4.6 Article

Plume versus plate origin for the Shatsky Rise oceanic plateau (NW Pacific): Insights from Nd, Pb and Hf isotopes

Journal

LITHOS
Volume 200, Issue -, Pages 49-63

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.lithos.2014.03.031

Keywords

Shatsky Rise; Hard rock samples from IODP Expedition 324; Mantle plume or triple junction origin; Nd-Pb-Hf isotope geochemistry

Funding

  1. Australian IODP office, Australian Research Council [LE0882854, LE0989067]
  2. RIF lab, University of Queensland [LE0989067]
  3. USSSP
  4. NSERC
  5. German Research Council (DFG) [HO1833/21-1]
  6. Australian Research Council [LE0882854] Funding Source: Australian Research Council

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Shatsky Rise, an early Cretaceous igneous oceanic plateau in the NW Pacific, comprises characteristics that could be attributed to either formation by shallow, plate tectonic-controlled processes or to an origin by a mantle plume (head).The plateau was drilled during Integrated Ocean Drilling Program (IODP) Expedition 324. Complementary to a recent trace element study (Sano et al., 2012) this work presents Nd, Pb and Hf isotope data of recovered lava samples cored from the three major volcanic edifices of the Shatsky Rise. Whereas lavas from the oldest edifice yield fairly uniform compositions, a wider isotopic spread is found for lavas erupted on the younger parts of the plateau, suggesting that the Shatsky magma source became more heterogeneous with time. At least three isotopically distinct components can be identified in the magma source: 1) a volumetrically and spatially most common, moderately depleted component of similar composition to modern East Pacific Ridge basalt but with low He-3/He-4, 2) an isotopically very depleted component which could represent local, early Cretaceous (entrained) depleted upper mantle, and 3) an isotopically enriched component, indicating the presence of (recycled) continental material in the magma source. The majority of analyzed Shatsky lavas, however, possess Nd-Hf-Pb isotope compositions consistent with a derivation from an early depleted, non-chondritic reservoir. By comparing these results with petrological and trace element data of mafic volcanic rock samples from all three massifs (Tamu, On, Shirshov), we discuss the origin of Shatsky Rise magmatism and evaluate the possible involvement of a mantle plume (head). (C) 2014 Elsevier B.V. All rights reserved.

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