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首页> 外文期刊>Journal of geophysical research. Planets >Spectral and stratigraphic mapping of hydrated sulfate and phyllosilicate-bearing deposits in northern Sinus Meridiani, Mars
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Spectral and stratigraphic mapping of hydrated sulfate and phyllosilicate-bearing deposits in northern Sinus Meridiani, Mars

机译:光谱和地层水化的映射硫酸和phyllosilicate-bearing存款窦子午线平原北部,火星

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摘要

We present detailed stratigraphic and spectral analyses that focus on a region in northern Sinus Meridiani located between 1°N to 5°N latitude and 3°W to 1°E longitude. Several stratigraphically distinct units are defined and mapped using morphologic expression, spectral properties, and superposition relationships. Previously unreported exposures of hydrated sulfates and Fe/Mg smectites are identified using MRO CRISM and MEX OMEGA near-infrared (1.0 to 2.5 μm) spectral reflectance observations. Layered deposits with monohydrated and polyhydrated sulfate spectral signatures that occur in association with a northeast-southwest trending valley are reexamined using high-resolution CRISM, HiRISE, and CTX images. Layers that are spectrally dominated by monohydrated and polyhydrated sulfates are intercalated. The observed compositional layering implies that multiple wetting events, brine recharge, or fluctuations in evaporation rate occurred. We infer that these hydrated sulfate-bearing layers were unconformably deposited following the extensive erosion of preexisting layered sedimentary rocks and may postdate the formation of the sulfate- and hematite-bearing unit analyzed by the MER Opportunity rover. Therefore, at least two episodes of deposition separated by an unconformity occurred. Fe/Mg phyllosilicates are detected in units that predate the sulfate-and hematite-bearing unit. The presence of Fe/Mg smectite in older units indicates that the relatively low pH formation conditions inferred for the younger sulfate- and hematite-bearing unit are not representative of the aqueous geochemical environment that prevailed during the formation and alteration of earlier materials. Sedimentary deposits indicative of a complex aqueous history that evolved over time are preserved in Sinus Meridiani, Mars.
机译:我们提出详细的地层和光谱分析关注窦北部的一个地区子午线平原位于1°N 5°N和纬度3°W 1°E经度。不同的单位和映射定义使用形态学表现、光谱特性和叠加关系。未报告的水合硫酸盐和曝光使用MRO CRISM Fe / Mg蒙脱石进行标识和墨西哥人ω近红外(1.0 - 2.5μm)光谱反射观测。存款一水化物的和多水合物发生在硫酸的光谱特征协会northeast-southwest趋势谷使用高分辨率进行了复查HiRISE CRISM, CTX图像。幽灵般由一水化物的和多水合物硫酸盐间。观察成分分层意味着多个润湿事件、盐水补给或蒸发率发生变化。推断这些含硫酸盐水化层后沉积不整合广泛的先前存在分层的侵蚀后的沉积岩和可能形成硫酸-并和赤铁矿的单位分析了由MER罗孚的机会。至少两集的沉积隔开发生了不整合。在单位,发现早在吗并硫酸盐和赤铁矿。Fe / Mg蒙脱石在老单位表示相对较低的pH值形成的条件年轻的硫酸和推断hematite-bearing单位并不代表水地球化学环境盛行的形成和改变早些时候的材料。说明一个复杂的水历史随着时间的推移演变是保存在窦Meridiani、火星。

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