Geochemical constraints on the link between lunar magma ocean cumulates and the source of Chang'E-5 basalts from olivine trace element abundances

IF 3 2区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS Icarus Pub Date : 2025-04-01 Epub Date: 2025-01-17 DOI:10.1016/j.icarus.2025.116459
Yong Wu , Jie-Jun Jing , Zi-Ying Li , Ming-Kuan Qin , Ben-Xun Su , Jun Zhong , Dong-Fa Guo , Guang Fan , Rui-Ping Liu , Sheng He , Ting Li , Xiang-Kun Ge , Jun-Jie Li , Zhi-Xin Huang , Liu-Min Deng , Zhong-Yao Tai , Apeng Yu , Wim van Westrenen
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Abstract

Chang'E-5 samples provide unique insights into the composition of the lunar interior ∼2 billion years ago, but geochemical models of their formation show a significant degree of discrepancy. Trace element abundance measurements in olivine grains in Chang'E-5 sub-sample CE5C0600YJFM002GP provide additional constraints on the basalt source. Geochemical modeling indicates that low-degree (4 %) batch melting of an olivine-pyroxenite lunar magma ocean cumulate, incorporating high levels of trapped lunar magma ocean liquid and plagioclase, can reproduce the rare earth element, Sr, Rb, Sc, Co and Ni abundances in our and previously reported Chang'E-5 samples, as well as observed Rb-Sr and Sm-Nd isotope systematics. Overall, these results strengthen the direct geochemical links between lunar magma ocean evolution and basaltic volcanism occurring ∼2.5 billion years later. Additionally, Chang'E-5 high-Fo olivine is enriched in the volatile element Ge (1.38–3.94 μg/g) by ∼2 orders of magnitude compared to modeled results (< 0.02 μg/g). As Ge is a mildly compatible element with bulk Ge partition coefficients close to 1, a Ge-depleted initial LMO proposed by previous research cannot yield a high-Ge mantle source for Chang'E-5 basalt, even when invoking assimilation of high-Ge LMO cumulates. The overabundance of Ge requires either a high-Ge, volatile rich initial bulk Moon with chondritic composition or a late Ge chloride vapor-phase metasomatism.
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橄榄石微量元素丰度对月球岩浆海洋堆积与嫦娥五号玄武岩来源联系的地球化学约束
嫦娥五号样本提供了对20亿年前月球内部组成的独特见解,但它们形成的地球化学模型显示出很大程度的差异。嫦娥五号CE5C0600YJFM002GP亚样中橄榄石颗粒微量元素丰度的测定为玄武岩来源提供了新的约束条件。地球化学模拟表明,低程度(4%)的橄榄石-辉石岩月球岩浆海洋堆积,包含高水平的月球岩浆海洋液体和斜长石,可以重现我们和以前报道的嫦娥5号样品中的稀土元素,Sr, Rb, Sc, Co和Ni丰度,以及观测到的Rb-Sr和Sm-Nd同位素系统。总的来说,这些结果加强了月球岩浆海洋演化与发生在25亿年后的玄武岩火山活动之间的直接地球化学联系。此外,与模拟结果相比,嫦娥五号高fo橄榄石中挥发性元素Ge (1.38 ~ 3.94 μg/g)的富集程度提高了~ 2个数量级(<;0.02μg / g)。由于Ge是一种温和相容的元素,其总体分配系数接近于1,因此以往研究提出的Ge亏缺初始LMO即使对高Ge LMO累积物进行同化,也不能产生嫦娥五号玄武岩的高Ge地幔源。过量的锗要么需要一个高锗的、挥发性丰富的、球粒组成的初始块状月球,要么需要一个晚期的氯化锗气相交代。
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来源期刊
Icarus
Icarus 地学天文-天文与天体物理
CiteScore
6.30
自引率
18.80%
发文量
356
审稿时长
2-4 weeks
期刊介绍: Icarus is devoted to the publication of original contributions in the field of Solar System studies. Manuscripts reporting the results of new research - observational, experimental, or theoretical - concerning the astronomy, geology, meteorology, physics, chemistry, biology, and other scientific aspects of our Solar System or extrasolar systems are welcome. The journal generally does not publish papers devoted exclusively to the Sun, the Earth, celestial mechanics, meteoritics, or astrophysics. Icarus does not publish papers that provide "improved" versions of Bode''s law, or other numerical relations, without a sound physical basis. Icarus does not publish meeting announcements or general notices. Reviews, historical papers, and manuscripts describing spacecraft instrumentation may be considered, but only with prior approval of the editor. An entire issue of the journal is occasionally devoted to a single subject, usually arising from a conference on the same topic. The language of publication is English. American or British usage is accepted, but not a mixture of these.
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