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Microwave Extraction of Water from Lunar Regolith Simulant

机译:微波从月go粉模拟物中提取水

摘要

Nearly a decade ago the DOD Clementine lunar orbital mission obtained data indicating that the permanently shaded regions at the lunar poles may have permanently frozen water in the lunar soil. Currently NASA's Robotic Lunar Exploration Program, RLEP-2, is planned to land at the lunar pole to determine if water is present. The detection and extraction of water from the permanently frozen permafrost is an important goal for NASA. Extraction of water from lunar permafrost has a high priority in the In-Situ Resource Utilization, ISRU, community for human life support and as a fuel. The use of microwave processing would permit the extraction of water without the need to dig, drill, or excavate the lunar surface. Microwave heating of regolith is potentially faster and more efficient than any other heating methods due to the very low thermal conductivity of the lunar regolith. Also, microwaves can penetrate into the soil permitting water removal from deep below the lunar surface. A cryogenic vacuum test facility was developed for evaluating the use of microwave heating and water extraction from a lunar regolith permafrost simulant. Water is obtained in a cryogenic cold trap even with soil conditions below 0 C. The results of microwave extraction of water experiments will be presented.
机译:大约十年前,美国国防部克莱门汀月球轨道飞行任务获得的数据表明,月球极的永久阴影区可能在月球土壤中存在永久冻结的水。目前,NASA的机器人登月探索计划RLEP-2已计划降落在登月柱上,以确定是否存在水。从永久冻结的永冻土中检测和提取水是NASA的重要目标。从月球多年冻土中提取水在原地资源利用,ISRU,人类生命支持和作为燃料的社区中具有高度优先地位。微波处理的使用将允许提取水,而无需挖掘,钻孔或挖掘月球表面。由于月牙石的导热系数非常低,因此微波加热牙石的潜力可能比任何其他加热方法更快,更高效。而且,微波可以渗透到土壤中,从而允许从月球表面以下的深处去除水分。开发了一种低温真空测试设备,用于评估微波加热和从月龄白云石多年冻土模拟物中提取水的用途。即使在低于0 C的土壤条件下,也可以在低温冷阱中获得水。将介绍微波萃取水的实验结果。

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