嫦娥五号月球土壤揭示了非太阳衍生氪和氙的存在

IF 4.8 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Earth and Planetary Science Letters Pub Date : 2024-04-27 DOI:10.1016/j.epsl.2024.118725
Xuhang Zhang , Fei Su , Guillaume Avice , Finlay M. Stuart , Yuanyuan Zheng , Ziheng Liu , Wei Guo , Thomas Smith , Runchuan Liu , Chao Lu , Ye He , Jiannan Li , Ranran Liu , Huaiyu He
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引用次数: 0

摘要

月球表面和内部挥发性元素的程度仍然是一个备受争议的话题。以前对月球土壤样本和创世纪飞行任务收集的太阳风样本进行的研究表明,氪和氙存在明显的同位素质量或非质量分馏。然而,对这些过程的详细调查还很欠缺,特别是在确定彗星挥发物可能掺入月球碎屑方面。嫦娥五号任务返回的新月球土壤样本为回答这些关键问题提供了机会。在这项研究中,通过分步加热和全聚变激光萃取,分析了嫦娥五号舀取样本中九个子样本的惰性气体同位素。结果表明,太阳风和宇宙生成物成分的简单二元混合物并不能单独解释这些样本的同位素组成。氙数据显示大气中的氙含量微乎其微,并提供了明确的证据表明彗星对月球碎屑的贡献,与太阳风中的氙相比,134,136氙的含量显著减少。此外,还发现了陨石成分。与阿波罗计划的结果相比,我们的发现进一步验证了地球大气逃逸的理论,证实了这些外源掺杂物在阐明月球碎屑岩中Kr和Xe同位素分馏机制方面的合理性,并为太阳风成分的长期恒定性提供了新的见解。
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Presence of non-solar derived krypton and xenon unveiled by Chang'e-5 lunar soils

The extent of volatile elements on the surface and interior of the Moon remains a highly debated topic. Previous studies conducted on bulk lunar soil samples and solar wind samples collected by the Genesis mission indicate a discernible isotope mass- or non-mass-dependent fractionation of krypton and xenon. However, a detailed investigation of these processes is missing, particularly in determining the possible incorporation of cometary volatiles in the lunar regolith. New lunar soil samples returned by the Chang'e-5 mission provide a chance to answer these key questions. In this study, noble gas isotopes of nine subsamples from a Chang'e-5 scooped sample were analysed through stepwise-heating and total fusion laser extraction. The results reveal that a simple binary mixture of solar wind and cosmogenic components did not explain alone the isotopic composition of these samples. The Xe data shows insignificant amounts of atmospheric Xe and presents clear evidence of cometary contributions to the lunar regolith, with a significant depletion of 134,136Xe compared to that in the solar wind. Additionally, a meteoritic component is identified. Compared to the Apollo results, our findings further validate the theory of Earth's atmospheric escape, substantiate the plausibility of these exogenous admixtures to elucidate the isotopic fractionation mechanisms of Kr and Xe within the lunar regolith, and provide novel insights into long-term constancy in the solar wind composition.

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来源期刊
Earth and Planetary Science Letters
Earth and Planetary Science Letters 地学-地球化学与地球物理
CiteScore
10.30
自引率
5.70%
发文量
475
审稿时长
2.8 months
期刊介绍: Earth and Planetary Science Letters (EPSL) is a leading journal for researchers across the entire Earth and planetary sciences community. It publishes concise, exciting, high-impact articles ("Letters") of broad interest. Its focus is on physical and chemical processes, the evolution and general properties of the Earth and planets - from their deep interiors to their atmospheres. EPSL also includes a Frontiers section, featuring invited high-profile synthesis articles by leading experts on timely topics to bring cutting-edge research to the wider community.
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