Discrimination between ophiolitic metabasalts, north D'Urville Island, New Zealand
- 1 July 1982
- journal article
- research article
- Published by Taylor & Francis in New Zealand Journal of Geology and Geophysics
- Vol. 25 (3) , 275-293
- https://doi.org/10.1080/00288306.1982.10421492
Abstract
Whole-rock minor and trace element abundances, relict clinopyroxene compositions and petrographic features discriminate between 2 metabasalt units within the Patuki Volcanic complex, north D'Urville Island, New Zealand. The majority of the Patuki metabasalts show P, Zr, Nb, and light rare earth element (LREE) depletion and exhibit tholeiitic differentiation characteristics. They show close similarities to many abyssal tholeiites produced at modern spreading ridges (Ntype ocean ridge basalts). Pristine relict clinopyroxene preserves Ti-poor endiopside and endiopsidic augite compositions somewhat enriched in Cr, and shows systematic iron enrichment. A smaller proportion of the metabasalts are enriched in Nb, LREE, and related hygromagmatophile elements, but retain phenocryst assemblages and some trace element abundances similar to ocean-floor basalts. They contain Ca- and AI-rich titaniferous salites. These metabasalts are atypical of ophiolitic metabasalts and of metabasalts formed at normal ridge segments and show closest similarity to largeion- lithophile element enriched, ocean-floor tholeiites (E-type mid-ocean ridge basalts). At north D'Urville Island, the N-type metabasalts form an upper unit composed of massive and more rarely pillowed flows, and the group of E-type metabasalts form a lower unit composed of pillow lava and rare tabular bodies of ophitic spilite, associated with volcanic breccia. Interbedded marine sediments include sandstone, argillite, mudstone and minor tuffs, and ophiolitic breccia The trace element data indicate that the 2 suites of Patuki metabasalts at north D'Urville Island are derived from geochemically distinct mantle sources, similar to sources from which N- and E-type midocean ridge basalts originate. The data imply mantle heterogeneity beneath a poorly evolved Middle Permian seafloor.Keywords
This publication has 24 references indexed in Scilit:
- Geochemistry of the upper Snooks Arm Group basalts, Burlington Peninsula, Newfoundland: evidence against formation in an island arcCanadian Journal of Earth Sciences, 1980
- The Dun Mountain ophiolite belt, New Zealand, its tectonic setting, constitution, and origin, with special reference to the southern portionAmerican Journal of Science, 1976
- Composition and age of Lau Basin and Ridge volcanic rocks: Implications for evolution of an interarc basin and remnant arcGSA Bulletin, 1976
- Multi-element characterisation of glass shards from stratigraphically correlated rhyolitic tephra unitsChemical Geology, 1975
- Atlantic ocean floor: Geochemistry and petrology of basalts from legs 2 and 3 of the Deep-Sea Drilling ProjectJournal of Geophysical Research, 1974
- 1972 values for international geochemical reference samplesGeochimica et Cosmochimica Acta, 1973
- Basalts and sea floor spreading behind the Mariana Island arcEarth and Planetary Science Letters, 1972
- The Mid-Atlantic Ridge near 45° N. II. Basalts from the area of Confederation PeakCanadian Journal of Earth Sciences, 1968
- The role of aluminum in igneous clinopyroxenes with relation to their parentageAmerican Journal of Science, 1962
- Si-Al relation in clinopyroxenes from igneous rocksAmerican Journal of Science, 1960