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Evaluation of Tribocharged Electrostatic Beneficiation of Lunar Simulant in Lunar Gravity

机译:月球重力场中月球模拟物的摩擦带电选矿效果评估

摘要

The lunar regolith has high concentrations of aluminum, silicon, calcium, iron, sodium, and titanium oxides. Liberation of these metals would provide necessary materials for structural and building material fabrication, spare part, machine and tool production, and construction and site preparation in-situ on the moon or other extraterrestrial body (Rao et al 1979). Ilmenite (FeTi03) is a mineral of interest on the moon as a source of iron, titanium, and oxygen (Cameron 1992, Zhao and Shadman 1993) and therefore enrichment of this mineral in the feedstock before processing would be a considerable advantage in reducing energy requirements to process regolith. Not only for construction materials, but shipping oxygen and water from earth is weight prohibitive, and so investigations into the potential production of oxygen from the oxides of lunar regolith are a major research initiative by NASA (Sibille et al. 2009, Moscatello et al. 2009). In this paper, the results of electrostatic beneficiation of two sets of lunar simulants on two different reduced gravity flight series are presented.
机译:月球巨石含有高浓度的铝,硅,钙,铁,钠和钛氧化物。这些金属的释放将为结构和建筑材料的制造,零件,机器和工具的生产以及月球或其他外星体的原位建造和现场准备提供必要的材料(Rao等,1979)。钛铁矿(FeTi03)是月球上重要的矿物,可作为铁,钛和氧的来源(Cameron 1992,Zhao和Shadman 1993),因此在加工之前在原料中富集这种矿物在降低能源方面将具有相当大的优势。要求处理硅脂。不仅对于建筑材料,而且从地球运输氧气和水都禁止重量,因此对NASA月球氧化物的潜在产氧量的研究是NASA的一项重要研究计划(Sibille等,2009; Moscatello等。 2009)。本文介绍了在两个不同的重力下降飞行序列上两组月球模拟物的静电选矿结果。

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