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Stable isotope evidence for crustal recycling as recorded by superdeep diamonds

机译:超深层钻石记录的稳定同位素证据表明地壳可回收

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摘要

Sub-lithospheric diamonds from the Juina-5 and Collier-4 kimberlites and the Machado River alluvial deposit in Brazil have carbon isotopic compositions that co-vary with the oxygen isotopic compositions of their inclusions, which implies that they formed by a mixing process. The proposed model for this mixing process, based on interaction of slab-derived carbonate melt with reduced (carbide- or metal-bearing) ambient mantle, explains these isotopic observations. It is also consistent with the observed trace element chemistries of diamond inclusions from these localities and with the experimental phase relations of carbonated subducted crust. The O-enriched nature of the inclusions demonstrates that they incorporate material from crustal protoliths that previously interacted with seawater, thus confirming the subduction-related origin of superdeep diamonds. These samples also provide direct evidence of an isotopically anomalous reservoir in the deep (≥350 km) mantle.
机译:来自Juina-5和Collier-4金伯利岩的准岩石圈以下钻石以及巴西的马查多河冲积矿床的碳同位素组成与它们包裹体的氧同位素组成不同,这意味着它们是通过混合过程形成的。基于板坯衍生的碳酸盐熔体与减少的(含碳酸盐或金属的)环境地幔的相互作用,针对这种混合过程提出的模型解释了这些同位素观测结果。这也与从这些地方观察到的金刚石夹杂物的痕量元素化学特征以及与碳酸盐俯冲壳的实验相关系一致。夹杂物富含O的性质表明它们掺入了以前与海水相互作用的地壳原石中的物质,从​​而证实了超深钻石与俯冲有关的起源。这些样品还提供了深(≥350km)地幔中同位素异常储层的直接证据。

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