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首页> 外文期刊>Journal of geophysical research. Planets >Dusty Rocks in Gale Crater: Assessing Areal Coverage and Separating Dust and Rock Contributions in APXS Analyses
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Dusty Rocks in Gale Crater: Assessing Areal Coverage and Separating Dust and Rock Contributions in APXS Analyses

机译:大风火山口中的尘土岩石:评估APXS分析中的面积覆盖范围和分离灰尘和岩石的贡献

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摘要

A thin, patchy layer of airfall dust covers rock surfaces examined by the Mars Science Lab rover Curiosity and complicates interpretation of textures in Mars Hand Lens Imager images and compositions determined by Alpha Particle X-ray Spectrometer (APXS). Using three image processing methods, we estimate dust coverages for Mars Hand Lens Imager images of APXS targets to Sol 1512. Dust coverages of as is rock targets range from 6% to 77% (±5% to 10% estimated error). Targets brushed by the Dust Removal Tool range to lower coverages than as is targets, but quality depends on surface type; brushed mudstones have the narrowest range and lowest coverages (11-25%), while sandstones vary, ranging to higher coverages (12-58%). Groups of rocks with similar compositions (APXS classes) can have strong correlations between dust coverage and SO_3/Cl (up to r = 0.985). Dust can also strongly affect the lightest elements measured (Na to Ca). By comparing paired as is and Dust Removal Tool analyses, using the determined dust coverages, and finding a best fit dust thickness (generally ~10 μm), we model relative contributions of the dust and bedrock to extrapolate dust-free compositions for homogeneous APXS classes. The dust is basaltic with high S and Cl. Dust-free rocks have higher SiO_2 and Na_2O (up to 6.5 wt% and 0.5 wt% higher, respectively) and lower SO_3 and CaO (up to 5.5 wt% and 1.3 wt% lower, respectively) than dusty equivalents. Dust most influences compositions that are very different from average Mars, including the alkali-rich, MgO-poor Jake M class.
机译:一层薄而片状的Airfall灰尘覆盖了Mars Science Lab Rover的好奇心检查的岩石表面,并使Mars手镜像图像和由Alpha粒子X射线光谱仪(APXS)确定的Mars手镜像图像和组成的纹理的解释变得复杂。使用三种图像处理方法,我们估计了APX目标的火星手镜头图像的灰尘覆盖范围为SOL1512。AS岩石目标的尘埃覆盖率范围为6%至77%(±5%至10%估计的错误)。与目标相比,被防尘工具范围刷到较低的覆盖范围,但质量取决于表面类型。拉丝泥岩的范围最窄,覆盖率最低(11-25%),而砂岩的范围为较高的覆盖率(12-58%)。具有相似成分的岩石组(APXS类)可以在灰尘覆盖率与SO_3/Cl之间具有很强的相关性(最高r = 0.985)。灰尘还可以强烈影响测量的最轻元素(Na至CA)。通过比较原样的配对和除尘工具分析,使用确定的灰尘覆盖范围,并找到最佳合适的灰尘厚度(通常〜10μm),我们对粉尘和基岩的相对贡献进行了模拟,以推断出均质APXS类的无灰尘组成。灰尘是玄武岩,具有高s和cl。无尘岩具有更高的SIO_2和NA_2O(分别高6.5 wt%和0.5 wt%),而SO_3和CAO(分别高达5.5 wt%和低1.3 wt%)比尘土飞扬的等效物。灰尘大多数影响与普通火星截然不同的组合物,包括碱富含碱,贫穷的杰克M类。

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