基于原位水资源利用的火星人类栖息地适宜候选地分析及生命维持技术

IF 2.9 3区 生物学 Q2 ASTRONOMY & ASTROPHYSICS
Xi Zeng , Hang Wu , Yinuo Xu , Hui Liu , Beizhen Xie , Hong Liu
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引用次数: 0

摘要

人类火星探测任务面临多重挑战,引起了全球航天界的广泛关注。生命维持技术是深空探测的关键技术之一,是区分载人与非载人任务的关键技术之一。在人类太空飞行的生命维持材料中,水的重量最大。实现水循环利用和就地水资源利用(ISWRU)对于减少人类航天器对地面供应的依赖,建立可持续的火星人类栖息地具有重要意义。因此,针对未来人类火星探测任务的水源和火星栖息地的建设,本文首先对火星上水的存在形式和分布进行概述。在此基础上,探讨了适合人类在火星着陆和居住的地点。最后,介绍了典型的火星栖息地设计理念、生物再生生命支持技术和潜在的火星水提取和净化技术,我们认为这些技术对具有ISWRU能力的火星栖息地至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of suitable site candidates for Mars human habitat and life-support technologies based on in situ water resource utilization
Human mission to Mars endowed with multiplex challenges has attracted global attentions in the space field. Life support technology is one of the key technologies for deep space exploration, which distinguishes human missions from unhuman ones. Among the life support materials for human space flight, water accounts for the largest weight. Realizing water recycling and in situ water resource utilization (ISWRU) is of great significance for reducing the dependence of human spacecraft on ground supply and for establishing sustainable Mars human habitats. Therefore, this review begins with the summarization of the existence forms and distribution of water on Mars in view of the water source for future human Mars exploration missions and the construction of Mars habitats. Then, suitable Mars human landing and habitat sites are discussed on the basis of convenient ISWRU. Finally, typical Mars habitat design concepts, bioregenerative life support technologies and potential Mars water extraction and purification technologies are also introduced, which we consider to be vital to Mars habitats with ISWRU capability.
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来源期刊
Life Sciences in Space Research
Life Sciences in Space Research Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
5.30
自引率
8.00%
发文量
69
期刊介绍: Life Sciences in Space Research publishes high quality original research and review articles in areas previously covered by the Life Sciences section of COSPAR''s other society journal Advances in Space Research. Life Sciences in Space Research features an editorial team of top scientists in the space radiation field and guarantees a fast turnaround time from submission to editorial decision.
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