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Raman-Mössbauer-XRD studies of selected samples from “Los Azulejos” outcrop: A possible analogue for assessing the alteration processes on Mars

机译:拉曼-莫斯鲍尔-XRD研究从“ Los Azulejos”露头中挑选出的样品:一种可能的类似物,用于评估火星的蚀变过程

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摘要

The outcrop of “Los Azulejos” is visible at the interior of the Cañadas Caldera in Tenerife Island (Spain). It exhibits a great variety of alteration processes that could be considered as terrestrial analogue for several geological processes on Mars. This outcrop is particularly interesting due to the content of clays, zeolite, iron oxides, and sulfates corresponding to a hydrothermal alteration catalogued as “Azulejos” type alteration. A detailed analysis by portable and laboratory Raman systems as well as other different techniques such as X ray diffraction (XRD) and Mössbauer spectroscopy has been carried out (using twin-instruments from Martian lander missions: Mössbauer spectrometer MIMOS-II from the NASA-MER mission of 2001 and the XRD diffractometer from the NASA-MSL Curiosity mission of 2012). The mineral identification presents the following mineral species: magnetite, goethite, hematite, anatase, rutile, quartz, gregoryite, sulphate (thenardite and hexahydrite), diopside, feldspar, analcime, kaolinite and muscovite. Moreover, the in-situ Raman and Micro-Raman measurements have been performed in order to compare the capabilities of the portable system specially focused for the next ESA Exo-Mars mission. The mineral detection confirms the sub-aerial alteration on the surface and the hydrothermal processes by the volcanic fluid circulations in the fresh part. Therefore, the secondary more abundant mineralization acts as the color agent of the rocks. Thus, the zeolite-illite group is the responsible for the bluish coloration, as well as the feldspars and carbonates for the whitish and the iron oxide for the redish parts. The XRD system was capable to detect a minor proportion of pyroxene, which is not visible by Raman and Mössbauer spectroscopy due to the “Azulejos” alteration of the parent material on the outcrop. On the other hand, Mössbauer spectroscopy was capable of detecting different types of iron-oxides (Fe3+/2+-oxide phases). These analyses emphasize the strength of the different techniques and the working synergy of the three different techniques together for planetary space missions.
机译:在西班牙特内里费岛的卡纳达斯火山口内部可以看到“ Los Azulejos”的露头。它表现出各种各样的蚀变过程,可以被认为是火星上几个地质过程的陆地类似物。由于对应于归类为“ Azulejos”类型水热变化的粘土,沸石,氧化铁和硫酸盐的含量,这种露头特别有趣。已经通过便携式和实验室拉曼系统以及其他不同技术(例如X射线衍射(XRD)和穆斯堡尔光谱学)进行了详细分析(使用火星着陆任务的双仪表:来自NASA-MER的穆斯堡尔光谱仪MIMOS-II (2001年的任务)和X射线衍射仪(2012年的NASA-MSL好奇号任务)。矿物标识显示以下矿物种类:磁铁矿,针铁矿,赤铁矿,锐钛矿,金红石,石英,钙锌矿,硫酸盐(黄铁矿和六水石),透辉石,长石,无定形矿物,高岭石和白云母。此外,已经进行了现场拉曼和微拉曼测量,以比较专门针对下一次ESA Exo-Mars任务的便携式系统的功能。矿物探测证实了新鲜部分中火山流体的循环作用,从而证实了地面上的地下气体改变和水热过程。因此,次生的较丰富的矿化作用是岩石的着色剂。因此,沸石-伊利石基团是造成蓝色的原因,长石和碳酸盐是发白的原因,氧化铁是发红的原因。 XRD系统能够检测到少量的辉石,由于露头上母体材料的“ Azulejos”改变,这在拉曼光谱和Mössbauer光谱中是不可见的。另一方面,穆斯堡尔光谱法能够检测不同类型的铁氧化物(Fe3 + / 2 +-氧化物相)。这些分析强调了不同技术的优势以及这三种不同技术在行星空间飞行中的协同作用。

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