Author:
Gavryushkin P. N.,Martirosyan N. S.,Rashchenko S. V.,Sagatova D. N.,Sagatov N. E.,Semerikova A. I.,Fedotenko T. M.,Litasov K. D.
Abstract
Mg-carbonate is one of the main carbonates subducting from the Earth’s surface into the mantle and possible reactions of this compound with the main mantle minerals determine the stability of carbonates into the Earth’s mantle. Recently, we have theoretically shown that at pressures and temperatures of the Earth’s lower mantle MgCO3 should react with MgO, producing Mg2CO4. Here, using diamond anvil cell technique, we have performed in situ investigation of the product of MgCO3 + MgO reaction at pressures around 50 GPa and temperatures above 2000 K. Investigation of Raman and X-ray diffraction patterns unambiguously indicates that reaction has been realized and as the reaction product we suggest the modification similar to M-g2CO4-$$P{{2}_{1}}{\text{/}}c$$. Using the transmission electron microscopy technique, we show the presence of the new Mg-orthocarbonate/carbonate phase in the sample extracted from high-pressure environment.
Subject
Physics and Astronomy (miscellaneous)
Cited by
7 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Stabilization Of The CN35− Anion In Recoverable High‐pressure Ln3O2(CN3) (Ln=La, Eu, Gd, Tb, Ho, Yb) Oxoguanidinates;Angewandte Chemie International Edition;2023-10-16
2. Stabilization Of The CN35− Anion In Recoverable High‐pressure Ln3O2(CN3) (Ln=La, Eu, Gd, Tb, Ho, Yb) Oxoguanidinates;Angewandte Chemie;2023-10-16
3. Crystal structures and P–T phase diagrams of SrC2O5 and BaC2O5;Journal of Computational Chemistry;2023-08-23
4. First Finding of High-Pressure Modifications of Na2CO3 and K2CO3 with sp3-Hybridized Carbon Atoms;Crystal Growth & Design;2023-08-19
5. First-principles study on the high-pressure physical properties of orthocarbonate Ca2CO4;Scientific Reports;2023-07-14