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首页> 外文期刊>Journal of geophysical research. Planets >Mineralogy and morphology of geologic units at Libya Montes, Mars: Ancient aqueously derived outcrops, mafic flows, fluvial features, and impacts
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Mineralogy and morphology of geologic units at Libya Montes, Mars: Ancient aqueously derived outcrops, mafic flows, fluvial features, and impacts

机译:Libya Montes的地质单元的矿物学和形态,火星:古代衍生的露头,镁铁质流,河流特征和影响

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There is ample evidence of both ancient and long-lasting fluvial activity and chemical alteration in the Libya Montes region south of Isidis Basin. The region hosts Noachian to Amazonian aged surface rocks with extensive outcrops of olivine- and pyroxene-bearing material. Libya Montes also features surface outcrops and/or deposits hosting Fe/Mg-smectite, Fe/Mg-smectite mixed with carbonate and/or other Fe/Mg-rich phyllosilicates, and Al-smectite. These units likely formed through chemical alteration connected with hydrothermal activity resulting from the formation of the Isidis Basin and/or the pervasive fluvial activity throughout this region. The morphology and stratigraphy of the aqueous and mafic minerals are described using High Resolution Imaging Science Experiment and High Resolution Stereo Camera derived digital terrain models. Analyses of the Compact Reconnaissance Imaging Spectrometer for Mars spectra show variations in the chemistry of the Fe/Mg-smectite from nontronite-like exposures with spectral features near 2.29 and 2.4 μm more consistent with Fe~(3+) _2OH groups in the mineral structure, and saponite-like outcrops with spectral features near 2.31 and 2.38 μm characteristic of Mg~(2+) _3OH groups. These Fe/Mg-smectite bearing materials also have bands near 1.9 μm due to H_2O and near 2.5 μm that could be due to the smectite, other phyllosilicates, and carbonates. All regions exhibiting carbonate features near 3.4-3.5 μm also have features consistent with the presence of olivine and Fe/Mg-smectite, indicating that the carbonate signatures occur in rocks likely containing a mixture of these minerals. The Al-smectite-bearing rocks have bands near 1.41, 1.91, and 2.19 μm that are more consistent with beidellite than other Al-phyllosilicates, indicating a higher-temperature or diagenetically processed origin for this material. Our interpretation of the geologic history of this region is that ancient Noachian basaltic crustal materials experienced extensive aqueous alteration at the time of the Isidis impact, during which the montes were also formed, followed by emplacement of a rough olivine-rich lava or melt, and finally the smooth pyroxene-bearing caprock unit. Key Points The Libya Montes region includes Noachian to Amazonian aged surface rocks Surface rocks contain pyroxene, olivine, Fe/Mg-clays, dolomite, and beidellite Aqueous alteration and montes formation were likely induced by the Isidis impact.
机译:有足够的证据表明,伊西迪斯盆地以南的利比亚蒙特斯地区古代和持久的河流活性和化学改变。该地区将Noachian占据了亚马逊老化的表面岩石,并具有广泛的橄榄石和耐辉石材料的露头。利比亚蒙特斯还具有托管Fe/mg-smectite,Fe/mg-smectite与碳酸盐和/或其他富含Fe/mg的富含Fe/mg的植物和al-SmeTite混合的表面露头和/或沉积物。这些单位可能是通过与伊西迪盆地形成和/或整个地区普遍存在的河流活性相关的化学改变形成的。使用高分辨率成像科学实验和高分辨率立体相机衍生的数字地形模型来描述水和镁铁质矿物的形态和地层。对MARS光谱的紧凑型侦察成像光谱仪的分析表明,Fe/mg-丝岩的化学因素从非三位铁矿样暴露中的频谱特征接近2.29和2.4μm的非三位石样暴露与矿物结构中的Fe〜(3+)_2OH相一致的变化,和含皂石的露头,具有光谱特征接近2.31和2.38μm的特征Mg〜(2+)_3OH组。由于H_2O,由于H_2O和接近2.5μm,这些Fe/mg-smeTite轴承材料还具有接近1.9μm的频带,这可能是由于蒙脱石,其他苯硅酸盐和碳酸盐造成的。在3.4-3.5μm附近表现出碳酸盐特征的所有区域也具有与橄榄石和Fe/mg-smectite的存在一致的特征,表明碳酸盐特征出现在可能包含这些矿物质混合物的岩石中。阳性岩石岩具有接近1.41、1.91和2.19μm接近甲虫的条带,比其他Al-phyllosilicates更一致,表明该材料具有更高的温度或可基质处理的起源。我们对该地区的地质历史的解释是,古老的诺阿西玄武岩层材料在Isidis撞击时经历了广泛的水性改变,在此期间还形成了蒙特,然后再塑造出富含岩石的橄榄型熔岩或融化,并且会汇集。最后,光滑的含辉石的花瓶单元。 Libya Montes地区的关键点包括Noachian到亚马逊老化的表面岩石表面岩石含有辉石,橄榄石,Fe/mg-clays,白云岩和贝德岩水性改变,蒙特斯的形成很可能受到Isidis影响的诱导。

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