Plasma Extraction of Metals in Space

P. Schubert
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Abstract

Extraction of purified metals from extraterrestrial materials can be accomplished in several ways, such as beneficiation, hydrogen reduction, recovery of spent rockets, direct melting of iron meteorites, and plasma isotope separation. Presented here is a method for multiple simultaneous extraction of multiple metals and metalloids from regolith. Two patented approaches are described which can operate on a planetary surface, or in the microgravity environment of orbit. This approach to isotope separation applies to regolith fines but is advantageously applied to the effluent of a patented oxygen extraction method. In this way, a plurality of valuable raw materials can be obtained with a single system, suitable for operation on the Moon or at the surface of an asteroid. Silicon is of interest for studies of purity due to its importance in photovoltaics. A silicon-aluminum aerospace alloy can be produced directly, called Silumin, which has value in construction of habitats and space craft in space. Silicon can also be combined with carbon to form the wide-bandgap semiconductor SiC from which high-power and radiation-tolerant power transistors can be fabricated. Furthermore, this method lends itself to additive manufacturing whereby specific shapes of purified metals can be formed directly from the plasma extraction process.
太空中等离子体提取金属
从地外物质中提取纯化金属有几种方法,如选矿、氢还原、回收废火箭、铁陨石直接熔化和等离子体同位素分离。本文提出了一种从风化层中同时提取多种金属和类金属的方法。描述了两种专利方法,它们可以在行星表面或轨道微重力环境中运行。这种同位素分离方法适用于风化层细粒,但有利于应用于专利氧萃取方法的流出物。这样,一个单一的系统就可以获得多种有价值的原材料,适合在月球或小行星表面运行。由于硅在光伏中的重要性,其纯度的研究引起了人们的兴趣。可以直接生产一种硅铝航空合金,称为Silumin,它在太空中的栖息地和宇宙飞船的建设中具有价值。硅也可以与碳结合形成宽禁带半导体SiC,由此可以制造高功率和耐辐射功率晶体管。此外,这种方法适合于增材制造,通过等离子体提取过程可以直接形成特定形状的纯化金属。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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