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Updated: Sep 9, 2025

Simulating Imaging of Large Scale Radio Arrays on the Lunar Surface
Published on: July 30, 2020
2.2-billion-year-old KREEP-rich volcanism on the Moon
Mu-Han Yang1, Qian W L Zhang2, Qiu-Li Li1
1State Key Laboratory of Lithospheric and Environmental Coevolution, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China; College of Earth and Planetary Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.
Abstract:
The Moon's KREEP component-rich in potassium (K), rare earth elements (REE), and phosphorus (P)-is considered a critical heat source sustaining prolonged volcanic activity. However, Chang'e mission samples reveal a lack of KREEP signatures in the sources of mare basalt erupted ∼2.8 and 2.0 billion years ago, raising questions about its contribution to late-stage volcanism. Here, we present geochemical and geochronological analyses of the lunar basaltic meteorite NWA 16286, which crystallized 2201 ± 13 million years ago, representing the youngest known lunar meteorite. Its mantle source shows a high 238U/204Pb ratio (∼2000) and a low εNd(t) value (-4.3), indicating strong KREEP enrichment and extending the duration of KREEP-related magmatism by ∼800 million years. Compiled isotopic data from lunar basalts reveal three volcanic episodes, each characterized by progressively increasing 238U/204Pb and decreasing εNd, suggesting episodic mantle convection. We propose that episodic sluggish mantle overturn or plume-driven upwelling triggered initial decompression melting, followed by increasing incorporation of KREEP components into basalt sources during each episode of younger mare volcanism.
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