Xu Ruisi, Lv Zepeng, Li Shaolong, He Jilin, Song Jianxun
Zhongyuan Critical Metals Laboratory, Zhengzhou University, Zhengzhou, Henan, 450001, P. R. China.
School of Material Science and Engineering, Zhengzhou University, Zhengzhou, Henan, 450001, P. R. China.
Adv Sci (Weinh). 2025 Aug;12(32):e04447. doi: 10.1002/advs.202504447. Epub 2025 Jun 23.
Electrochemistry is versatile, less subject to external influences, and has great potential for the exploration of the unpredictable space environment. This work analyzes the available resources in space and discusses the application scenarios and challenges of electrochemical methods in four areas: metallurgical processing of mineral resources, water resources utilization, the carbon cycle in daily extraterrestrial life, and electrical energy storage. By examining these pivotal areas, this work elucidates the unique advantages and limitations of electrochemical technologies in space exploration. Furthermore, the paper explores the innovative application scenarios of electrochemistry in space, presenting fresh insights into how these technologies can be adapted and optimized for extraterrestrial environments. This comprehensive analysis not only provides a strategic direction for the breakthrough and advancement of electrochemical applications in space but also serves as an invaluable reference for the development of human extraterrestrial exploration and resource harvesting programs, guiding future research endeavors and technological innovations in this fascinating frontier.
电化学具有多功能性,受外部影响较小,在探索不可预测的太空环境方面具有巨大潜力。这项工作分析了太空中的可用资源,并讨论了电化学方法在四个领域的应用场景和挑战:矿产资源的冶金加工、水资源利用、日常外星生命中的碳循环以及电能存储。通过研究这些关键领域,这项工作阐明了电化学技术在太空探索中的独特优势和局限性。此外,本文探讨了电化学在太空中的创新应用场景,为如何使这些技术适应和优化外星环境提供了新的见解。这种全面分析不仅为太空电化学应用的突破和发展提供了战略方向,也为人类外星探索和资源采集计划的发展提供了宝贵参考,指导着这一迷人领域未来的研究工作和技术创新。