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Joule-Heated Molten Regolith Electrolysis Reactor Concepts for Oxygen and Metals Production on the Moon and Mars

机译:在月球和火星上产生氧气和金属的焦耳加热熔融Regolith电解反应器概念

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摘要

The technology of direct electrolysis of molten lunar regolith to produce oxygen and molten metal alloys has progressed greatly in the last few years. The development of long-lasting inert anodes and cathode designs as well as techniques for the removal of molten products from the reactor has been demonstrated. The containment of chemically aggressive oxide and metal melts is very difficult at the operating temperatures ca. 1600 C. Containing the molten oxides in a regolith shell can solve this technical issue and can be achieved by designing a Joule-heated (sometimes called 'self-heating') reactor in which the electrolytic currents generate enough Joule heat to create a molten bath. Solutions obtained by multiphysics modeling allow the identification of the critical dimensions of concept reactors.
机译:在最近的几年中,熔融月牙重石的直接电解技术产生氧气和熔融金属合金的技术取得了很大的进步。已经证明了持久的惰性阳极和阴极设计的发展以及用于从反应器中除去熔融产物的技术。在大约工作温度下,很难对化学侵蚀性氧化物和金属熔体进行遏制。 1600℃。将熔融氧化物包含在重晶石壳中可以解决此技术问题,可以通过设计焦耳加热(有时称为“自加热”)反应器来实现,在该反应器中,电解电流产生足够的焦耳热以形成熔融浴。通过多物理场建模获得的解决方案可以确定概念反应堆的关键尺寸。

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