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High-pressure minerals and new lunar mineral changesite-(Y) in Change-5 regolith
GYIG-IR管理员
2024
Source PublicationMatter and Radiation at Extremes
Volume9Issue:2Pages:2468-2047
Abstract

Forty-five years after the Apollo and Luna missions, Chinas Change-5 (CE-5) mission collected 1.73 kg of new lunar materials from one of the youngest basalt units on the Moon. The CE-5 lunar samples provide opportunities to address some key scientific questions related to the Moon, including the discovery of high-pressure silica polymorphs (seifertite and stishovite) and a new lunar mineral, changesite-(Y). Seifertite was found to be coexist with stishovite in a silica fragment from CE-5 lunar regolith. This is the first confirmed seifertite in returned lunar samples. Seifertite has two space group symmetries (Pnc2 and Pbcn) and formed from an alpha-cristobalite-like phase during cold compression during a shock event. The aftershock heating process changes some seifertite to stishovite. Thus, this silica fragment records different stages of an impact process, and the peak shock pressure is estimated to be 11 to 40 GPa, which is much lower than the pressure condition for coexistence of seifertite and stishovite on the phase diagram. Changesite-(Y), with ideal formula (Ca8Y)◻Fe~(2+)(PO4)7 (where ◻ denotes a vacancy) is the first new lunar mineral to be discovered in CE-5 regolith samples. This newly identified phosphate mineral is in the form of columnar crystals and was found in CE-5 basalt fragments. It contains high concentrations of Y and rare earth elements (REE), reaching up to 14 wt.% (Y,REE)2O3. The occurrence of changesite-(Y) marks the late-stage fractional crystallization processes of CE-5 basalts combined with silicate liquid immiscibility. These new findings demonstrate the significance of studies on high-pressure minerals in lunar materials and the special nature of lunar magmatic evolution.

Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/15586
Collection月球与行星科学研究中心
AffiliationCenter for Lunar and Planetary Sciences,Institute of Geochemistry,Chinese Academy of Sciences, Guiyang, Guizhou 550081, China
Recommended Citation
GB/T 7714
GYIG-IR管理员. High-pressure minerals and new lunar mineral changesite-(Y) in Change-5 regolith[J]. Matter and Radiation at Extremes,2024,9(2):2468-2047.
APA GYIG-IR管理员.(2024).High-pressure minerals and new lunar mineral changesite-(Y) in Change-5 regolith.Matter and Radiation at Extremes,9(2),2468-2047.
MLA GYIG-IR管理员."High-pressure minerals and new lunar mineral changesite-(Y) in Change-5 regolith".Matter and Radiation at Extremes 9.2(2024):2468-2047.
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