Lee Sujeong, van Riessen Arie
Resources Utilization Division, Korea Institute of Geoscience and Mineral Resources, Daejeon 34132, Korea.
Resources Recycling, University of Science and Technology, Daejeon 34113, Korea.
Materials (Basel). 2022 Jun 27;15(13):4516. doi: 10.3390/ma15134516.
Geopolymer is a synthetic amorphous aluminosilicate material that can be used as an inorganic binder to replace ordinary Portland cement. Geopolymer is produced by mixing aluminosilicate source materials with alkali activators and curing the mixture either at ambient or low temperatures. Geopolymer research for lunar-based construction is actively underway to enable astronauts to stay on the moon for long periods. This research has been spurred on by earnest discussions of in situ resource utilization (ISRU). Recent research shows that the lunar regolith simulant-based geopolymers have high application potential to protect astronauts from the harsh moon environment. However, not all the simulants perfectly reproduce the lunar regolith, and the characteristics of the lunar regolith vary depending on the site. Issues remain regarding the applicability of geopolymer technology to contribute to ISRU through an elaborate and systematic plan of experiments. In this paper, the potential of geopolymers is assessed as a lunar-based construction material with the latest research results. Future work to develop the lunar regolith-based geopolymer technology is also proposed.
地质聚合物是一种合成无定形铝硅酸盐材料,可用作无机粘结剂以替代普通硅酸盐水泥。地质聚合物通过将铝硅酸盐原料与碱活化剂混合,并在环境温度或低温下养护该混合物来制备。基于月球的建筑的地质聚合物研究正在积极开展,以使宇航员能够在月球上长期停留。对原位资源利用(ISRU)的认真讨论推动了这项研究。最近的研究表明,基于月球模拟物的地质聚合物在保护宇航员免受恶劣月球环境影响方面具有很高的应用潜力。然而,并非所有模拟物都能完美再现月球风化层,并且月球风化层的特性因地点而异。通过精心设计和系统的实验计划来确定地质聚合物技术对ISRU的适用性方面仍然存在问题。在本文中,结合最新研究成果评估了地质聚合物作为月球建筑材料的潜力。还提出了未来开发基于月球风化层的地质聚合物技术的工作。