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Enhanced East Pacific Rise hydrothermal activity during the last two glacial terminations

机译:最近两个冰期终止期间东太平洋上升热液活动增强

摘要

Mid-ocean ridge magmatism is driven by seafloor spreading and decompression melting of the upper mantle. Melt production is apparently modulated by glacial-interglacial changes in sea level, raising the possibility that magmatic flux acts as a negative feedback on ice-sheet size. The timing of melt variability is poorly constrained, however, precluding a clear link between ridge magmatism and Pleistocene climate transitions. Here we present well-dated sedimentary records from the East Pacific Rise that show evidence of enhanced hydrothermal activity during the last two glacial terminations. We suggest that glacial maxima and lowering of sea level caused anomalous melting in the upper mantle and that the subsequent magmatic anomalies promoted deglaciation through the release of mantle heat and carbon at mid-ocean ridges.
机译:中海洋脊岩浆作用是由海床扩展和上地幔减压融化驱动的。融冰的产生显然受到海平面冰河间变化的调节,从而增加了岩浆通量对冰盖大小产生负反馈的可能性。熔体变化的时机受到的约束很有限,这排除了山脊岩浆作用与更新世气候转变之间的明确联系。在这里,我们提供了来自东太平洋上升带的良好的沉积记录,这些记录显示了在最后两个冰川终了期间热液活动增强的证据。我们认为,冰川的最大值和海平面的下降引起上地幔的异常融化,随后的岩浆异常通过洋中脊的地幔热量和碳的释放促进了冰消作用。

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