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发展创新的非破坏性分析策略,用于火星样本返回,在达尔加尼 735 火星陨石上进行测试。

Development of innovative non-destructive analytical strategies for Mars Sample Return tested on Dar al Gani 735 Martian Meteorite.

机构信息

Department of Analytical Chemistry, Faculty of Science and Technology, University of the Basque Country UPV/EHU, Barrio Sarriena S/n, 48940, Leioa, Basque Country, Spain.

Department of Analytical Chemistry, Faculty of Science and Technology, University of the Basque Country UPV/EHU, Barrio Sarriena S/n, 48940, Leioa, Basque Country, Spain.

出版信息

Talanta. 2021 Mar 1;224:121863. doi: 10.1016/j.talanta.2020.121863. Epub 2020 Nov 5.

Abstract

This work proposes an innovative non-destructive analytical strategy, based on Confocal Raman micro-spectroscopy, High Resolution Raman Imaging and micro-X-Ray Fluorescence imaging, as part of the quick non-destructive techniques that could be used to characterize the Martian samples from the Mars Sample Return mission when back on Earth. Until that moment, Martian Meteorites are the only Martian samples in our hands to develop such Analytical Strategies. To demonstrate its capabilities, this analytical strategy has been applied to characterize the Dar al Gani 735 Martian Meteorite with the aim to identify the terrestrial and non-terrestrial alterations suffered by the meteorite as a very valuable complementary methodology to the more traditional petrographic analyses and single point measurements. The combination of these techniques allows extracting at the same time elemental, molecular and structural information of the studied area of the sample. The most relevant results on the analyzed DaG 735 shergottite thick samples revealed the presence of several altered mineral phases originated from the temperature and pressure conditions during the shock on Mars (anhydride, calcite and ilmenite), as well as from terrestrial weathering processes that degraded the meteorite from its landing on Earth (calcite and hematite in fractures together with gypsum, mirabilite and thenardite). As most of the conclusive results come from Raman spectroscopy, this study shows the potential of Raman spectroscopy as a key technique in the upcoming new explorations of Mars materials by the Rosalind Franklin rover (Exomars2022 mission from ESA) and the Perseverance rover (Mars2020 mission from NASA), where Raman spectrometers are mounted for the first time in an extra-terrestrial research in the field.

摘要

本工作提出了一种基于共焦拉曼微光谱、高分辨率拉曼成像和微 X 射线荧光成像的创新非破坏性分析策略,作为可用于对返回地球的火星样本返回任务中的火星样本进行快速非破坏性分析的技术之一。在那之前,火星陨石是我们手中唯一可用于开发此类分析策略的火星样本。为了证明其能力,本分析策略已应用于对 Dar al Gani 735 火星陨石进行特征描述,旨在确定陨石所经历的地球和非地球变质作用,这是对更传统的岩相分析和单点测量的非常有价值的补充方法。这些技术的结合允许同时提取样品研究区域的元素、分子和结构信息。对分析的 DaG 735 斜长岩厚样品的最相关结果表明,存在几种源自火星冲击时温度和压力条件的变质矿物相(无水物、方解石和钛铁矿),以及源自陨石从着陆地球到风化的地球风化过程(裂缝中的方解石和赤铁矿以及石膏、芒硝和硫代硫酸钠)。由于大多数结论性结果来自拉曼光谱,因此本研究表明了拉曼光谱作为即将到来的 Rosalind Franklin 漫游者(ESA 的 Exomars2022 任务)和毅力漫游者(NASA 的 Mars2020 任务)对火星材料进行新探索的关键技术的潜力,其中拉曼光谱仪首次安装在地球外领域的研究中。

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