Publication | Open Access
Stability of hydrous phase H MgSiO<sub>4</sub>H<sub>2</sub> under lower mantle conditions
79
Citations
15
References
2014
Year
GeophysicsNarrow Stability FieldMineral PhysicLower Mantle ConditionsEngineeringStability FieldMantle DynamicGeochemistryHydrous Phase HHigh Temperature GeochemistryEarth ScienceMantle Geochemistry
Abstract We report the stability field of a new high‐pressure hydrous phase, phase H MgSiO 4 H 2 , and its implications for water transport into the deep lower mantle. We observed the existence of hydrous phase H at pressures around 50 GPa, and this phase was stable up to 60 GPa. Our results, together with those of previous works, indicate that pure phase H MgSiO 4 H 2 has a very narrow stability field in the pressure range 35 < P < 60 GPa, equivalent to the uppermost part of the lower mantle. The stability field expands significantly toward higher pressures and temperatures on dissolution of the hydrous AlOOH component. The hydrous phase H‐phase δ solid solution (aluminous phase H), (MgSi,Al 2 )O 4 H 2 , is potentially the most important hydrous phase present under the deep lower mantle conditions.
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