HR: 11:05h
AN: T12A-04 [Abstracts]
TI: Petrologic Aspects of Seamount and Guyot Volcanism on the Ancestral Mesozoic Pacific Plate: a Review
AU: * Natland, J H
EM: jnatland@rsmas.miami.edu
AF: RSMAS/MGG University of Miami, 4600 Rickenbacker Causeway, Miami, FL 33149, United
States
AB:
Hundreds of large seamounts and guyots are widely scattered almost in a "shotgun-blast" arrangement in an
area about the size of the United States west of the Mississippi River on the Mesozoic Pacific plate between the
Mariana Trench and the Gilbert Islands. Most of these formed between ~160-100 Ma while the Pacific plate was
surrounded by spreading ridges and growing outward in all directions. There is little to no indication that the
seamounts and guyots formed along linear seamount chains; existing radiometric-age data show no age
progressions. The volcanoes appear to have formed in response to a uniform stress configuration across the
plate, which was either not moving or moving very slowly at the time (1, 2), much like the modern Antarctic plate.
When the growing plate started to encounter subduction systems in the western Pacific at ~90 Ma,
consistent stress patterns began to develop, and the broad linear Gilbert and Line volcanic ridge systems began
to form. Even then, however, considerable overlapping of volcanism occurred, and only the most general age
progressions are evident in existing data.
Petrologic data from samples obtained from dozens of volcanic summits by dredging and beneath several
carbonate platforms by drilling reveal considerable diversity in development of differentiated alkalic magmatic
lineages rooted in diverse parental basaltic rocks. These include transitional, alkalic and basanitic
compositions, with differentiates of hawaiite, mugearite, trachyte and one phonolite. Many of the basaltic rocks
are partly to significantly transformed by alteration under oxidative conditions (dredged rocks) and both oxidative
and non-oxidative conditions (drilled rocks). This can make estimations of mantle geochemical provenance
difficult. Nevertheless, the province has been linked by backtracking techniques to the modern SOPITA region of
the South Pacific (3), and its rocks show enrichments in trace elements and isotopic characteristics similar to
lavas from the Cook-Austral, Marquesas, Society, and Samoan linear volcanic chains. Significantly, Hawaiian-
type tholeiite has not been sampled in the region, and the diversity of basaltic rocks and differentiates has always
been high. Even unusual potassic nephelinites (K2O > Na2O) with phenocrysts of kaersutitic
amphibole or phlogopite occur in the Wake and Line Seamounts. These resemble lavas of portions of the East
African Rift, but also have counterparts in the Samoan and Society chains, and resemble very young basalts
obtained on the outer trench swell of the Pacific plate near Japan.
I suggest that variably and often strongly enriched material was originally supplied to the shallow upper mantle
beneath a broad region of the Pacific plate during the Mesozoic; that partial melts of this material were
subsequently tapped along major fracture systems that developed to form linear island chains as stress
configurations changed on the Pacific plate; and that narrow plume conduits of ascending mantle have never
figured in the emplacement of the broadly distributed enriched SOPITA volcanoes.
1) Natland, J. H., and Winterer, E.L., 2005, GSA Spec. Paper 388: 687-710. 2) Larson, R.L., et al., 1992, Proc.
ODP, Sci Results, 129: p. 615-631; 3) Staudigel, H., et al., 1991, EPSL, 102: 24-44.
DE: 1000 GEOCHEMISTRY
DE: 1025 Composition of the mantle
DE: 8450 Planetary volcanism (5480, 6063, 8148)
DE: 9355 Pacific Ocean
DE: 9609 Mesozoic
SC: Tectonophysics [T]
MN: 2007 Fall Meeting