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Pure Oxygen Anodes? for Low- or Zero-Carbon Energy Efficient Metal Oxide Reduction

机译:纯氧阳极?用于低压或零碳节能金属氧化物减少

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The inert anode is a key enabling technology for dramatic energy and emissions reduction in extractive metallurgy. In molten salts;;the materials challenge is nearly insurmountable: the anode must conduct electrons at high temperature in a pure oxygen and molten salt environment. A solid electrolyte, e.g. zirconia, between the salt and anode removes the molten salt stability constraint, and can act as a container for a liquid metal anode. This can be liquid silver for oxygen-generating inert anodes, or several metals for natural gas-fueled anodes; it is possible to switch between these modes. The solid electrolyte brings several other benefits: it eliminates molten salt contamination of the anode gas, creates a reducing environment enabling low-cost steel vessels, increases current efficiency, and eliminates carbon contamination of the product. New developments presented here, including current collector and low-cost anode designs, amplify these benefits for producing aluminum, magnesium, rare-earths, and other metals.
机译:惰性阳极是用于引发冶金的剧烈能量和排放的关键能力技术。在熔盐中;材料挑战几乎是不可克服的:阳极必须在纯氧和熔盐环境下高温进行电子。固体电解质,例如,氧化锆,盐和阳极之间除去熔融盐稳定性约束,并且可以用作液态金属阳极的容器。这可以是用于产生惰性阳极的液体银,或用于天然气燃料阳极的几种金属;可以在这些模式之间切换。固体电解质带来了几种其他益处:消除了阳极气体的熔盐污染,产生降低环境,使低成本钢容器增加,增加了电流效率,并消除了产品的碳污染。这里提出的新发展包括集电器和低成本阳极设计,扩增了生产铝,镁,稀土和其他金属的这些益处。

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