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首页> 外文期刊>Journal of geophysical research. Planets >Mineralogy and stratigraphy of phyllosilicate-bearing and dark mantling units in the greater Mawrth Vallis/west Arabia Terra area: Constraints on geological origin
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Mineralogy and stratigraphy of phyllosilicate-bearing and dark mantling units in the greater Mawrth Vallis/west Arabia Terra area: Constraints on geological origin

机译:矿物学和地层学phyllosilicate-bearing和黑暗覆盖单位更大的马意思/西阿拉伯土地面积:约束地质起源

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Analyses of MRO/CRISM images of the greater Mawrth Vallis region of Mars affirm the presence of two primary phyllosilicate assemblages throughout a region -1000 x 1000 km. These two units consist of an Fe/Mg-phyllosilicate assemblage overlain by an Al-phyllosilicate and hydrated silica assemblage. The lower unit contains Fe/Mgsmectites, sometimes combined with one or more of these other Fe/Mg-phyllosilicates: serpentine, chlorite, biotite, and/or vermiculite. It is more than 100 m thick and finely layered at meter scales. The upper unit includes Al-smectite, kaolin group minerals, and hydrated silica. It is tens of meters thick and finely layered as well. A common phyllosilicate stratigraphy and morphology is observed throughout the greater region wherever erosional windows are present. This suggests that the geologic processes forming these units must have occurred on at least a regional scale. Sinuous ridges (interpreted to be inverted channels) and narrow channels cut into the upper clay-bearing unit suggesting that aqueous processes were prevalent after, and possibly during, the deposition of the layered units. We propose that layered units may have been deposited at Mawrth Vallis and then subsequently altered to form the hydrated units. The Fe/Mg-phyllosilicate assemblage is consistent with hydrothermal alteration or pedogenesis of mafic to ultramafic rocks. The Al-phyllosilicate/hydrated silica unit may have formed through alteration of felsic material or via leaching of basaltic material through pedogenic alteration or a mildly acidic environment. These phyllosilicate-bearing units are overlain by a darker, relatively unaltered, and indurated material that has probably experienced a complex geological history.
机译:分析的MRO / CRISM图片更大的马斯山谷地区的火星确认两个的存在在一个主要的层状硅酸盐组合地区-1000 x 1000公里。Fe / Mg-phyllosilicate组合回一个Al-phyllosilicate和硅酸组合。Fe / Mgsmectites,有时加上一个或更多的其他Fe / Mg-phyllosilicates:蛇纹石、绿泥石、黑云母和/或蛭石。在米尺度精细分层。包括Al-smectite、高岭土组矿物和水合二氧化硅。细分层。地层学和形态学观察在更大的地区侵蚀的地方windows。地质过程形成这些单位必须有发生在至少一个区域范围内。脊(解释反向通道)切成窄渠道上有粘土单位表明水过程流行后,可能在,分层的沉积单元。分层单位可能是沉积在马随后斯山谷,然后改变形成水化单位。与水热组合是一致的变更或成土作用的镁铁质超基性的岩石。可以通过改变形成长英质的吗材料或通过浸出玄武岩材料通过成土的变更或弱酸性环境。表面由深,相对不变的,可能和硬化的材料经历了复杂的地质历史。

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