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Mantle–slab interaction and redox mechanism of diamond formation

机译:地幔-板相互作用和金刚石形成的氧化还原机理

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摘要

Subduction tectonics imposes an important role in the evolution of the interior of the Earth and its global carbon cycle; however, the mechanism of the mantle–slab interaction remains unclear. Here, we demonstrate the results of high-pressure redox-gradient experiments on the interactions between Mg-Ca-carbonate and metallic iron, modeling the processes at the mantle–slab boundary; thereby, we present mechanisms of diamond formation both ahead of and behind the redox front. It is determined that, at oxidized conditions, a low-temperature Ca-rich carbonate melt is generated. This melt acts as both the carbon source and crystallization medium for diamond, whereas at reduced conditions, diamond crystallizes only from the Fe-C melt. The redox mechanism revealed in this study is used to explain the contrasting heterogeneity of natural diamonds, as seen in the composition of inclusions, carbon isotopic composition, and nitrogen impurity content.
机译:俯冲构造在地球内部及其全球碳循环的演变中起着重要作用。然而,地幔与板块相互作用的机制仍不清楚。在这里,我们演示了对Mg-Ca-碳酸盐与金属铁之间的相互作用进行高压氧化还原梯度实验的结果,并模拟了地幔-板块边界的过程。因此,我们介绍了氧化还原前沿之前和之后的金刚石形成机理。可以确定,在氧化条件下,会生成低温的富含Ca的碳酸盐熔体。该熔体既是金刚石的碳源又是结晶介质,而在还原条件下,金刚石仅从Fe-C熔体中结晶。这项研究揭示的氧化还原机制可用来解释天然钻石的对比异质性,如内含物成分,碳同位素成分和氮杂质含量。

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