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The fate of subducted basaltic crust in the Earth's lower mantle

机译:地球下地幔俯冲的玄武岩壳的命运

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摘要

The subduction of oceanic lithosphere into the Earth's deep interior is thought to drive convection and create chemical heterogeneity in the mantle. The oceanic lithosphere as a whole, however, might not subduct uniformly: the fate of basaltic crust may differ from that of the underlying peridotite layer because of differences in chemistry, density and melting temperature. It has been suggested that subducted basaltic crust may in fact become buoyant at the mantle's 660-km discontinuity, remaining buoyant to depths of at least 800 km, and therefore might be gravitation-ally trapped at this boundary to form a garnetite layer. Here we report the phase relations and melting temperatures of natural mid-ocean ridge basalt at pressures up to 64 GPa (corresponding to ~ 1,500 km depth). We find that the former basaltic crust is no longer buoyant when it transforms to a perovskitite lithology at about 720 km depth, and that this transition boundary has a positive pressure-temperature slope, in contrast to the negative slope of the transition boundary in peridotite. We therefore predict that basaltic crust with perovskitite lithology would gravitationally sink into the deep mantle. Our melting data suggest that, at the base of the lower mantle, the former basaltic crust would be partially molten if temperatures there were to exceed 4,000 K.
机译:海洋岩石圈俯冲到地球深层内部被认为会推动对流并在地幔中产生化学异质性。但是,整个海洋岩石圈可能不会均匀俯冲:由于化学,密度和融化温度的差异,玄武岩壳的命运可能与下伏橄榄岩层的命运不同。有人认为,俯冲的玄武岩地壳实际上可能在地幔的660公里不连续处开始浮起,并保持浮起至少800公里的深度,因此可能在重力作用下被困在该边界处,从而形成了榴辉石层。在这里,我们报告了天然中洋脊玄武岩在高达64 GPa(相当于〜1,500 km深度)的压力下的相关系和熔融温度。我们发现,当玄武岩地壳转变为约720 km深度的钙钛矿岩性时,不再具有浮力,并且与橄榄岩过渡边界的负斜率相反,该过渡边界具有正压力-温度斜率。因此,我们预测具有钙钛矿岩性的玄武岩地壳将在重力作用下沉入深层地幔中。我们的融化数据表明,如果温度超过4,000 K,则在下地幔的底部,以前的玄武岩地壳会部分熔融。

著录项

  • 来源
    《Nature》 |1999年第6714期|p.53-56|共4页
  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

  • 入库时间 2022-08-18 00:57:18

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