Postperovskite phase equilibria in the MgSiO3-Al2O3 system

Proc Natl Acad Sci U S A. 2008 Dec 9;105(49):19160-4. doi: 10.1073/pnas.0805660105. Epub 2008 Nov 26.

Abstract

We investigate high-P,T phase equilibria of the MgSiO(3)-Al(2)O(3) system by means of the density functional ab initio computation methods with multiconfiguration sampling. Being different from earlier studies based on the static substitution properties with no consideration of Rh(2)O(3)(II) phase, present calculations demonstrate that (i) dissolving Al(2)O(3) tends to decrease the postperovskite transition pressure of MgSiO(3) but the effect is not significant ( approximately -0.2 GPa/mol% Al(2)O(3)); (ii) Al(2)O(3) produces the narrow perovskite+postperovskite coexisting P,T area (approximately 1 GPa) for the pyrolitic concentration (x(Al2O3) approximately 6 mol%), which is sufficiently responsible to the deep-mantle D'' seismic discontinuity; (iii) the transition would be smeared (approximately 4 GPa) for the basaltic Al-rich composition (x(Al2O3) approximately 20 mol%), which is still seismically visible unless iron has significant effects; and last (iv) the perovskite structure spontaneously changes to the Rh(2)O(3)(II) with increasing the Al concentration involving small displacements of the Mg-site cations.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Aluminum / chemistry*
  • Calcium Compounds / chemistry*
  • Crystallography
  • Earth, Planet*
  • Geology
  • Magnesium / chemistry*
  • Models, Chemical*
  • Oxides / chemistry*
  • Oxygen / chemistry
  • Silicon / chemistry*
  • Thermodynamics
  • Titanium / chemistry*

Substances

  • Calcium Compounds
  • Oxides
  • perovskite
  • Aluminum
  • Titanium
  • Magnesium
  • Oxygen
  • Silicon