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Contaminant Removal from Oxygen Production Systems for In Situ Resource Utilization

机译:从制氧系统中去除污染物以进行原地资源利用

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摘要

The In Situ Resource Utilization (ISRU) project has been developing technologies to produce oxygen from lunar regolith to provide consumables to a lunar outpost. The processes developed reduce metal oxides in the regolith to produce water, which is then electrolyzed to produce oxygen. Hydrochloic and hydrofluoric acids are byproducts of the reduction processes, as halide minerals are also reduced at oxide reduction conditions. Because of the stringent water quality requirements for electrolysis, there is a need for a contaminant removal process. The Contaminant Removal from Oxygen Production Systems (CROPS) team has been developing a separation process to remove these contaminants in the gas and liquid phase that eliminates the need for consumables. CROPS has been using Nafion, a highly water selective polymeric proton exchange membrane, to recover pure water from the contaminated solution. Membrane thickness, product stream flow rate, and acid solution temperature and concentration were varied with the goal of maximizing water permeation and acid rejection. The results show that water permeation increases with increasing solution temperature and product stream flow rate, while acid rejection increases with decreasing solution temperature and concentration. Thinner membranes allowed for higher water flux and acid rejection than thicker ones. These results were used in the development of the hardware built for the most recent Mars ISRU demonstration project.
机译:原位资源利用(ISRU)项目一直在开发技术,以利用月球重石生产氧气,为月球前哨基地提供消耗品。所开发的方法还原了硬石膏中的金属氧化物以产生水,然后将其电解产生氧气。氢氯酸和氢氟酸是还原过程的副产物,因为卤化物矿物也在氧化物还原条件下被还原。由于电解对水的质量要求严格,因此需要去除污染物的过程。氧气生产系统中的污染物去除(CROPS)团队一直在开发一种分离工艺,以去除气相和液相中的这些污染物,从而消除了对消耗品的需求。 CROPS一直在使用Nafion(一种高度水选择性聚合物质子交换膜)从受污染的溶液中回收纯净水。改变膜的厚度,产物流的流速以及酸溶液的温度和浓度是为了最大程度地提高水的渗透性和排酸率。结果表明,水渗透率随溶液温度和产物流流速的增加而增加,而酸排阻随溶液温度和浓度的降低而增加。与较厚的膜相比,较薄的膜可实现更高的水通量和酸去除率。这些结果被用于为最新的火星ISRU示范项目构建的硬件的开发中。

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