Geochemistry and radiogenic isotopes of ODP Hole 157-953C lavas
Cobertura |
LATITUDE: 28.650200 * LONGITUDE: -15.144500 * DATE/TIME START: 1994-08-24T07:25:00 * DATE/TIME END: 1994-09-04T09:40:00 |
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Data(s) |
14/12/2010
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Resumo |
The Canary Island primitive basaltic magmas are thought to be derived from an HIMU-type upwelling mantle containing isotopically depleted (NMORB)-type component having interacted with an enriched (EM)-type component, the origin of which is still a subject of debate. We studied the relationships between Ni, Mn and Ca concentrations in olivine phenocrysts (85.6-90.0 mol.% Fo, 1,722-3,915 ppm Ni, 1,085-1,552 ppm Mn, 1,222-3,002 ppm Ca) from the most primitive subaerial and ODP Leg 157 high-silica (picritic to olivine basaltic) lavas with their bulk rock Sr-Nd-Pb isotope compositions (87Sr/86Sr = 0.70315-0.70331, 143Nd/144Nd = 0.51288-0.51292, 206Pb/204Pb = 19.55-19.93, 207Pb/204Pb = 15.60-15.63, 208Pb/204Pb = 39.31-39.69). Our data point toward the presence of both a peridotitic and a pyroxenitic component in the magma source. Using the model (Sobolev et al., 2007, Science Vol 316) in which the reaction of Si-rich melts originated during partial melting of eclogite (a high pressure product of subducted oceanic crust) with ambient peridotitic mantle forms olivine-free reaction pyroxenite, we obtain an end member composition for peridotite with 87Sr/86Sr = 0.70337, 143Nd/144Nd = 0.51291, 206Pb/204Pb = 19.36, 207Pb/204Pb = 15.61 and 208Pb/204Pb = 39.07 (EM-type end member), and pyroxenite with 87Sr/86Sr = 0.70309, 143Nd/144Nd = 0.51289, 206Pb/204Pb = 20.03, 207Pb/204Pb = 15.62 and 208Pb/204Pb = 39.84 (HIMU-type end member). Mixing of melts from these end members in proportions ranging from 70% peridotite and 30% pyroxenite to 28% peridotite and 72% pyroxenite derived melt fractions can generate the compositions of the most primitive Gran Canaria shield stage lavas. Combining our results with those from the low-silica rocks from the western Canary Islands (Gurenko et al., 2009, doi:10.1016/j.epsl.2008.11.013), at least four distinct components are required. We propose that they are (1) HIMU-type pyroxenitic component (representing recycled ocean crust of intermediate age) from the plume center, (2) HIMU-type peridotitic component (ancient recycled ocean crust stirred into the ambient mantle) from the plume margin, (3) depleted, MORB-type pyroxenitic component (young recycled oceanic crust) in the upper mantle entrained by the plume, and (4) EM-type peridotitic component from the asthenosphere or lithosphere above the plume center. |
Formato |
application/zip, 2 datasets |
Identificador |
https://doi.pangaea.de/10.1594/PANGAEA.772733 doi:10.1594/PANGAEA.772733 |
Idioma(s) |
en |
Publicador |
PANGAEA |
Direitos |
CC-BY: Creative Commons Attribution 3.0 Unported Access constraints: unrestricted |
Fonte |
Supplement to: Gurenko, Andrey A; Hoernle, Kaj; Sobolev, Alexander V; Hauff, Folkmar; Schmincke, Hans-Ulrich (2010): Source components of the Gran Canaria (Canary Islands) shield stage magmas: evidence from olivine composition and Sr-Nd-Pb isotopes. Contributions to Mineralogy and Petrology, 159(5), 689-702, doi:10.1007/s00410-009-0448-8 |
Palavras-Chave | #143Nd/144Nd; 143Nd/144Nd e; 157-953C; 206Pb/204Pb; 206Pb/204Pb e; 207Pb/204Pb; 207Pb/204Pb e; 208Pb/204Pb; 208Pb/204Pb e; 87Sr/86Sr; 87Sr/86Sr e; Al2O3; Aluminium oxide; Ca2+; Calcium; Calcium, standard deviation; Calcium oxide; Canarias Sea; CaO; Ca std dev; Chromium; Chromium(III) oxide; Cobalt oxide; CoO; Cr; Cr2O3; DRILL; Drilling/drill rig; Elements, total; FeO; Fo; Forsterite; Forsterite, standard deviation; Fo std dev; fraction; Fraction; fraction of anticipated pyroxenite melt that contributed to the chemical composition of the individual lava and calculated from Ni* and Mn* values; Iron oxide, FeO; Joides Resolution; Label; Lead 206/Lead 204, error; Lead 206/Lead 204 ratio; Lead 207/Lead 204, error; Lead 207/Lead 204 ratio; Lead 208/Lead 204, error; Lead 208/Lead 204 ratio; Leg157; Magnesium oxide; Manganese; Manganese, standard deviation; Manganese/Iron ratio; Manganese oxide; MgO; Mn; Mn/Fe; Mn/FeO; Mn* = Mn/FeO; MnO; Mn std dev; N; Neodymium 143/Neodymium 144; Neodymium 143/Neodymium 144, error; Ni; Ni* = Ni; Nickel; Nickel, standard deviation; Nickel oxide; NiO; Ni std dev; Ocean Drilling Program; ODP; ODP sample designation; Ratio; Sample amount; Sample code/label; Silicon dioxide; SiO2; Standard deviation; Std dev; Strontium 87/Strontium 86, error; Strontium 87/Strontium 86 ratio; TiO2; Titanium oxide; total |
Tipo |
Dataset |