AQUEOUS FLUID CONNECTIVITY IN PYROPE AGGREGATES: WATER TRANSPORT INTO THE DEEP MANTLE BY A SUBDUCTED OCEANIC CRUST WITHOUT ANY HYDROUS MINERALS

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dc.contributor.author Ono S.
dc.contributor.author Mibe K.
dc.contributor.author Yoshino T.
dc.date.accessioned 2021-09-17T06:49:05Z
dc.date.available 2021-09-17T06:49:05Z
dc.date.issued 2002
dc.identifier https://elibrary.ru/item.asp?id=1258513
dc.identifier.citation Earth and Planetary Science Letters, 2002, 203, 3-4, 895-903
dc.identifier.issn 0012-821X
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/30280
dc.description.abstract The effect of pressure and temperature on the dihedral angles of aqueous fluid in a pyrope matrix was investigated. Experiments were performed on an H2O-pyrope system in a multianvil apparatus over the pressure and temperature ranges of 4-13 GPa and 900-1200°C, respectively. The dihedral angle of the fluid in contact with the pyrope exhibited a significant change at pressures around 8-9 GPa. The dihedral angles increased with increasing pressure up to 9 GPa. At pressures above 9 GPa, the dihedral angles were greater than 60° at temperatures below 1000°C. Therefore, the efficient percolation of aqueous fluid in a pyrope matrix is not feasible in the upper mantle and the transition zone. The fluid released from the breakdown reactions of the hydrous minerals lawsonite and phengite exists in the oceanic crust, which mainly consists of garnet in the upper mantle and transition zone. We conclude that a part of the aqueous fluid released from the hydrous minerals may be retained in the subducted oceanic crust, and transferred into the deep mantle by the subduction process.
dc.subject WATER
dc.subject TRANSPORT
dc.subject DIHEDRAL ANGLE
dc.subject PYROPE
dc.subject SUBDUCTION
dc.subject SLABS
dc.title AQUEOUS FLUID CONNECTIVITY IN PYROPE AGGREGATES: WATER TRANSPORT INTO THE DEEP MANTLE BY A SUBDUCTED OCEANIC CRUST WITHOUT ANY HYDROUS MINERALS
dc.type Статья


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