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Diamond formation in an electric field under deep Earth conditions

机译:深土条件下电场中的金刚石形成

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摘要

Most natural diamonds are formed in Earth’s lithospheric mantle; however, the exact mechanisms behind their genesis remain debated. Given the occurrence of electrochemical processes in Earth’s mantle and the high electrical conductivity of mantle melts and fluids, we have developed a model whereby localized electric fields play a central role in diamond formation. Here, we experimentally demonstrate a diamond crystallization mechanism that operates under lithospheric mantle pressure-temperature conditions (6.3 and 7.5 gigapascals; 1300° to 1600°C) through the action of an electric potential applied across carbonate or carbonate-silicate melts. In this process, the carbonate-rich melt acts as both the carbon source and the crystallization medium for diamond, which forms in assemblage with mantle minerals near the cathode. Our results clearly demonstrate that electric fields should be considered a key additional factor influencing diamond crystallization, mantle mineral–forming processes, carbon isotope fractionation, and the global carbon cycle.
机译:大多数天然钻石形成在地球的岩石地幔中;然而,他们的创世纪背后的确切机制仍然辩论。鉴于地球地幔的电化学过程和地幔熔体和流体的高导电性发生,我们开发了一种模型,即局部电场在菱形形成中起着核心作用。在这里,我们通过在碳酸酯或碳酸盐硅酸盐熔体上施加的电位作用,实验地证明了一种金刚石结晶机制,在岩石罩压力 - 温度 - 温度条件下(6.3和7.5千兆像; 1300°至1600°C)。在该方法中,富含碳酸盐的熔体作为金刚石的碳源和结晶介质,其在与阴极附近的搭腔矿物组合中形成。我们的结果清楚地表明,电场应被视为影响金刚石结晶,地幔矿物形成过程,碳同位素分级和全球碳循环的关键额外因素。

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