Element abundances and Nd isotopic composition in boninite and tholeiite from DSDP Hole 60-458


Autoria(s): Hickey, Rosemary L; Frey, Frederick A
Cobertura

LATITUDE: 17.864200 * LONGITUDE: 146.934300 * DATE/TIME START: 1978-04-18T00:00:00 * DATE/TIME END: 1978-04-18T00:00:00

Data(s)

06/11/1982

Resumo

Boninites are unusual high MgO-high SiO2 volcanic rocks found in several western Pacific island arcs. Their high Mg/(Mg + total Fe) (0.55-0.83) and compatible element contents (Ni = 70-450 ppm, Cr = 200-1800 ppm) indicate equilibration with mantle peridotite, but their low TiO2 contents (0.1-0.5%) indicate severe depletion of this source. K, Rb, Sr and Ba abundances in boninites are typical of primitive arc basalts, but ratios such as Ti/Zr and La/Yb are variable (Ti/Zr = 23-67, (La/Yb)e.f. = 0.6-4.7). Evidence for both enrichment and depletion of incompatible elements suggests that boninites are derived from refractory peridotite which has been metasomatically enriched in LREE, Zr, Sr, Ba and alkalis. Wide variations in 143Nd/144Nd (0.51262-0.51296) are correlated with La/Sm, Sm/Nd and Ti/Zr, which enables identification of components in the boninite source. Possible LREE depleted components have relative REE and Ti abundances like those in depleted peridotites and high 143Nd/144Nd ratios which reach MORB-like values. Possible LREE enriched components have relative REE abundances similar to those in metasomatized mantle peridotite nodules, and low 143Nd/144Nd ratios which indicate either sedimentary sources or mantle sources with recent to ancient LREE enrichment. Relative abundances of Ba and Sr in boninites decrease with increasing LREE enrichment and suggest a non-sedimentary source for the LREE enriched material. Enrichment in Ba, Sr and alkalis may result from a third component derived from subducted oceanic crust. Two models can account for the successive generation of boninites and arc tholeiites within a single area: 1) boninites can be derived from the peridotite residue of earlier arc tholeiite generation which is metasomatically enriched in LREE before boninite volcanism, or 2) arc tholeiites and boninites can be derived from a variably depleted peridotite source which has been pervasively enriched in LREE. Areas of fertile peridotite would yield tholeiites while refractory areas would yield boninites.

Formato

application/zip, 3 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.707055

doi:10.1594/PANGAEA.707055

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Hickey, Rosemary L; Frey, Frederick A (1982): Geochemical characteristics of boninite series volcanics; implications for their source. Geochimica et Cosmochimica Acta, 46(11), 2099-2116, doi:10.1016/0016-7037(82)90188-0

Palavras-Chave #143Nd/144Nd; 143Nd/144Nd e; 2 sigma; 60-458; Al2O3; Al2O3/TiO2; Aluminium oxide; Aluminium oxide/Titan oxide; Ba; Ba/La; Barium; Barium/Lanthanum ratio; Ca/Ti; Calcium/Titanium ratio; Calcium oxide; Calculated; CaO; Ce; Cerium; Chromium; Co; Cobalt; Cr; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Electron microprobe; Element analysis, neutron activation (NAA); e-Nd; e-Nd std dev; epsilon-Neodymium; epsilon-Neodymium, standard deviation; Eu; Europium; FeO; Glomar Challenger; H2O; Hafnium; Hf; Instrumental neutron activation analysis (INAA); Iron oxide, FeO; Isotope dilution; Isotope ratio mass spectrometry; K/Rb; K2O; La; Label; Lanthanum; Leg60; Lu; Lutetium; Magnesium number; Magnesium oxide; Manganese oxide; Mg/(Mg + Fe); MgO; MnO; Na2O; Nd; Neodymium; Neodymium 143/Neodymium 144; Neodymium 143/Neodymium 144, error; North Pacific/TRENCH; ODP sample designation; P2O5; Phosphorus oxide; Potassium/Rubidium ratio; Potassium oxide; Rb; Rb/Sr; Rock; Rock type; Rubidium; Rubidium/Strontium ratio; Samarium; Sample code/label; Sc; Scandium; Silicon dioxide; SiO2; Sm; Sodium oxide; Sr; Strontium; Tb; Terbium; Ti; Ti/Zr; TiO2; Titanium; Titanium/Zirconium ratio; Titanium oxide; Water in rock; X-ray fluorescence (XRF); Y; Yb; Ytterbium; Yttrium; Zirconium; Zr
Tipo

Dataset