地质学
钻石
碳酸盐岩
土(古典元素)
地球化学
金伯利岩
作者
Suzette Timmerman,Anna V. Spivak,Adrian P. Jones
出处
期刊:Elements
[Mineralogical Society of America]
日期:2021-10-01
卷期号:17 (5): 321-326
标识
DOI:10.2138/gselements.17.5.321
摘要
Carbonatitic high-density fluids and carbonate mineral inclusions in lithospheric and sub-lithospheric diamonds reveal comparable compositions to crustal carbonatites and, thus, support the presence of carbon-atitic melts to depths of at least the mantle transition zone (~410–660 km depth). Diamonds and high pressure–high temperature (HP–HT) experiments confirm the stability of lower mantle carbonates. Experiments also show that carbonate melts have extremely low viscosity in the upper mantle. Hence, carbonatitic melts may participate in the deep (mantle) carbon cycle and be highly effective metasomatic agents. Deep carbon in the upper mantle can be mobilized by metasomatic carbonatitic melts, which may have become increasingly volumetrically significant since the onset of carbonate subduction (~3 Ga) to the present day.
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