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Petrological Evidence For Secular Cooling In Mantle Plumes

机译:地幔柱长期冷却的岩石学证据

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摘要

Geological mapping and geochronological studies have shown much lower eruption rates for ocean island basalts (OIBs) in comparison with those of lavas from large igneous provinces (LIPs) such as oceanic plateaux and continental flood provinces1. However, a quantitative petrological comparison has never been made between mantle source temperature and the extent of melting for OIB and LIP sources. Here we show that the MgO and FeO contents of Galapagos-related lavas and their primary magmas have decreased since the Cretaceous period. From petrological modelling, we infer that these changes reflect a cooling of the Galapagos mantle plume from a potential temperature of 1,560-1,620 ℃ in the Cretaceous to 1,500 ℃ at present. Iceland also exhibits secular cooling, in agreement with previous studies. Our work provides quantitative petrological evidence that, in general, mantle plumes for LIPs with Palaeocene-Permian ages were hotter and melted more extensively than plumes of more modern ocean islands. We interpret this to reflect episodic flow from lower-mantle domains that are lithologi-cally and geochemically heterogeneous.
机译:地质制图和地质年代研究表明,与大火成岩省(LIP)的熔岩相比,海洋玄武岩(OIBs)的喷发率要低得多,如大洋高原和大陆性洪水省。但是,从未对地幔源温度与OIB和LIP源的融化程度进行定量岩石学比较。在这里,我们显示自白垩纪以来,与加拉帕戈斯有关的熔岩的MgO和FeO含量及其主要岩浆已经减少。根据岩石学模型,我们推断这些变化反映了加拉帕戈斯地幔柱的冷却,从白垩纪的1,560-1,620℃的潜在温度到目前的1,500℃。与先前的研究一致,冰岛也表现出长期降温。我们的工作提供了定量的岩石学证据,总的来说,与新现代-二叠纪相比,具有古新世-二叠纪年龄的LIP的地幔柱更热,融化程度更大。我们将其解释为反映来自岩幔下和地球化学异质的下地幔区域的间歇性流动。

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  • 来源
    《Nature》 |2009年第7238期|619-622672|共5页
  • 作者

    Claude Herzberg; Esteban Gazel;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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