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Continuous eclogite melting and variable refertilisation in upwelling heterogeneous mantle

机译:不断上升的不均匀地幔中榴辉岩的熔融和变质作用

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摘要

Large-scale tectonic processes introduce a range of crustal lithologies into the Earth's mantle. These lithologies have been implicated as sources of compositional heterogeneity in mantle-derived magmas. The model being explored here assumes the presence of widely dispersed fragments of residual eclogite (derived from recycled oceanic crust), stretched and stirred by convection in the mantle. Here we show with an experimental study that these residual eclogites continuously melt during upwelling of such heterogeneous mantle and we characterize the melting reactions and compositional changes in the residue minerals. The chemical exchange between these partial melts and more refractory peridotite leads to a variably metasomatised mantle. Re-melting of these metasomatised peridotite lithologies at given pressures and temperatures results in diverse melt compositions, which may contribute to the observed heterogeneity of oceanic basalt suites. We also show that heterogeneous upwelling mantle is subject to diverse local freezing, hybridization and carbonate-carbon-silicate redox reactions along a mantle adiabat.
机译:大规模的构造过程将一系列地壳岩性带入了地球的地幔。这些岩性被认为是来自地幔的岩浆中成分异质性的来源。在此探索的模型假设存在残留的榴辉岩(来自回收的洋壳)的广泛分散的碎片,这些碎片通过对流在地幔中伸展和搅动。在这里,我们通过实验研究表明,这些残留的榴辉岩在此类非均质地幔上升过程中不断熔化,并且我们表征了残留矿物的熔化反应和成分变化。这些部分熔体与难熔橄榄岩之间的化学交换导致变质交代地幔。在给定的压力和温度下,这些交代化的橄榄岩岩性的重新熔融导致熔体成分多样化,这可能有助于观察到的海洋玄武岩组的非均质性。我们还显示,异质上升流地幔沿地幔绝热层受到各种局部冻结,杂交和碳酸盐-碳-硅酸盐氧化还原反应的影响。

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