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首页> 外文期刊>Nature geoscience >Silica deposits in the Nili Patera caldera on the Syrtis Major volcanic complex on Mars
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Silica deposits in the Nili Patera caldera on the Syrtis Major volcanic complex on Mars

机译:火星Syrtis大火山复合体上的Nili Patera破火山口中的二氧化硅沉积

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The martian surface features abundant volcanoes and evidence for past liquid water. Extant or relict martian volcanic hydrothermal systems have therefore been sought in the pursuit of evidence for habitable environments ~1. The Mars Exploration Rover, Spirit, detected deposits highly enriched in silica with accessory minerals, suggesting formation by hydrothermal leaching of basaltic rocks by low-pH solutions~2. However, extensive erosion has obscured the context of the formation environment of these deposits. Silica deposits have also been identified remotely, but also with limited contextual clues to their formation; aqueous alteration products of basalt and volcanic ash are the most likely sources~(3,4). Here we report the detection from orbit of hydrated silica deposits on the flanks of a volcanic cone in the martian Syrtis Major caldera complex. Near-infrared observations show dozens of localized hydrated silica deposits. As a result of the morphology of these deposits and their location in and around the cone summit, we suggest that the deposits were produced by a volcanically driven hydrothermal system. The cone and associated lava flows post-date Early Hesperian volcano formation. We conclude that, if a relict hydrothermal system was associated with the silica deposits, it may preserve one of the most recent habitable microenvironments on Mars.
机译:火星表面具有丰富的火山和过去液态水的证据。因此,在寻找适合居住环境的证据时一直在寻找现存或遗留的火星火山热液系统。火星探测漫游者精神号探测到富含辅助矿物质的二氧化硅沉积物,表明低pH值溶液〜2通过玄武岩的水热浸出形成。但是,大范围的侵蚀掩盖了这些沉积物的形成环境。二氧化硅沉积物也已经被远程发现,但是对于形成它们的背景线索也很有限。玄武岩和火山灰的含水蚀变产物是最可能的来源[3,4]。在这里,我们报告了从火星Syrtis Major破火山口复杂火山锥的侧面水合二氧化硅沉积物的轨道检测到的结果。近红外观测显示数十个局部水合二氧化硅沉积物。由于这些矿床的形态及其在圆锥顶峰中及其附近的位置,我们建议这些矿床是由火山驱动的热液系统产生的。锥和相关的熔岩流是早于西斯佩里亚火山形成之后的。我们得出的结论是,如果遗留水热系统与二氧化硅沉积物相关联,它可能会保留火星上最新的可居住微环境之一。

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