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The fate of subducted Upper Continental Crust: An experimental study

机译:俯冲上地壳的命运:实验研究

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摘要

The occurrence of ultra-high pressure metamorphic (UHPM) index minerals within rocks from continental collision zones indicates that continental rocks may descend into the Earth's upper mantle and leave specific geochemical signatures during the continental collision. It has long been suggested that continental crust is buoyant than that of the mantle rocks, and therefore might be gravitationally trapped during subduction. In order to understand the fate and exhumation of subducted continental crust, we conducted experimental studies up to 24 GPa and 1800 degrees C on natural UHPM gneisses in bulk compositions corresponding to average upper continental crust and terrigenous rocks, using piston-cylinder and multi-anvil apparatus. We found that the upper continental crust is no longer buoyant with respect to the surrounding mantle when it has been transported to a depth of 250 km (similar to 8-9 GPa), which defines the "depth of no return" for the subducted upper continental crust. This in turn is consistent with the depth limit for most exposed UHPM rocks. Our experimental results suggest that the transformed subducted upper continental crust with a jadeite stishovitite lithology has the potential to sink into the transition zone. However, this density relationship is reversed at the base of the transition zone, leaving subducted upper continental crust being trapped at the bottom of the upper mantle, due to the presences of perovskite and magnesiowustite in the lower mantle.
机译:来自大陆碰撞带的岩石中超高压变质(UHPM)指数矿物的出现表明,大陆岩石可能在大陆碰撞过程中下降到地球上地幔中并留下特定的地球化学特征。长期以来,人们一直认为大陆壳比地幔岩石更易浮,因此在俯冲过程中可能被重力包裹。为了了解俯冲陆壳的命运和发掘,我们使用活塞缸和多砧对天然UHPM片麻岩进行了高达24 GPa和1800摄氏度的实验研究,这些大块麻岩的体积成分对应于平均上陆壳和陆生岩石。仪器。我们发现,当上地壳被运输到250 km的深度(类似于8-9 GPa)时,它相对于周围的地幔不再漂浮,这定义了俯冲的上地壳的“无返回深度”大陆地壳。反过来,这与大多数裸露的UHPM岩石的深度限制一致。我们的实验结果表明,经转换的俯冲的上陆壳具有翡翠的辉铁矿岩性,有可能沉入过渡带。然而,这种密度关系在过渡带的底部被逆转,由于下地幔中钙钛矿和菱镁矿的存在,俯冲的上陆壳被困在上地幔的底部。

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