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ID 69344
フルテキストURL
fulltext.pdf 11.8 MB
suppl.pdf 3.91 MB
著者
Douglas-Song, Torii The Pheasant Memorial Laboratory Institute for Planetary Materials, Okayama University
Ota, Tsutomu The Pheasant Memorial Laboratory Institute for Planetary Materials, Okayama University ORCID Kaken ID publons researchmap
Yamanaka, Masahiro The Pheasant Memorial Laboratory Institute for Planetary Materials, Okayama University
Kitagawa, Hiroshi The Pheasant Memorial Laboratory Institute for Planetary Materials, Okayama University ORCID publons researchmap
Tanaka, Ryoji The Pheasant Memorial Laboratory Institute for Planetary Materials, Okayama University ORCID Kaken ID publons researchmap
Potiszil, Christian The Pheasant Memorial Laboratory Institute for Planetary Materials, Okayama University ORCID publons researchmap
Kunihiro, Tak The Pheasant Memorial Laboratory Institute for Planetary Materials, Okayama University Kaken ID
抄録
Here we report the in situ ion-microprobe analyses of the Li- and O-isotope compositions of enstatite, FeO-rich pyroxene, olivine, glass, and cristobalite grains from six chondrule-related objects from the Sahara 97103 EH3 chondrite. The O-isotope composition of the enstatite grains scattered around the intersection between the terrestrial fractionation and primitive chondrule minerals lines. Whereas, that of olivine varied along the primitive chondrule minerals line. Based on the mineralogy, we found cristobalite formed as a result of Si saturation, instead of the reduction of FeO-rich silicates, consistent with Si-enrichment of whole rock enstatite chondrites. Based on the mineralogy and O-isotope compositions, we infer that olivines in some chondrules are relict grains. In chondrules that contained olivine, no abundant niningerite [(Mg,Fe,Mn)S] was observed. Thus, enstatite formation can be explained by the interaction of an olivine precursor with additional SiO2 (Mg2SiO4 + SiO2 → Mg2Si2O6), instead of sulfidation (Mg2SiO4 + S → 1/2 Mg2Si2O6 + MgS + 1/2 O2). Using the equation Mg2SiO4 + SiO2 → Mg2Si2O6 and the O-isotope compositions of enstatite and olivine, the O-isotope composition of the additional SiO2 was estimated. Based on the O-isotope composition, we infer that there could be a Si-rich gas with an elevated Δ17O value similar to, or greater than the second trend line (Δ17O = 0.9 ‰) suggested by Weisberg et al. (2021), during chondrule formation. The variation in the Li-isotope compositions of enstatite and olivine grains from EH3 chondrules is smaller than that for the same phases from CV3 chondrules. The variation in the Li-isotope compositions of the enstatite and olivine grains from EH3 chondrules is also smaller than that of their O-isotope compositions. During the recycling of enstatite-chondrite chondrules, both Li- and O-isotope compositions were homogenized. Although enstatite is the major carrier of Li in EH3 chondrules, the Li-isotope composition (δ7Li) of enstatite is lower than that of whole rock EH3 chondrites, suggesting the existence of a phase with higher δ7Li. Meanwhile, the Li-isotope composition and concentration (δ7Li, [Li]) of enstatite is higher than that of olivine. The Li-isotope composition of the Si-rich gas was estimated to be δ7Li = 1 ‰, using a similar mass-balance calculation as applied for the O-isotope composition. The Li-isotope composition of the Si-rich gas from the enstatite-chondrite-chondrule forming-region, is consistent with that of whole rock EH3 chondrites, and differs significantly from that of the Si-rich gas from the carbonaceous-chondrite-chondrule forming-region (δ7Li = −11 ‰) determined by a previous study. We speculate that the Si-rich gas in the carbonaceous-chondrite-chondrule forming-region maintained the Li-isotope heterogeneity inherited from light lithium synthesized by galactic cosmic-ray spallation in the interstellar medium.
キーワード
Lithium
Oxygen
Trace elements
Chondrule
Enstatite chondrite
SIMS
Sulfidation
Silicification
発行日
2025-07
出版物タイトル
Geochimica et Cosmochimica Acta
400巻
出版者
Elsevier BV
開始ページ
51
終了ページ
71
ISSN
0016-7037
NCID
AA00655038
資料タイプ
学術雑誌論文
言語
英語
OAI-PMH Set
岡山大学
著作権者
© 2025 The Author(s).
論文のバージョン
publisher
DOI
Web of Science KeyUT
関連URL
isVersionOf https://doi.org/10.1016/j.gca.2025.05.038
ライセンス
http://creativecommons.org/licenses/by/4.0/
助成情報
( 文部科学省 / Ministry of Education )
25K01056: 小惑星物質からの軽元素同位体端成分の検出と軽元素形成環境の推定 ( 独立行政法人日本学術振興会 / Japan Society for the Promotion of Science )