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Titanium Minerals and Their Assemblages in the Earth's Mantle: A Review of Natural and Experimental Data

期刊

GEOCHEMISTRY INTERNATIONAL
卷 59, 期 8, 页码 725-742

出版社

MAIK NAUKA/INTERPERIODICA/SPRINGER
DOI: 10.1134/S001670292108005X

关键词

titanium; mantle; transition zone of the mantle; experiment under the high P-T parameters

资金

  1. Ministry of Education and Science of the Russian Federation [075-15-2020-802]

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The paper reviews the data on the composition and abundance of titanium-bearing phases in the Earth's mantle, focusing on natural minerals and the mechanisms of titanium incorporation. Experimental data on the formation conditions of titanium-bearing minerals at different mantle depths are generalized, and the influence of titanium on important phase transformations in the mantle is discussed, clarifying patterns of interphase titanium partitioning in the Earth's deep geospheres.
A review of the data available on the composition and abundance of titanium-bearing phases in the Earth's mantle is provided in the paper. The main attention is paid to the discussion of natural minerals: the patterns of the mineralogy of mantle titanium-bearing phases (rutile, FeTiO3 ilmenite, garnet, pyroxene, spinel and post-spinel phases, phases with ilmenite- and perovskite-type structures, armalcolite) are given, the likely mechanisms of titanium incorporation into mantle phases, as well as the limiting titanium concentrations in these phases are considered. The new experimental data on the composition and conditions of the formation of titanium-bearing minerals and their phase associations at different mantle depths is generalized: phase relations in Ti-bearing systems (MgO-SiO2-TiO2 +/- Al2O3) and the influence of titanium on the parameters of the most important phase transformations under the conditions of the mantle are considered. Agreement of the experimental results with the natural data allows us to clarify the patterns of the interphase titanium partitioning and the minor-element composition of the Earth's deep geospheres.

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