (12023,155_4A, and _5A) are similar to the Apollo 12 feldspathic basalt 12038, providing additional evidence that feldspathic basalts represent a lava flow proximal to the Apollo 12 site rather than material introduced by impacts. We suggest that at least one parent magma, and possibly as many as four separate parent magmas, are required in addition to the previously identified olivine, pigeonite, and ilmenite basaltic suites to account for the observed chemical diversity of basalts found in this study.
机译:来自阿波罗12号土壤样品12023,155的12种粗玄武岩细屑的岩石学和地球化学检查的新数据提供了登陆点额外地球化学多样性的证据。除了化学成分外,还采用矿物相的主要,次要和微量元素分析来确定这些样品与Apollo 12岩性玄武岩群之间的关系,从而克服了小样品代表性的问题。所有研究的样品均为低钛玄武岩(TiO2含量为0.9-5.7 wt%),其中许多属于Apollo 12玄武岩组的橄榄石,贝纳石和钛铁矿分类。有五个例外:样品12023,155_1A在矿物学和成分上与其他Apollo 12玄武岩类型不同,橄榄石中的REE含量低,橄榄石中的Ni(41-55 ppm)和Mn(2400-2556 ppm)含量低。样品12023,155_11A也是独特的,富铁矿物成分和低体积Mg#(= 100×原子Mg / [Mg + Fe])为21.6。与其他Apollo 12玄武岩相比,样品12023,155_7A具有不同的斜长石化学和结晶趋势,以及更大范围的橄榄石Mg#(34-55),并显示出与Apollo 14高铝玄武岩的更大相似性。其他两个样本(12023、155_4A和_5A)与阿波罗12号玄武岩玄武岩12038相似,提供了进一步的证据表明,玄武岩玄武岩代表了靠近阿波罗12号矿床的熔岩流,而不是由撞击引入的物质。我们建议,除了先前确定的橄榄石,贝南石和钛铁矿玄武岩套件之外,还需要至少一个母岩浆,可能需要多达四个单独的母岩浆,以说明在这项研究中发现的玄武岩的化学多样性。

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