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Reduction of iron-bearing lunar minerals for the production of oxygen

机译:还原含铁矿物质以生产氧气

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摘要

The kinetics and mechanism of the reduction of simulants of the iron-bearing lunar minerals olivine ((Fe,Mg)₂SiO₄), pyroxene ((Fe,Mg,Ca)SiO₃), and ilmenite (FeTiO₃) are investigated, extending previous work with ilmenite. Fayalite is reduced by H₂ at 1070 K to 1480 K. A layer of mixed silica glass and iron forms around an unreacted core. Reaction kinetics are influenced by permeation of hydrogen through this layer and a reaction step involving dissociated hydrogen. Reaction mechanisms are independent of Mg content. Augite, hypersthene and hedenbergite are reduced in H₂ at the same temperatures. The products are iron metal and lower iron silicates mixed throughout the mineral. Activation energy rises with calcium content. Ilmenite and fayalite are reduced with carbon deposited on partially reduced minerals via the CO disproportionation reaction. Reduction with carbon is rapid, showing the carbothermal reduction of lunar minerals is possible.
机译:研究了含铁月球矿物橄榄石((Fe,Mg)2 SiO 3),辉石((Fe,Mg,Ca)SiO 3)和钛铁矿(FeTiO 3)的模拟物还原的动力学及其机理,并扩展了以前的工作钛铁矿。在1070 K到1480 K的速度下,铁沸石将H 2还原。未反应的核周围形成一层混合的石英玻璃和铁。反应动力学受氢透过该层的渗透以及涉及离解的氢的反应步骤的影响。反应机理与镁含量无关。在相同温度下,H 2中的奥铁石,高亚硫醚和水辉石被还原。产品是在整个矿物中混合的铁金属和低级硅酸铁。活化能随钙含量增加。钛铁矿和方铁石通过CO歧化反应沉积在部分还原的矿物上的碳还原。碳的还原很快,表明碳热还原月球矿物是可能的。

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