Lecuyer, Christophe M. and Gruau, Gerard (1996): Oxygen and strontium compositions of Hess Deep gabbros (Holes 894F and 894G); high-temperature interaction of seawater with the oceanic crust layer 3

Leg/Site/Hole:
ODP 147
ODP 147 894
Identifier:
1996-056260
georefid

10.2973/odp.proc.sr.147.014.1996
doi

Creator:
Lecuyer, Christophe M.
CNRS, Universite de Rennes I, Rennes, France
author

Gruau, Gerard
Woods Hole Oceanographic Institution, United States
author

Identification:
Oxygen and strontium compositions of Hess Deep gabbros (Holes 894F and 894G); high-temperature interaction of seawater with the oceanic crust layer 3
1996
In: Mevel, Catherine, Gillis, Kathryn M., Allan, James F., Arai, Shoji, Boudier, Francoise, Celerier, Bernard, Dick, Henry J. B., Falloon, Trevor J., Frueh-Green, Gretchen L., Iturrino, Gerardo J., Kelley, Deborah S., Kelso, Paul R., Kennedy, Lori A., Kikawa, Eiichi, Lecuyer, Christophe M., MacLeod, Christopher J., Malpas, John, Manning, Craig E., MacDonald, Mark A., Miller, D. Jay, Natland, James, Pariso, Janet E., Pedersen, Rolf-Birger, Prichard, Hazel M., Puchelt, Harald, Richter, Carl, Proceedings of the Ocean Drilling Program; Scientific results, Hess Deep rift valley; covering Leg 147 of the cruises of the Drilling Vessel JOIDES Resolution, San Diego, California, to Balboa Harbor, Panama, sites 894-895, 22 November 1992-21 January 1993
Texas A & M University, Ocean Drilling Program, College Station, TX, United States
147
227-234
Coverage:Geographic coordinates:
North:2.1806
West:-101.3136East: -101.3129
South:2.1757

Isotope geochemistry; Igneous and metamorphic petrology; alkaline earth metals; crust; East Pacific; East Pacific Rise; Equatorial Pacific; gabbros; Hess Deep; high temperature; igneous rocks; isotope ratios; isotopes; Leg 147; mantle; metals; North Pacific; Northeast Pacific; O-18/O-16; Ocean Drilling Program; oceanic crust; ODP Site 894; oxygen; Pacific Ocean; petrology; plutonic rocks; sea water; Sr-87/Sr-86; stable isotopes; strontium; temperature; upper mantle; water-rock interaction;

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