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阿明察露头(西班牙比斯开省)沉积岩和火山岩的特征及其对火星欧西亚平原探索的启示。

Characterization of sedimentary and volcanic rocks in Armintza outcrop (Biscay, Spain) and its implication for Oxia Planum (Mars) exploration.

机构信息

Department of Analytical Chemistry, University of the Basque Country UPV/EHU, P.O. Box 644, E-48080 Bilbao, Spain.

Department of Analytical Chemistry, University of the Basque Country UPV/EHU, P.O. Box 644, E-48080 Bilbao, Spain.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2021 Apr 15;251:119443. doi: 10.1016/j.saa.2021.119443. Epub 2021 Jan 6.

Abstract

The landing site of the next planetary mission lead by ESA (ExoMars 2022) will be Oxia Planum. This location has been chosen due to different reasons, among them, the existence of sedimentary rocks that could host remains of organic matter. The fact that this type of rocks coexists with volcanic ones makes of high importance the study of the processes and the possible interactions that could happen among them. Therefore, in this research work the Armintza outcrop (Biscay, North of Spain) is proposed as an Oxia Planum analogue since it has the dichotomy of volcanic and sedimentary rock layers that is expected on the landing site of the ExoMars 2022 mission. As Raman and visible near infrared spectroscopies will be in the payload of the rover of that mission, they have been used to characterize the samples collected in the Armintza outcrop. With the help of these techniques, feldspars (albite mainly) and phyllosilicates (kaolinite and dickite, together with micas and chlorite minerals) have been identified as the major products on the samples, together with some weathering products (carbonates, sulphates, oxides) and apatite. Moreover, remains of kerogen have been detected in the sedimentary layers in contact with the interlayered lava flows, confirming the capability of similar sedimentary-volcanic layers to trap and store organic remains for millions of years. After establishing which compounds have volcanic or sedimentary origin, and which must be considered alteration phases, we can consider Armintza as a good Oxia Planum analogue.

摘要

下一次由 ESA(欧洲航天局)领导的行星任务的着陆点将是奥西亚平原。选择这个地点有不同的原因,其中包括存在可能含有有机物质遗迹的沉积岩。这种岩石与火山岩共存的事实,使得研究它们之间可能发生的过程和相互作用变得非常重要。因此,在这项研究工作中,提出了西班牙比斯开地区的阿明察露头作为奥西亚平原的类似物,因为它具有预期在 ExoMars 2022 任务着陆点上存在的火山岩和沉积岩层的二分性。由于该任务的漫游车将搭载拉曼和可见近红外光谱仪,因此已经使用这些技术对在阿明察露头采集的样本进行了特征描述。通过这些技术,确定了长石(主要是钠长石)和层状硅酸盐(高岭石和地开石,以及云母和绿泥石矿物)是样品中的主要产物,还有一些风化产物(碳酸盐、硫酸盐、氧化物)和磷灰石。此外,在与层状熔岩接触的沉积层中检测到了腐殖质的残留物,证实了类似的沉积-火山层有捕捉和储存有机物质遗迹的能力,这些遗迹可以保存数百万年。在确定了哪些化合物具有火山或沉积来源,以及哪些必须被认为是蚀变相之后,我们可以将阿明察视为一个很好的奥西亚平原类似物。

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