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嫦娥五号玄武岩的非克里普岩源在风暴洋克里普岩区。

Non-KREEP origin for Chang'e-5 basalts in the Procellarum KREEP Terrane.

机构信息

Key Laboratory of Earth and Planetary Physics, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, China.

State Key Laboratory of Lithospheric Evolution, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, China.

出版信息

Nature. 2021 Dec;600(7887):59-63. doi: 10.1038/s41586-021-04119-5. Epub 2021 Oct 19.

Abstract

Mare volcanics on the Moon are the key record of thermo-chemical evolution throughout most of lunar history. Young mare basalts-mainly distributed in a region rich in potassium, rare-earth elements and phosphorus (KREEP) in Oceanus Procellarum, called the Procellarum KREEP Terrane (PKT)-were thought to be formed from KREEP-rich sources at depth. However, this hypothesis has not been tested with young basalts from the PKT. Here we present a petrological and geochemical study of the basalt clasts from the PKT returned by the Chang'e-5 mission. These two-billion-year-old basalts are the youngest lunar samples reported so far. Bulk rock compositions have moderate titanium and high iron contents  with KREEP-like rare-earth-element and high thorium concentrations. However, strontium-neodymium isotopes indicate that these basalts were derived from a non-KREEP mantle source. To produce the high abundances of rare-earth elements and thorium, low-degree partial melting and extensive fractional crystallization are required. Our results indicate that the KREEP association may not be a prerequisite for young mare volcanism. Absolving the need to invoke heat-producing elements in their source implies a more sustained cooling history of the lunar interior to generate the Moon's youngest melts.

摘要

月球上的古老火山岩是月球大部分历史时期热化学演化的关键记录。年轻的月海玄武岩——主要分布在丰富钾、稀土元素和磷(KREEP)的风暴洋(Oceanus Procellarum)区域,称为风暴洋 KREEP 地体(PKT)——被认为是由深部的 KREEP 富源形成的。然而,这一假说尚未用 PKT 的年轻玄武岩进行验证。在这里,我们对嫦娥五号任务带回的 PKT 玄武岩碎屑进行了岩石学和地球化学研究。这些两亿年前的玄武岩是迄今为止报道的最年轻的月球样本。岩石的整体成分具有中等钛含量和高铁含量,具有 KREEP 样的稀土元素和高钍浓度。然而,锶-钕同位素表明,这些玄武岩来自非 KREEP 地幔源。为了产生大量的稀土元素和钍,需要低程度的部分熔融和广泛的分馏结晶。我们的结果表明,KREEP 组合可能不是年轻月海火山作用的先决条件。解决了在其源中需要引入产热元素的问题,这意味着月球内部的冷却历史更为持续,从而产生了月球上最年轻的熔体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c570/8636255/4bc574217631/41586_2021_4119_Fig1_HTML.jpg

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