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First detection of fluorine on Mars: Implications for Gale Crater's geochemistry

机译:在火星上首次发现氟:对大风火山口的地球化学意义

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Volatiles and especially halogens (F and Cl) have been recognized as important species in the genesis and melting of planetary magmas. Data from the Chemical Camera instrument on board the Mars Science Laboratory rover Curiosity now provide the first in situ analyses of fluorine at the surface of Mars. Two principal F-bearing mineral assemblages are identified. The first is associated with high aluminum and low calcium contents, in which the F-bearing phase is an aluminosilicate. It is found in conglomerates and may indicate petrologically evolved sources. This is the first time that such a petrologic environment is found on Mars. The second is represented by samples that have high calcium contents, in which the main F-bearing minerals are likely to be fluorapatites and/or fluorites. Fluorapatites are found in some sandstone and may be detrital, while fluorites are also found in the conglomerates, possibly indicating low-T alteration processes.
机译:挥发物,尤其是卤素(F和Cl)已被认为是行星岩浆形成和融化的重要物种。现在,来自火星科学实验室流动站“好奇号”上化学照相机仪器的数据提供了火星表面氟的第一个原位分析。确定了两个主要的含F矿物组合。第一个与铝含量高和钙含量低有关,其中F轴承相是铝硅酸盐。它在集团企业中发现,可能表明是岩石学上演化的来源。这是火星上首次发现这种岩石环境。第二种是具有高钙含量的样品,其中主要的含F矿物可能是氟磷灰石和/或萤石。氟磷灰石存在于某些砂岩中,可能是有害的,而萤石也存在于砾岩中,这可能表明低T蚀变过程。

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