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Origin and significance of cosmogenic signatures in vesicles of lunar basalt 15016

机译:15016月球玄武岩囊泡中宇宙起源特征的起源和意义

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摘要

Lunar basalt 15016 (~3.3 Ga) is among the most vesicular (50% by volume) basalts recovered by the Apollo missions. We investigated the possible occurrence of indigenous lunar nitrogen and noble gases trapped in vesicles within basalt 15016, by crushing several cm‐sized chips. Matrix/mineral gases were also extracted from crush residues by fusion with a CO 2 laser. No magmatic/primordial component could be identified; all isotope compositions, including those of vesicles, pointed to a cosmogenic origin. We found that vesicles contained ~0.2%, ~0.02%, ~0.002%, and ~0.02% of the total amount of cosmogenic 21Ne, 38Ar, 83Kr, and 126Xe, respectively, produced over the basalt's 300 Myr of exposure. Diffusion/recoil of cosmogenic isotopes from the basaltic matrix/minerals to intergrain joints and vesicles is discussed. The enhanced proportion of cosmogenic Xe isotopes relative to Kr detected in vesicles could be the result of kinetic fractionation, through which preferential retention of Xe isotopes over Kr within vesicles might have occurred during diffusion from the vesicle volume to the outer space through microleaks. This study suggests that cosmogenic loss, known to be significant for 3He and 21Ne, and to a lesser extent for 36Ar (Signer et al. ), also occurs to a negligible extent for the heaviest noble gases Kr and Xe.
机译:月球玄武岩15016(〜3.3 Ga)是阿波罗任务回收的最囊状玄武岩(占体积的50%)。我们通过粉碎几厘米大小的碎屑,调查了可能存在于玄武岩15016内囊泡中的本地月氮和稀有气体的发生。还通过与CO 2激光熔融从碎渣中提取基质/矿物质气体。无法确定岩浆/原始成分;所有同位素组成(包括囊泡的同位素组成)都指向宇宙起源。我们发现囊泡占宇宙产生的 21 Ne, 38 Ar,的总量的〜0.2%,〜0.02%,〜0.002%和〜0.02%在玄武岩的300毫米暴露范围内分别产生了83 Kr和 126 Xe。讨论了宇宙成因同位素从玄武质基质/矿物到晶间节和囊泡的扩散/反冲。在囊泡中检测到的宇宙成因Xe同位素相对于Kr的比例增加可能是动力学分级分离的结果,通过该过程,在通过微渗漏从囊泡体积扩散到外部空间的过程中,Xe同位素相对于Kr的优先保留可能会发生。这项研究表明,宇宙成因的损失对于 3 He和 21 Ne而言意义重大,对 36 Ar而言意义较小(Signer等对于最重的稀有气体Kr和Xe,也可以忽略不计。

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