在行星外环境中新兴的化学和生物材料技术
Qingyao Jiang1,2,3, Bin Wang2,3, Yifan Cheng2,3
1College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, 310000, People's Republic of China.
Nano-micro letters
|January 11, 2026
概括
太空制造,使用纳米到中等尺度的化学和生物方法,对于现场资源利用至关重要. 这篇评论涵盖了它的演变,技术,挑战以及太空探索的未来方向.
科学领域:
- 太空科学 太空科学
- 材料科学 材料科学 材料科学
- 制造业 工程 制造工程
背景情况:
- 太空探索和制造对于科学进步,技术创新和资源获取至关重要.
- 化学和生物纳米/微/美索尺度制造为在现场生产必要的空间资源提供解决方案.
- 太空探索的关键挑战包括生命支持,推进剂和资源限制.
研究的目的:
- 审查太空制造业的历史演变和当前状态.
- 概述关键的制造策略,技术及其在各种空间环境中的应用.
- 评估技术和环境挑战,并讨论新兴趋势和未来方向.
主要方法:
- 关于太空制造起源和进步的综合文献综述.
- 在轨道,月球,火星和小行星环境中分析制造战略和技术.
- 探索新兴技术,如合成生物学和人工智能,用于太空应用.
主要成果:
- 太空制造业已经发生了显著的进化,对于不同地外地点的不同方法.
- 关键技术包括增材制造,现场资源利用 (ISRU) 和生物制造.
- 合成生物学和人工智能等新兴领域在克服空间特定限制方面表现出有希望.
结论:
- 太空制造对于可持续的太空探索和资源利用至关重要.
- 结合各种制造规模和先进技术的跨学科方法至关重要.
- 太空科学和制造业的未来发展将由这些领域的创新驱动.
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