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Melting of dehydrated oceanic crust from the stagnant slab and of the hydrated mantle transition zone: Constraints from Cenozoic alkaline basalts in eastern China

机译:停滞平板和水合地幔过渡带的脱水大洋地壳融化:中国东部新生代碱性玄武岩的约束

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摘要

The feasibility of oceanic igneous crust melting in stagnant slabs has previously been proposed from experimental petrological research. However, geochemical evidence for such melting has not yet been found from igneous rocks. We present evidence to suggest that melts from the igneous layer in the stagnant Pacific slab contributed to the source composition of basalts erupted in eastern China. Fe-rich (> 13 wt%), Si-poor (< 43 wt%) basalts occur only above the leading edge of the stagnant Pacific slab in eastern China, ~. 2000. km west of the Pacific Plate trench. The source of these basalts has Nd-Hf and Sr-Nd-Pb isotopic compositions akin to those of the igneous layer in the Pacific slab, and their extremely low Rb and Pb contents suggest that their source material was modified by subduction processes. Together with forward modeling calculation on trace elements and isotope compositions, these geochemical characteristics imply that they received a contribution from fluid released from hydrated transition zone and dehydrated carbonate-bearing oceanic crust in the stagnant slab, without a long time-integrated ingrowth of Sr-Nd-Hf-Pb isotope systems, almost at the leading edge of the stagnant Pacific slab.
机译:先前从实验岩石学研究中提出了停滞平板中海洋火成壳熔融的可行性。但是,尚未从火成岩中找到这种融化的地球化学证据。我们提供的证据表明,停滞的太平洋板块中火成岩层的融化导致了中国东部爆发的玄武岩的源组成。富铁(> 13 wt%),硅贫(<43 wt%)的玄武岩仅出现在中国东部停滞的太平洋板块的前缘上方。太平洋板块海沟以西2000公里。这些玄武岩的来源具有类似于太平洋板块火成岩层的Nd-Hf和Sr-Nd-Pb同位素组成,并且其极低的Rb和Pb含量表明它们的来源材料已通过俯冲过程进行了改性。加上对微量元素和同位素组成的正演模拟计算,这些地球化学特征暗示它们受到了停滞平板中水合过渡带和含碳酸盐脱水大洋壳释放的流体的贡献,而Sr- Nd-Hf-Pb同位素系统几乎位于停滞的太平洋板块的前沿。

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