HR: 08:05h
AN: V11B-01 [PDF]
TI: Submarine Rejuvenated-Stage Lavas Offshore Molokai, Oahu, Kauai, and Niihau, Hawaii
AU: * Clague, D A
EM: clague@mbari.org
AF: Monterey Bay Aquarium Research Institute, 7700 Sandholdt Road, Moss Landing, CA 95039 United States
AU: Cousens, B L
EM: brian_cousens@carleton.ca
AF: Carleton University, 1125 Colonel By Drive, Ottowa, ON K1S 5B6
Canada
AU: Davis, A S
EM: davisa@mbari.org
AF: Monterey Bay Aquarium Research Institute, 7700 Sandholdt Road, Moss Landing, CA 95039 United States
AU: Dixon, J E
EM: jdixon@rsmas.miami.edu
AF: University of Miami, 4600 Rickenbacker Causeway, Miami, FL 33149 United States
AU: Hon, K
EM: kenhon@hawaii.edu
AF: University of Hawaii at Hilo, 200 W. Kawili Street, Hilo, HI 96720 United States
AU: Moore, J G
EM: jmoore@usgs.gov
AF: U.S. Geological Survey, 345 Middlefield Road, Menlo park, CA 94025 United States
AU: Reynolds, J R
EM: jreynolds@ims.uaf.edu
AF: University of Alaks Fairbanks, P.O. Box 757220, 213 O'Neill Building, Fairbanks, AK 99775 United States
AB:
Rejuvenated-stage lavas from the Hawaiian Islands form many distinctive landmarks, such as Diamond Head. They have been
relatively well studied due to their primitive, strongly alkaline compositions (alkalic basalt, basanite, nephelinite,
melilitite, phonolite). More recently, compositionally similar lavas have been mapped and sampled on the deep seafloor around
the islands.
Rejuvenated-stage cones also occur on the submarine flanks of the islands. A Pisces V submersible dive collected samples from
the only submarine cone on the north slope of East Molokai. The alkalic basalt to basanite composition lava is similar to
the subaerial Kalaupapa basalt (Clague and Moore, 2003). MBARI Tiburon ROV dives recovered nephelinite from a lone steep cone
on the northeast slope of Oahu, alkalic basalt from two shallow steep cones just west of the Koko Rift, and alkalic basalt
from the submarine flank of Diamond Head on Oahu's south flank. These lavas are generally similar to subaerial Honolulu
Volcanics, although the isotopic data extend to higher Sr isotopic values. Other MBARI Tiburon ROV dives recovered alkalic
basalt and basanite from 8 separate steep cones on the south flank of Kauai. Once again, these lavas are chemically similar
to those from the subaerial Koloa Volcanics. Samples from one of these cones contained common xenoliths of upper mantle
lherzolite and harzburgite. Seven MBARI Tiburon ROV dives on the northwest flank of Niihau sampled 6 flat-topped cones and 5
pointed cones. The lavas from the flat-topped cones are alkalic basalt similar to rejuvenated Kiekie Basalt on Niihau Island
whereas the lavas from the pointed cones are basanite, hawaiite, and tephrophonolite that are chemically distinct from the
Kiekie Basalt, but similar to rejuvenated-stage lavas on Kauai and Oahu.
Volcaniclastic deposits were observed and sampled at many of the sites offshore Niihau, Kauai, and Oahu, as well as the North
Arch. Breadcrust and spindle bombs and spatter were found offshore Kauai as deep as 1500 m, in addition to finer
volcaniclastic deposits consisting of vesicular angular glass fragments, which also occur offshore Oahu and in the North Arch
as deep as 4100 m (Davis and Clague, submitted). The glass data from all these deposits as well as on pillow and sheet flow
rinds from Oahu, Molokai, Niihau, Kauai, North Arch, South Arch, Southwest Oahu volcanic field, and some of the cones between
Oahu and Kauai demonstrate that rejuvenated stage lavas did not erupt as near-primary melts, but rather as crystal-rich
magmas whose bulk compositions approach primary magma compositions. The low-MgO contents of almost all the glasses indicate
that these magmas cooled and crystallized significantly during transit through the cool lithosphere. The distribution of
these lavas on the islands, on the flanks of some islands, and on the deep seafloor suggest that the melting region around
the Hawaiian hot-spot is at least 400 km across.
DE: 3640 Igneous petrology
DE: 8400 VOLCANOLOGY
DE: 8429 Lava rheology and morphology
DE: 8450 Planetary volcanism (5480)
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2003 Fall Meeting