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火星盖尔撞击坑巴格诺尔德沙丘场纳米布沙丘和高沙丘的化学、矿物学及颗粒特性:好奇号火星车观测结果综述

Chemistry, mineralogy, and grain properties at Namib and High dunes, Bagnold dune field, Gale crater, Mars: A synthesis of Curiosity rover observations.

作者信息

Ehlmann B L, Edgett K S, Sutter B, Achilles C N, Litvak M L, Lapotre M G A, Sullivan R, Fraeman A A, Arvidson R E, Blake D F, Bridges N T, Conrad P G, Cousin A, Downs R T, Gabriel T S J, Gellert R, Hamilton V E, Hardgrove C, Johnson J R, Kuhn S, Mahaffy P R, Maurice S, McHenry M, Meslin P-Y, Ming D W, Minitti M E, Morookian J M, Morris R V, O'Connell-Cooper C D, Pinet P C, Rowland S K, Schröder S, Siebach K L, Stein N T, Thompson L M, Vaniman D T, Vasavada A R, Wellington D F, Wiens R C, Yen A S

机构信息

Division of Geological and Planetary Sciences California Institute of Technology Pasadena California USA.

Jet Propulsion Laboratory California Institute of Technology Pasadena California USA.

出版信息

J Geophys Res Planets. 2017 Dec;122(12):2510-2543. doi: 10.1002/2017JE005267. Epub 2017 Dec 7.

Abstract

The Mars Science Laboratory Curiosity rover performed coordinated measurements to examine the textures and compositions of aeolian sands in the active Bagnold dune field. The Bagnold sands are rounded to subrounded, very fine to medium sized (~45-500 μm) with ≥6 distinct grain colors. In contrast to sands examined by Curiosity in a dust-covered, inactive bedform called Rocknest and soils at other landing sites, Bagnold sands are darker, less red, better sorted, have fewer silt-sized or smaller grains, and show no evidence for cohesion. Nevertheless, Bagnold mineralogy and Rocknest mineralogy are similar with plagioclase, olivine, and pyroxenes in similar proportions comprising >90% of crystalline phases, along with a substantial amorphous component (35% ± 15%). Yet Bagnold and Rocknest bulk chemistry differ. Bagnold sands are Si enriched relative to other soils at Gale crater, and HO, S, and Cl are lower relative to all previously measured Martian soils and most Gale crater rocks. Mg, Ni, Fe, and Mn are enriched in the coarse-sieved fraction of Bagnold sands, corroborated by visible/near-infrared spectra that suggest enrichment of olivine. Collectively, patterns in major element chemistry and volatile release data indicate two distinctive volatile reservoirs in Martian soils: (1) amorphous components in the sand-sized fraction (represented by Bagnold) that are Si-enriched, hydroxylated alteration products and/or HO- or OH-bearing impact or volcanic glasses and (2) amorphous components in the fine fraction (<40 μm; represented by Rocknest and other bright soils) that are Fe, S, and Cl enriched with low Si and adsorbed and structural HO.

摘要

火星科学实验室的好奇号火星车进行了协同测量,以研究活跃的巴格诺尔德沙丘场中风成砂的质地和成分。巴格诺尔德砂呈圆形至次圆形,粒度非常细至中等(约45 - 500微米),有≥6种不同的颗粒颜色。与好奇号在一个名为“岩巢”的尘土覆盖的非活动床形地貌中检测的沙子以及其他着陆点的土壤相比,巴格诺尔德砂颜色更深,红色更淡,分选更好,粉砂级或更小的颗粒更少,且没有凝聚力的迹象。然而,巴格诺尔德砂的矿物学与“岩巢”砂的矿物学相似,斜长石、橄榄石和辉石的比例相似,占结晶相的>90%,还有大量非晶质成分(35%±15%)。不过,巴格诺尔德砂和“岩巢”砂的整体化学成分不同。巴格诺尔德砂相对于盖尔陨石坑的其他土壤富含硅,而相对于所有先前测量的火星土壤和大多数盖尔陨石坑岩石,氢、硫和氯含量较低。镁、镍、铁和锰在巴格诺尔德砂的粗筛部分中富集,可见/近红外光谱证实了这一点,该光谱表明橄榄石富集。总体而言,主要元素化学和挥发性释放数据的模式表明火星土壤中有两个独特的挥发性储库:(1)砂级部分的非晶质成分(以巴格诺尔德砂为代表),它们是富含硅的、经羟基化蚀变的产物和/或含氢或羟基的撞击或火山玻璃;(2)细粒部分(<40微米;以“岩巢”砂和其他亮色土壤为代表)的非晶质成分,它们富含铁、硫和氯,硅含量低,且含有吸附态和结构态的氢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b67e/5815393/740c5efd2063/JGRE-122-2510-g001.jpg

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