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Karst Cave as Terrestrial Simulation Platform to Test and Design Human Base in Lunar Lava Tube 被引量:9
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作者 Jinghang Ding Gengxin Xie +3 位作者 linli guo Xin Xiong Ya Han Xi Wang 《Space(Science & Technology)》 2022年第1期489-499,共11页
Developing efficient approaches to building a suitable environment for humans on the moon play a key role in future long-term sustainable lunar exploration activities,which has motivated many countries to propose dive... Developing efficient approaches to building a suitable environment for humans on the moon play a key role in future long-term sustainable lunar exploration activities,which has motivated many countries to propose diverse plans to build a lunar base.The lava tubes discovered by the Kaguya mission offer huge potential sites to host such bases.Through computation and analysis,we show that lunar lava tubes offer stable structures,suitable temperatures,low radiation doses,and low meteorite impact rates.We summarize previous research results and put forward the conditions to find and use a suitable lunar lava tube for human habitation on the moon.The establishment of extraterrestrial bases still faces many technical bottlenecks;many countries have begun to use the earth’s environment for extraterrestrial exploration and simulation missions.In this regard,we proposed the idea of using the Earth’s karst caves to simulate extraterrestrial lava tubes,selected caves in Chongqing as the simulation site,and demonstrated the feasibility from both structural and environmental aspects.Finally,we proposed a karst cave simulation platform with three main research directions:cave sealing technology,efficient daylight system,and internal circulation research of artificial ecosystems containing natural soil and rock.We hope to promote the development of related research on extraterrestrial bases through simulation experiments. 展开更多
关键词 doses BASES KARST
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二维材料修饰隔膜抑制锂硫电池穿梭效应策略 被引量:2
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作者 郭林莉 张新 +3 位作者 肖敏 王拴紧 韩东梅 孟跃中 《化学进展》 SCIE CAS CSCD 北大核心 2021年第7期1212-1220,共9页
锂硫电池具有高理论比容量(1675 mAh/g)和高能量密度(2600 Wh/kg),被认为是极具应用潜力的电池体系,因此被广泛研究和关注。然而硫的导电性差、利用率低以及多硫化物的穿梭效应等问题使得锂硫电池的循环性能不理想。为了克服穿梭效应的... 锂硫电池具有高理论比容量(1675 mAh/g)和高能量密度(2600 Wh/kg),被认为是极具应用潜力的电池体系,因此被广泛研究和关注。然而硫的导电性差、利用率低以及多硫化物的穿梭效应等问题使得锂硫电池的循环性能不理想。为了克服穿梭效应的影响,近年来很多研究工作集中在功能隔膜的设计制备研究方面,通过修饰的隔膜抑制穿梭效应,提高Li-S电池循环稳定性。本文总结了二维(2D)材料修饰隔膜方面的最新研究进展,并对未来的研究方向提出了思考并进行了展望。 展开更多
关键词 2D 材料 隔膜 穿梭效应 Li-S 电池
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