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首页> 外文期刊>Journal of geophysical research. Planets >Hydrogen Variability in the Murray Formation, Gale Crater, Mars
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Hydrogen Variability in the Murray Formation, Gale Crater, Mars

机译:穆雷形成氢可变性,盖尔Crater,火星

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摘要

The Mars Science Laboratory (MSL) Curiosity rover is exploring the Murray formation, a sequence of heterolithic mudstones and sandstones recording fluvial deltaic and lake deposits that comprise over 350 m of sedimentary strata within Gale crater. We examine >4,500 Murray formation bedrock points, employing recent laboratory calibrations for ChemCam laser-induced breakdown spectroscopy H measurements at millimeter scale. Bedrock in the Murray formation has an interquartile range of 2.3-3.1 wt.% H_2O, similar to measurements using the Dynamic Albedo of Neutrons and Sample Analysis at Mars instruments. However, specific stratigraphic intervals include high H targets (6-18 wt.% H_2O) correlated with Si, Mg, Ca, Mn, or Fe, indicating units with opal, hydrated Mg sulfates, hydrated Ca sulfates, Mn-enriched units, and akageneite or other iron oxyhydroxides, respectively. One stratigraphic interval with higher hydrogen is the Sutton Island unit and Blunts Point unit contact, where higher hydrogen is associated with Fe-rich, Ca-rich, and Mg-rich points. A second interval with higher hydrogen occurs in the Vera Rubin ridge portion of the Murray formation, where higher hydrogen is associated with Fe-rich, Ca-rich, and Si-rich points. We also observe trends in the H signal with grain size, separate from chemical variation, whereby coarser-grained rocks have higher hydrogen. Variability in the hydrogen content of rocks points to a history of water-rock interaction at Gale crater that included changes in lake water chemistry during Murray formation deposition and multiple subsequent groundwater episodes.
机译:火星科学实验室(实验室)好奇心探测车探索穆雷的形成,是序列吗异类岩性泥岩和砂岩录音河流三角洲和湖泊沉积组成在盖尔超过350 m的沉积岩火山口。基础点,使用最近的实验室ChemCam激光校准光谱学H在毫米尺度测量。穆雷的形成有一个基石四分位范围2.3 - -3.1的wt. % H_2O,相似使用的动态反照率测量中子和火星样本分析仪器。然而,具体包括地层间隔高H - 18 (wt. % H_2O)与目标硅、镁、钙、锰、铁、注明单位蛋白石,水合镁硫酸盐、水化Ca硫酸盐,Mn-enriched单位,akageneite或其他铁分别氢氧化物。萨顿区间较高的氢岛单位,减弱点单位联系,更高的氢与Fe-rich有关,Ca-rich, Mg-rich点。较高的氢气发生在维拉鲁宾脊部分穆雷形成,更高的氢与Fe-rich有关,Ca-rich,制备了分。趋势H与粒径信号,分开从化学变化,粗粒度岩石有更高的氢。氢含量的岩石的历史水岩相互作用在盖尔陨坑包括在湖水的化学变化默里地层沉积和多个随后的地下水集。

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