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Carbonate dissolution during subduction revealed by diamond-bearing rocks from the Alps

机译:俯冲过程中碳酸盐的溶解被阿尔卑斯山的含钻石岩石揭示

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摘要

Subduction zones modulate the global carbon cycle. Carbon is transported into the mantle by the subducting slab and returned to the surface by degassing at arc volcanoes above the subduction zone~(1,2). However, the mechanisms for the transfer of carbon from the subducting slab and sediments into the overlying mantle wedge are poorly understood. Decarbonation-a metamorphic reaction between silicate and carbonate minerals that releases CO_2 -was thought to be the primary mechanism. Yet, thermodynamic models show that decarbonation occurs at much greater pressures and temperatures than those found in typical subduction zones. Carbon should therefore be retained in the slab and transported to great depths in the mantle, rather than supply the arc volcanoes. Here we identify diamonds in ultrahigh-pressure rocks from the Italian western Alps that have an oceanic origin. We assess the geochemistry of diamond-bearing fluid inclusions and find that they contain bicarbonate, carbonate and sulphate ions, silica monomers, and crystals of carbonate and silicate. This fluid geochemistry indicates that carbon was released from the slab at relatively shallow depths through dissolution, not decarbonation. We conclude that dissolution, driven by fluids released from the subducted slab, is an important mechanism for the transfer of carbon into the mantle and ultimately back into the atmosphere, helping to balance the carbon flux.
机译:俯冲带调节全球碳循环。碳通过俯冲板运到地幔中,并通过在俯冲区〜(1,2)上方的弧形火山脱气而返回地面。但是,人们对于将碳从俯冲板块和沉积物转移到上覆地幔楔的机理了解甚少。脱碳-硅酸盐和碳酸盐矿物之间的变质反应释放出CO_2-被认为是主要机制。然而,热力学模型表明,与典型的俯冲带相比,脱碳在更高的压力和温度下发生。因此,碳应保留在板中,并在地幔中深处运输,而不是供应弧形火山。在这里,我们确定了来自意大利西部阿尔卑斯山的超高压岩石中的钻石,这些钻石起源于海洋。我们评估了含金刚石的流体包裹体的地球化学,发现它们包含碳酸氢根离子,碳酸盐和硫酸根离子,二氧化硅单体以及碳酸盐和硅酸盐晶体。这种流体地球化学表明,碳是通过溶解而不是脱碳从相对较浅的深度从板中释放出来的。我们得出的结论是,由俯冲板释放的流体驱动的溶解作用是将碳转移到地幔中并最终转移回大气中的重要机制,有助于平衡碳通量。

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