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Intraplate versus ridge volcanism on the Pacific-Antarctic Ridge near 37°S -111°W

Authors :
Marcia Maia
Roger Hekinian
Nicolas Binard
Christophe Hémond
Colin W. Devey
John O'Connor
Peter Stoffers
Dietrich Ackerman
Source :
Scopus-Elsevier, Journal Of Geophysical Research-solid Earth (0148-0027) (Amer Geophysical Union), 1997-06, Vol. 102, N. B6, P. 12265-12286

Abstract

Exploration of the Foundation Volcanic Chain (33 degrees S-131 degrees W; 37 degrees S-111 degrees W) revealed the existence of different magmatic provinces with relation to their geological settings. (1) The Pacific-Antarctic Ridge (PAR) is made up of several en echelon segments where both glassy midocean ridge basalts (MORBs) with low incompatible elements (K2O150 ppm) and Ce (>48 ppm)) at about 306-1300 km from the PAR axis, (4) The Old Pacific Seamounts built on a crust older than 23 m. y. located west of longitude 124 degrees W (> 1300 km from the PAR axis) consist of T and EMORB. On the PAR axis, extensive crystal fractionation (>65%) produced the silicic lavas. On the basis of Pacific plate reconstruction using a half spreading rate of about 50 mm/yr and integrating the observed compositional changes with respect to the structural settings, it is inferred that the last volcanic events giving rise to the FS took place at about 110 km from the PAR axis about 5 m. y. ago. The Oblique Ridges built between 5 m. y. and 23 m. y.) with MORB volcanics comparable to those of the the Oblique Ridge-PAR provinces, could also have been formed by an interaction between the Foundation Seamount (dredge site 28) hotspot magmatism and that of an ancient accreting ridge magmatism precursor of the PAR.

Details

Database :
OpenAIRE
Journal :
Scopus-Elsevier, Journal Of Geophysical Research-solid Earth (0148-0027) (Amer Geophysical Union), 1997-06, Vol. 102, N. B6, P. 12265-12286
Accession number :
edsair.doi.dedup.....cf23f42ef28c62827053a4f68cf548ba