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利用火星2020任务和罗莎琳德·富兰克林号火星任务中所采用的技术,对来自高海拔盐湖的一种瘤状岩进行多分析表征。

Multi-analytical characterization of an oncoid from a high altitude hypersaline lake using techniques employed in the Mars2020 and Rosalind Franklin missions on Mars.

作者信息

Huidobro J, Madariaga J M, Carrizo D, Laserna J L, Rull F, Martínez-Frías J, Aramendia J, Sánchez-García L, García-Gómez L, Vignale F A, Farías M E, Veneranda M, Población I, Cabalín L M, López-Reyes G, Coloma L, García-Florentino C, Arana G, Castro K, Delgado T, Álvarez-Llamas C, Fortes F J, Manrique J A

机构信息

IBeA Research Group, University of the Basque Country (UPV/EHU), Spain.

Centro de Astrobiología (CAB, INTA-CSIC), Spain.

出版信息

Anal Chim Acta. 2023 Oct 2;1276:341632. doi: 10.1016/j.aca.2023.341632. Epub 2023 Jul 17.

Abstract

In this work, a geological sample of great astrobiological interest was studied through analytical techniques that are currently operating in situ on Mars and others that will operate in the near future. The sample analyzed consisted of an oncoid, which is a type of microbialite, collected in the Salar Carachi Pampa, Argentina. The main peculiarity of microbialites is that they are organo-sedimentary deposits formed by the in situ fixation and precipitation of calcium carbonate due to the growth and metabolic activities of microorganisms. For this reason, the Carachi Pampa oncoid was selected as a Martian analog for astrobiogeochemistry study. In this sense, the sample was characterized by means of the PIXL-like, SuperCam-like and SHERLOC-like instruments, which represent instruments on board the NASA Perseverance rover, and by means of RLS-like and MOMA-like instruments, which represent instruments on board the future ESA Rosalind Franklin rover. It was possible to verify that the most important conclusions and discoveries have been obtained from the combination of the results. Likewise, it was also shown that Perseverance rover-like remote-sensing instruments allowed a first detailed characterization of the biogeochemistry of the Martian surface. With this first characterization, areas of interest for in-depth analysis with Rosalind Franklin-like instruments could be identified. Therefore, from a first remote-sensing elemental identification (PIXL-like instrument), followed by a remote-sensing molecular characterization (SuperCam and SHERLOC-like instruments) and ending with an in-depth microscopic analysis (RLS and MOMA-like instruments), a wide variety of compounds were found. On the one hand, the expected minerals were carbonates, such as aragonite, calcite and high-magnesium calcite. On the other hand, unexpected compounds consisted of minerals related to the Martian/terrestrial surface (feldspars, pyroxenes, hematite) and organic compounds related to the past biological activity related to the oncoid (kerogen, lipid biomarkers and carotenes). Considering samples resembling microbialites have already been found on Mars and that one of the main objectives of the missions is to identify traces of past life, the study of microbialites is a potential way to find biosignatures protected from the inhospitable Martian environment. In addition, it should be noted that in this work, further conclusions have been obtained through the study of the results as a whole, which could also be carried out on Mars.

摘要

在这项工作中,通过目前在火星上实地运行以及未来不久将运行的分析技术,对一个具有重大天体生物学意义的地质样本进行了研究。所分析的样本是在阿根廷卡拉奇潘帕盐沼采集的一种瘤状叠层石,它属于微生物岩的一种。微生物岩的主要特点是它们是由于微生物的生长和代谢活动,通过碳酸钙的原位固定和沉淀形成的有机沉积矿床。因此,卡拉奇潘帕瘤状叠层石被选为用于天体生物地球化学研究的火星模拟物。从这个意义上说,该样本通过类似PIXL、类似SuperCam和类似SHERLOC的仪器进行了表征,这些仪器代表了美国国家航空航天局“毅力号”火星车搭载的仪器,还通过类似RLS和类似MOMA的仪器进行了表征,这些仪器代表了未来欧洲航天局“罗莎琳德·富兰克林号”火星车搭载的仪器。可以证实,最重要的结论和发现是通过结果的综合得出的。同样,研究还表明,类似“毅力号”火星车的遥感仪器能够对火星表面的生物地球化学进行首次详细表征。通过这首次表征,可以确定使用类似“罗莎琳德·富兰克林号”仪器进行深入分析的感兴趣区域。因此,从首次遥感元素识别(类似PIXL的仪器),接着进行遥感分子表征(类似SuperCam和SHERLOC的仪器),最后进行深入微观分析(类似RLS和MOMA的仪器),发现了各种各样的化合物。一方面,预期的矿物是碳酸盐,如文石、方解石和高镁方解石。另一方面,意外的化合物包括与火星/地球表面相关的矿物(长石、辉石、赤铁矿)以及与瘤状叠层石过去生物活动相关的有机化合物(干酪根、脂质生物标志物和类胡萝卜素)。鉴于在火星上已经发现了类似微生物岩的样本,并且任务的主要目标之一是识别过去生命的痕迹,对微生物岩的研究是寻找免受火星恶劣环境影响的生物标志的一种潜在方法。此外,应当指出,在这项工作中,通过对整体结果的研究还得出了进一步的结论,这些结论在火星上也可以进行。

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