Nd and Sr isotopic composition of Cretaceous MORB


Autoria(s): Jahn, Bor-Ming; Bernard-Griffiths, J; Charlot, R; Cornichet, J; Vidal, F
Cobertura

MEDIAN LATITUDE: 25.073250 * MEDIAN LONGITUDE: -68.052050 * SOUTH-BOUND LATITUDE: 25.035000 * WEST-BOUND LONGITUDE: -68.057300 * NORTH-BOUND LATITUDE: 25.111500 * EAST-BOUND LONGITUDE: -68.046800 * DATE/TIME START: 1976-12-02T00:00:00 * DATE/TIME END: 1977-03-15T00:00:00

Data(s)

11/05/1980

Resumo

Chemical and isotopic (Nd and Sr) compositions have been determined for 12 Cretaceous basaltic samples (108 Ma old) from Holes 417D and 418A of Legs 51,52 and 53. We have found that: (1) The chemical compositions are typical of MORB. They do not vary systematically with the stratigraphic positions of the analyzed samples; thus, the chemical evolution is independent of the eruption sequence that occurred at this Cretaceous ridge. (2) REE patterns for all rocks are characterized by a strong LREE depletion with (La/Sm)N = 0.38-0.50; no significant Eu anomalies are found; HREE are nearly flat or slightly depleted towards Yb-Lu and have 12-18 * chondritic abundances. Combining the results of previous studies, it suggests that no significant temporal and spatial variation in magma chemistry (especially for LIL elements) has occurred in the 'normal' ridge segments over the last 150 Ma. (3) lsotopically, 143Nd/144Nd ratios vary from 0.513026 to 0.513154, corresponding to epsilon-Nd(0) = +7.5 to +10, and they fall in the typical range of MORB. However, these rocks have unexpectedly high 87Sr/86Sr ratios (0.70355-0.70470) which are attributed to the result of seawater-rock interaction. (4) The Nd model ages (Tin), ranging from 1.53 to 2.47 (average 2.06) AE, suggest that the upper mantle source(s) underwent a large scale chemical differentiation leading to LREE and other LIL element depletion about 2 AE ago, assuming a simple two-stage model. More realistically, the variation in Tm(Nd) or epsilon-Nd could be derived from mixing of heterogeneous mantle sources that were a consequence of continuous mantle differentiation and continental formation. (5) Because of the low mg values (0.52-0.63), the analyzed basaltic rocks do not represent primary liquids of mantle melting. The variation in La/Sm ratios and TiO2 are not compatible with a model in which all rocks are genetically related by a simple fractional crystallization. Rather, it is proposed that the basaltic rocks might have been derived from some heterogeneous upper mantle source with or without later magmatic mixing, and followed by some shallow-level fraetionations.

Formato

application/zip, 5 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.714978

doi:10.1594/PANGAEA.714978

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Jahn, Bor-Ming; Bernard-Griffiths, J; Charlot, R; Cornichet, J; Vidal, F (1980): Nd and Sr isotope compositions and REE abundances of Cretaceous MORB (Holes 417D and 418A, Legs 51,52 and 53). Earth and Planetary Science Letters, 48(1), 171-184, doi:10.1016/0012-821X(80)90180-6

Palavras-Chave #-; 143Nd/144Nd; 143Nd/144Nd e; 147Sm/144Nd; 2 sigma; 51-417D; 52-417D; 53-418A; 87Rb/86Sr; 87Sr/86Sr; 87Sr/86Sr e; Al2O3; Aluminium oxide; Atomic absorption spectrometry (AAS); Calcium oxide; Calculated; CaO; Ce; Cerium; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Dy; Dysprosium; e-Nd(0); e-Nd(T); epsilon-CHUR (0); epsilon-CHUR (T); epsilon-Neodymium (0); epsilon-Neodymium (T); Er; Erbium; Eu; Europium; Event; Fe2O3; Gadolinium; Gd; Glomar Challenger; Iron oxide, Fe2O3; Isotope dilution; K/Rb; K2O; La; La/Sm; Label; Label 2; Lanthanum; Lanthanum/Samarium ratio; leachate; Leg51; Leg52; Leg53; LOI; Loss on ignition; Lu; Lutetium; Magnesium number; Magnesium oxide; Manganese oxide; Mg/(Mg + Fe); Mg/(Mg+Fe[2+]) atomic mg; MgO; MnO; Na2O; Nd; Neodymium; Neodymium 143/Neodymium 144; Neodymium 143/Neodymium 144, error; North Atlantic/CONT RISE; ODP sample designation; P2O5; Phosphorus oxide; Potassium/Rubidium ratio; Potassium oxide; Rb; Rb/Sr; residue; Rubidium; Rubidium/Strontium ratio; Rubidium 87/Strontium 86 ratio; Samarium; Samarium 147/Neodymium 144 ratio; Sample code/label; Sample code/label 2; Silicon dioxide; SiO2; Sm; Sodium oxide; Sr; Strontium; Strontium 87/Strontium 86, error; Strontium 87/Strontium 86 ratio; TiO2; Titanium oxide; Tm (Nd) (AE), Nd model ages; total rock; X-ray fluorescence (XRF); Yb; Ytterbium
Tipo

Dataset