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Laboratory Analysis of Returned Samples from the AMADEE-18 Mars Analog Mission

机译:Amadee-18火星模拟使命的退回样品的实验室分析

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Between February 1 and 28, 2018, the Austrian Space Forum, in cooperation with the Oman Astronomical Society and research teams from 25 nations, conducted the AMADEE-18 mission, a human-robotic Mars expedition simulation in the Dhofar region in the Sultanate of Oman. As a part of the AMADEE-18 simulated Mars human exploration mission, the Remote Science Support team performed analyses of the Dhofar area (Oman) in an effort to characterize the region as a potential Mars analog site. The main motivation of this research was to study and register selected samples collected by analog astronauts during the AMADEE-18 mission with laboratory analytical methods and techniques comparable with those that are likely to be used on Mars in the future. The 25 samples representing unconsolidated sediments obtained during the simulated mission were studied by using optical microscopy, Raman spectroscopy, X-ray diffraction, laser-induced breakdown spectroscopy, and laser-induced fluorescence spectroscopy. The principal results show the existence of minerals and alteration processes related to volcanism, hydrothermalism, and weathering. The analogy between the Dhofar region and the Eridana Basin region of Mars is clearly noticeable, particularly as an analog for secondary minerals formed in a hydrothermal seafloor volcanic-sedimentary environment. The synergy between the techniques used in the present work provides a solid basis for the geochemical analyses and organic detection in the context of future human-robotic Mars expeditions. AMADEE-18 has been a prime test bed for geoscientific workflows with astrobiological relevance and has provided valuable insights for future space missions.
机译:2018年2月1日和28日之间,奥地利空间论坛与阿曼天文社会和25个国家的研究团队合作,在阿曼苏丹国的Dhofar地区进行了Amadee-18任务,这是一个人类机器人火星远征模拟。作为Amadee-18的一部分模拟火星人类探索使命,远程科学支持团队在努力将该地区作为潜在的火星模拟现场进行了分析。该研究的主要动机是研究和登记在Amadee-18任务期间与模拟宇航员收集的选定样品,实验室分析方法和技术与未来可能在火星上使用的方法相当。通过使用光学显微镜,拉曼光谱,X射线衍射,激光诱导的击穿光谱和激光诱导的荧光光谱来研究代表在模拟任务期间获得的未溶解沉积物的25个样本。主要结果表明,与火山,水热性和风化有关的矿物质和改变过程的存在。 DhoFAR地区与火星的埃米达盆地区之间的类比显然明显,特别是作为在热热海底火山沉积环境中形成的二次矿物的类似物。本作中使用的技术之间的协同作用为未来的人机火星探险的背景下的地球化学分析和有机检测提供了坚实的基础。 Amadee-18一直是具有天际工程流程的主要试验台,具有古代相关性,为未来的空间任务提供了有价值的见解。

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