Hoernle, Kaj; Hauff, Folkmar; van den Bogaard, Paul; Werner, Reinhard; Mortimer, Nick; Geldmacher, Jörg; Garbe-Schönberg, Dieter; Davy, Bryan (2010): Geochemistry of volcanic rocks from the Hikurangi and Manihiki Plateaus [dataset publication series]. PANGAEA, https://doi.org/10.1594/PANGAEA.783522, Supplement to: Hoernle, K et al. (2010): Age and geochemistry of volcanic rocks from the Hikurangi and Manihiki oceanic Plateaus. Geochimica et Cosmochimica Acta, 74(24), 7196-7219, https://doi.org/10.1016/j.gca.2010.09.030
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Abstract:
Here we present the first radiometric age data and a comprehensive geochemical data set (including major and trace element and Sr-Nd-Pb-Hf isotope ratios) for samples from the Hikurangi Plateau basement and seamounts on and adjacent to the plateau obtained during the R/V Sonne 168 cruise, in addition to age and geochemical data from DSDP Site 317 on the Manihiki Plateau. The 40Ar/39Ar age and geochemical data show that the Hikurangi basement lavas (118-96 Ma) have surprisingly similar major and trace element and isotopic characteristics to the Ontong Java Plateau lavas (ca. 120 and 90 Ma), primarily the Kwaimbaita-type composition, whereas the Manihiki DSDP Site 317 lavas (117 Ma) have similar compositions to the Singgalo lavas on the Ontong Java Plateau. Alkalic, incompatible-element-enriched seamount lavas (99-87 Ma and 67 Ma) on the Hikurangi Plateau and adjacent to it (Kiore Seamount), however, were derived from a distinct high time-integrated U/Pb (HIMU)-type mantle source. The seamount lavas are similar in composition to similar-aged alkalic volcanism on New Zealand, indicating a second wide-spread event from a distinct source beginning ca. 20 Ma after the plateau-forming event. Tholeiitic lavas from two Osbourn seamounts on the abyssal plain adjacent to the northeast Hikurangi Plateau margin have extremely depleted incompatible element compositions, but incompatible element characteristics similar to the Hikurangi and Ontong Java Plateau lavas and enriched isotopic compositions intermediate between normal mid-ocean-ridge basalt (N-MORB) and the plateau basement. These younger (~52 Ma) seamounts may have formed through remelting of mafic cumulate rocks associated with the plateau formation. The similarity in age and geochemistry of the Hikurangi, Ontong Java and Manihiki Plateaus suggest derivation from a common mantle source. We propose that the Greater Ontong Java Event, during which ?1% of the Earth's surface was covered with volcanism, resulted from a thermo-chemical superplume/dome that stalled at the transition zone, similar to but larger than the structure imaged presently beneath the South Pacific superswell. The later alkalic volcanism on the Hikurangi Plateau and the Zealandia micro-continent may have been part of a second large-scale volcanic event that may have also triggered the final breakup stage of Gondwana, which resulted in the separation of Zealandia fragments from West Antarctica.
Related to:
Hoernle, Kaj (2012): Erratum to K. Hoernle, F. Hauff, P. van den Bogaard, R. Werner, N. Mortimer, J. Geldmacher, D. Garbe-Schönberg, B. Davy (2010) “Age and geochemistry of volcanic rocks from the Hikurangi and Manihiki oceanic Plateaus”, Geochimica et Cosmochimica Acta74, 7196–7219. Geochimica et Cosmochimica Acta, 77(15), 605-606, https://doi.org/10.1016/j.gca.2011.11.010
Project(s):
Deep Sea Drilling Project (DSDP)
Coverage:
Median Latitude: -30.389093 * Median Longitude: -173.979043 * South-bound Latitude: -42.751567 * West-bound Longitude: 167.233550 * North-bound Latitude: -11.001500 * East-bound Longitude: -162.263000
Date/Time Start: 1973-11-30T00:00:00 * Date/Time End: 2002-12-30T22:13:00
Event(s):
33-317A * Latitude: -11.001500 * Longitude: -162.263000 * Date/Time: 1973-11-30T00:00:00 * Elevation: -2598.0 m * Penetration: 943.5 m * Recovery: 163.2 m * Location: South Pacific/PLATEAU * Campaign: Leg33 * Basis: Glomar Challenger * Method/Device: Drilling/drill rig (DRILL) * Comment: 33 cores; 310.5 m cored; 3 m drilled; 52.6 % recovery
SO168_1 * Latitude Start: -39.813567 * Longitude Start: 167.238183 * Latitude End: -39.813383 * Longitude End: 167.233550 * Date/Time Start: 2002-12-14T09:45:00 * Date/Time End: 2002-12-14T11:37:00 * Elevation Start: -1076.0 m * Elevation End: -972.0 m * Campaign: SO168 (ZEALANDIA) * Basis: Sonne * Method/Device: Dredge (DRG) * Comment: Soft volcanic breccia and sandstone (2 kg) from area Mt Spong A
SO168_3 * Latitude Start: -42.751467 * Longitude Start: -179.984867 * Latitude End: -42.751567 * Longitude End: -179.987150 * Date/Time Start: 2002-12-16T19:46:51 * Date/Time End: 2002-12-16T21:37:34 * Elevation Start: -1018.0 m * Elevation End: -976.0 m * Campaign: SO168 (ZEALANDIA) * Basis: Sonne * Method/Device: Dredge (DRG) * Comment: Vesic/amygd olivine micropptic basalt. Some pillow/tube forms. Possibly all from single flow (250 kg) from area Graveyard A
License:
Creative Commons Attribution 3.0 Unported (CC-BY-3.0)
Size:
5 datasets
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Datasets listed in this publication series
- Hoernle, K; Hauff, F; van den Bogaard, P et al. (2010): (Table 1) Plateau ages of DSDP Hole 33-317A basalts and dredge samples. https://doi.org/10.1594/PANGAEA.783507
- Hoernle, K; Hauff, F; van den Bogaard, P et al. (2010): (Table 1) Age determination of volcanic rocks from Hikurangi and Manihiki Plateaus. https://doi.org/10.1594/PANGAEA.783517
- Hoernle, K; Hauff, F; van den Bogaard, P et al. (2010): (Table EA2) Individual 40Ar/39Ar analysis of volcanic rocks from Hikurangi and Manihiki Plateaus. https://doi.org/10.1594/PANGAEA.783519
- Hoernle, K; Hauff, F; van den Bogaard, P et al. (2010): (Table EA3) Major and trace element content of volcanic rocks from Hikurangi and Manihiki Plateaus. https://doi.org/10.1594/PANGAEA.783520
- Hoernle, K; Hauff, F; van den Bogaard, P et al. (2010): (Table 2) Sr-Nd-Hf-Pb isotope ratios of volcanic rocks from Hikurangi and Manihiki Plateaus. https://doi.org/10.1594/PANGAEA.783518