Eoarchean within-plate basalts from southwest Greenland
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  • journal_title:Geology
  • Contributor:F.E. Jenner ; V.C. Bennett ; G. Yaxley ; C.R.L. Friend ; O. Nebel
  • Publisher:Geological Society of America
  • Date:2013-03-01
  • Format:text/html
  • Language:en
  • Identifier:10.1130/G33787.1
  • journal_abbrev:Geology
  • issn:0091-7613
  • volume:41
  • issue:3
  • firstpage:327
  • section:Articles
摘要

The majority of >3 Ga metabasalts have chemical features, such as high field strength element (HFSE) depletions, that are characteristic of modern island-arc basalts. These compositions have been interpreted as evidence for subduction of oceanic crust early in Earth’s history. Alternatively, the apparent absence of Archean mafic rocks with mid-oceanic ridge basalt (MORB) and ocean island basalt (OIB) compositions and the ubiquitous occurrence of metabasalts with HFSE anomalies suggest that these chemical features may instead be a widespread characteristic of the Archean mantle related to early chemical differentiation and unrelated to modern-style recycling of crust. Here we present major- and trace-element data for a suite of metabasalts from Innersuartuut Island, southwest Greenland, which have a minimum age constraint of 3.75 Ga and are likely as old as ≥3.85 Ga. Samples from Innersuartuut show no evidence for crustal contamination or subduction-related magmatism, and have a petrogenesis comparable to modern OIB. The new data demonstrate that a compositional range for volcanic rocks comparable to that seen in the Phanerozoic existed in the Eoarchean. Therefore, rather than a global anomaly, subduction-related processes are the likely origin for the compositions of the most commonly preserved Archean mafic rocks with island-arc basalt characteristics.

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