LIBS for prospecting and Raman spectroscopy for monitoring: two feasibility studies for supporting in-situ resource utilization

K. Rammelkamp, Susanne Schröder, B. Lomax, Elise Clavé, H. Hübers
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Abstract

Laser-induced breakdown spectroscopy (LIBS) and Raman spectroscopy are still rather new techniques for in-situ exploration of extraterrestrial planetary surfaces but have shown their suitability and great potential in several successful robotic missions already. Next to serving primary scientific applications, both methods can also be used in the context of in-situ resource utilization (ISRU) such as scouting for wanted substances and the surveillance of extraction processes. Here, we present two laboratory studies conducted in the context of ISRU with a focus on the chain from prospecting to extracting oxygen from lunar regolith. For LIBS, with optimized data processing and combined with state-of-the-art multivariate data analysis approaches, we show the potential of the technique for identifying samples with increased ilmenite content and for elemental quantification. The measurements were done using lunar regolith simulant and low pressures simulating vacuum on atmosphereless bodies such as the Moon. With Raman spectroscopy, we analyzed lunar regolith simulant samples that underwent electrochemical alteration for oxygen extraction and production of metal alloys demonstrating the potential of Raman spectroscopy for ISRU process monitoring. We also discuss the results in a broader context, evaluating the potential of both methods for other aspects of ISRU support.
用于勘探的 LIBS 和用于监测的拉曼光谱:支持原地资源利用的两项可行性研究
激光诱导击穿光谱法(LIBS)和拉曼光谱法仍然是用于地外行星表面原位探测的相当新的技术,但已在几次成功的机器人任务中显示出其适用性和巨大潜力。除了主要的科学应用外,这两种方法还可用于原地资源利用(ISRU),如寻找需要的物质和监测提取过程。在此,我们将介绍两项在 ISRU 背景下进行的实验室研究,重点关注从勘探到从月球岩石中提取氧气的整个过程。在 LIBS 方面,通过优化数据处理并结合最先进的多元数据分析方法,我们展示了该技术在识别钛铁矿含量增加的样品和元素定量方面的潜力。测量使用月球碎屑模拟物和低压模拟月球等无大气层天体的真空环境。通过拉曼光谱,我们分析了经过电化学改变以提取氧气和生产金属合金的月球岩石模拟样本,证明了拉曼光谱在 ISRU 过程监控方面的潜力。我们还从更广泛的角度讨论了这些结果,评估了这两种方法在 ISRU 支持的其他方面的潜力。
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