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Research articles

Whole-rock geochemical reference data for Torlesse and Waipapa terranes, North Island, New Zealand

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Pages 213-228 | Received 19 Nov 2014, Accepted 28 Jan 2015, Published online: 29 Apr 2015

References

  • Adams CJ, Maas R 2004a. Rb-Sr age and strontium isotopic characterisation of the Torlesse Supergroup in Canterbury, New Zealand, and implications for the status of the Rakaia Terrane. New Zealand Journal of Geology and Geophysics 47: 201–217.10.1080/00288306.2004.9515048
  • Adams CJ, Maas R 2004b. Age/isotopic characterisation of the Waipapa Group in Northland and Auckland, New Zealand, and implications for the status of the Waipapa Terrane. New Zealand Journal of Geology and Geophysics 47: 173–187.10.1080/00288306.2004.9515046
  • Adams CJ, Mortimer N, Campbell HJ, Griffin WL 2009. Age and isotopic characterisation of metasedimentary rocks from the Torlesse Supergroup and Waipapa Group in the central North Island, New Zealand. New Zealand Journal of Geology and Geophysics 52: 149–170.10.1080/00288300909509883
  • Adams CJ, Pankhurst RJ, Maas R, Millar L 2005. Nd and Sr isotopic signatures of metasedimentary rocks around the South Pacific margin and implications for their provenance. In: Vaughan PM, Leat PT, Pankhurst RJ eds. Terrane processes at the margins of Gondwana. Geological Society, London, Special Publications 246. Pp. 113–141.
  • Annen C, Blundy JD, Sparks RSJ 2006. The genesis of intermediate and silicic magmas in deep crustal hot zones. Journal of Petrology 47: 505–539.10.1093/petrology/egi084
  • Arculus RJ, Powell R 1986. Source component mixing in the regions of arc magma generation. Journal of Geophysical Research 91: 5913–5926.10.1029/JB091iB06p05913
  • Briggs RM, Houghton BF, McWilliams M, Wilson CJN 2005.40Ar/39Ar ages of silicic volcanic rocks in the Tauranga‐Kaimai area, New Zealand: dating the transition between volcanism in the Coromandel Arc and the Taupo Volcanic Zone. New Zealand Journal of Geology and Geophysics 48: 459–469.10.1080/00288306.2005.9515126
  • Chappell BW, White AJR 1992. I- and S-type granites in the Lachlan Fold Belt. Transactions of the Royal Society of Edinburgh: Earth Sciences 83: 1–26.10.1017/S0263593300007720
  • Charlier BLA, Wilson CJN, Mortimer N 2010. Evidence from zircon U-Pb age spectra for crustal structure and felsic magma genesis at Taupo volcano, New Zealand. Geology 38: 915–918.10.1130/G31123.1
  • Collins WJ, Wiebe RA Healy B Richards SW 2006. Replenishment, crystal accumulation and floor aggradation in the megacrystic Kameruka Suite, Australia. Journal of Petrology 47: 2073–2104.10.1093/petrology/egl037
  • Coombs DS, Landis CA, Norris RJ, Sinton JM, Borns DJ, Craw DJ 1976. The Dun Mountain ophiolite belt, New Zealand, its tectonic setting, constitution and origin, with special reference to the southern portion. American Journal of Science 276: 561–603.10.2475/ajs.276.5.561
  • Eberz GW, Nicholls IA, Maas R, McCulloch MT, Whitford DJ 1990. The Nd- and Sr-isotopic composition of I-type microgranitoid enclaves and their host rocks from the Swifts Creek Pluton, southeast Australia. Chemical Geology 85: 119–134.10.1016/0009-2541(90)90126-R
  • Edbrooke SW (compiler) 2001. Geology of the Auckland area. Institute of Geological and Nuclear Sciences 1:250 000 Geological Map 3.
  • Eggins SM 2003. Laser abalation ICP-MS analysis of geological materials prepared as lithium borate glasses. Geostandards and Geoanalytical Research 27: 147–162.10.1111/j.1751-908X.2003.tb00642.x
  • Elburg MA 1996. Evidence of isotopic equilibration between microgranitoid enclaves and host granodiorite. Warburton Granodiorite, Lachlan Fold Belt, Australia Lithos 38: l–22.
  • Ewart A, Hawkesworth CJ 1987. The Pleistocene–recent Tonga–Kermadec arc lavas: interpretation of new isotopic and rare earth data in terms of a depleted source model. Journal of Petrology 28: 495–530.10.1093/petrology/28.3.495
  • Frost CD, Coombs DS 1989. Nd isotope character of New Zealand sediments; implications for terrane concepts and crustal evolution. American journal of science 289: 744–770.10.2475/ajs.289.6.744][10.2475/ajs.289.6.744
  • Gamble JA, Woodhead JD, Smith IEM, Wright IC 1996. Basalt and sediment geochemistry and magma petrogenesis in a transect from oceanic island arc to rifted continental margin arc: The Kermadec–Hikurangi margin subduction system. Journal of Petrology 37: 1523–1546.10.1093/petrology/37.6.1523
  • Goldstein SJ, Jacobsen SB 1988. Nd and Sr isotopic systematics of river water suspended material: implications for crustal evolution. Earth and Planetary Science Letters 87: 249–265.10.1016/0012-821X(88)90013-1
  • Graham IJ 1985. Rb-Sr geochronology and geochemistry of Torlesse metasediments from the central North Island, New Zealand. Chemical Geology 52: 317–331.
  • Graham IJ, Cole JW, Briggs RM, Gamble JA, Smith IEM 1995. Petrology and petrogenesis of volcanic rocks from the Taupo Volcanic Zone: a review. Journal of Volcanology and Geothermal Research 68: 59–87.10.1016/0377-0273(95)00008-I
  • Graham IJ, Gulson BL, Hedenquist JW, Mizon K 1992. Petrogenesis of Late Cenozoic volcanic rocks from the Taupo Volcanic Zone, New Zealand, in the light of new lead isotope data. Geochimica et Cosmochimica Acta 56: 2797–2819.10.1016/0016-7037(92)90360-U
  • Graham IJ, Hackett WR 1987. Petrology of calc-alkaline lavas from Ruapehu volcano and related vents, Taupo Volcanic Zone, New Zealand. Journal of Petrology 28: 531–567.10.1093/petrology/28.3.531
  • Grove TL, Kinzler RJ 1986. Petrogenesis of andesites. Annual Review of Earth and Planetary Sciences 14: 417–454.10.1146/annurev.ea.14.050186.002221
  • Hawkesworth CJ, Gallagher K, Hergt JM, McDermott F 1993. Mantle and slab contributions in arc magmas. Annual Review of Earth and Planetary Sciences 21: 175–204.10.1146/annurev.ea.21.050193.001135
  • Hayward BW, Black PM, Smith IEM, Ballance PF, Itaya T, Masako D et al. 2001. K‐Ar ages of early Miocene arc‐type volcanoes in northern New Zealand. New Zealand Journal of Geology and Geophysics 44: 285–311.
  • Hensel HD, McCulloch MT, Chappell BW 1985. The New England Batholith: constraints on its derivation from Nd and Sr isotopic studies of granitoids and country rocks. Geochimica et Cosmochimica Acta 49: 369–384.10.1016/0016-7037(85)90030-4
  • Keleman PB, Hanghoj K, Greene AR 2005. One view of the geochemistry of subduction-related magmatic arcs, with an emphasis on primitive andesite and lower crust. In: Holland HD, Turekian KK eds. Treatise on geochemistry. Vol. 3: the crust. Oxford, Elsevier-Pergamon. Pp. 593–659.
  • Kemp AIS, Hawkesworth CJ 2005. Granitic perspectives on the generation and secular evolution of the continental crust. In: Holland HD, Turekian KK eds. Treatise on Geochemistry. Vol. 3: The Crust. Oxford, Elsevier-Pergamon. Pp. 349–410.
  • Leonard GS, Begg JG, Wilson CJN ( compilers) 2010. Geology of the Rotorua area. Institute of Geological and Nuclear Sciences 1:250,000 Geological Map 5.
  • Leverenz A, Ballance PF. 2001. Terrane affiliation and terrane boundaries of Mesozoic accretionary complexes, northeastern North Island, New Zealand: Some implications from recycled elastics. New Zealand Journal of Geology and Geophysics 44: 589–599.10.1080/00288306.2001.9514956
  • Maas R, Kamenetsky MB, Sobolev AV, Kamenetsky VS, Sobolev NV 2005. Sr, Nd, and Pb isotope evidence for a mantle origin of alkali chlorides and carbonates in the Udachnaya kimberlite, Siberia. Geology 33: 549–552.10.1130/G21257.1
  • Maas R, Nicholls IA, Legg C 1997. Igneous and metamorphic enclaves in the S-type Deddick Granodiorite, Lachlan Fold Belt, SE Australia: petrographic, geochemical and Nd-Sr isotopic evidence for crustal melting and magma mixing. Journal of Petrology 38: 815–841.10.1093/petroj/38.7.815
  • Martin AP, Cooper AF, Price RC 2013. Petrogenesis of Cenozoic, alkalic volcanic lineages at Mount Morning, West Antarctica and their entrained lithospheric mantle xenoliths: lithospheric versus asthenospheric mantle sources. Geochimica et Cosmochimica Acta 122: 127–152.10.1016/j.gca.2013.08.025
  • McCormack KD, Gee MAM, McNaughton NJ, Smith R, Fletcher IR 2009. U–Pb dating of magmatic and xenocryst zircons from Mangakino ignimbrites and their correlation with detrital zircons from the Torlesse metasediments, Taupo Volcanic Zone, New Zealand. Journal of Volcanology and Geothermal Research 183: 97–111.10.1016/j.jvolgeores.2009.03.005
  • McCulloch MT, Chappell BW 1982. Nd isotopic characteristics of S- and I-type granites. Earth and Planetary Science Letters 58: 51–64.10.1016/0012-821X(82)90102-9
  • McCulloch MT, Gamble JA 1991. Geochemical and geodynamical constraints on subduction zone magmatism. Earth and Planetary Science Letters 102: 358–374.10.1016/0012-821X(91)90029-H
  • McCulloch MT, Kyser TK, Woodhead JD, Kinsley L 1994. Pb-Sr-Nd-O isotopic constraints on the origin of rhyolites from the Taupo Volcanic Zone of New Zealand: evidence for assimilation followed by fractionation from basalt. Contributions to Mineralogy and Petrology 115: 303–312.10.1007/BF00310769
  • McCulloch MT, Woodhead JD 1993. Lead isotopic evidence for deep crustal-scale fluid transport during granite petrogenesis. Geochimica et Cosmochimica Acta 57: 659–674.10.1016/0016-7037(93)90376-8
  • McDonough WF, Sun, S-S 1995. The composition of the Earth. Chemical Geology 120: 223–253.10.1016/0009-2541(94)00140-4
  • MacKinnon TC 1983. Origin of the Torlesse terrane and coeval rocks, South Island, New Zealand. Geological Society of America Bulletin 94: 967–985.10.1130/0016-7606(1983)94<967:OOTTTA>2.0.CO;2
  • McLennan SM, Hemming S, McDaniel DK, Hanson GN 1993. Geochemical approaches to sedimentation, provenances and tectonics. Geological Society of America Special Publication 284: 21–40.10.1130/SPE284-p21
  • McLennan SM, McCulloch MT, Taylor SR, Maynard JB 1989. Effects of sedimentary sorting on neodymium isotopes in deep-sea turbidites. Nature 337: 547–549.10.1038/337547a0
  • Mortimer N 1994. Origin of the Torlesse terrane and coeval rocks, north Island, New Zealand. International Geology Review 36: 891–910.10.1080/00206819409465494
  • Mortimer N 2004. New Zealand’s geological foundations. Gondwana Research 7: 261–272.10.1016/S1342-937X(05)70324-5
  • Mortimer N, Gans P, Calvert A, Walker N 1999. Geology and thermochronometry of the east edge of the Median Batholith (Median Tectonic Zone): a new perspective on Permian to Cretaceous crustal growth of New Zealand. The Island Arc 8: 404–425.10.1046/j.1440-1738.1999.00249.x
  • Mortimer N, McLaren S, Dunlap WJ 2012. Ar-Ar dating of K-feldspar in low grade metamorphic rocks: example of an exhumed Mesozoic accretionary wedge and forearc, South Island, New Zealand. Tectonics 31: TC3020. doi:10.1029/2011TC003057.
  • Mortimer N, Rattenbury MS, King PR, Bland KJ, Barrell DJA, Bache F et al. 2014. High-level stratigraphic scheme for New Zealand rocks. New Zealand Journal of Geology and Geophysics 57: 402–419.10.1080/00288306.2014.946062
  • Mortimer N, Tulloch AJ, Ireland TR 1997. Basement geology of Taranaki and Wanganui Basins, New Zealand. New Zealand Journal of Geology and Geophysics 40: 223–236.10.1080/00288306.1997.9514754
  • Muir RJ, Ireland TR, Weaver SD, Bradshaw JD, Evans JA, Eby GN et al. 1998. Geochronology and geochemistry of a Mesozoic magmatic arc system, Fiordland, New Zealand. Journal of the Geological Society 155: 1037–1053.10.1144/gsjgs.155.6.1037
  • Norrish, K, Hutton, JT 1969. An accurate X-ray spectrographic method for the analysis of a wide range of geologic samples. Geochimica et Cosmochimica Acta 33: 431–453.10.1016/0016-7037(69)90126-4
  • Plank T, Langmuir CH 1998. The chemical composition of subducting sediment and its consequences for the crust and mantle. Chemical Geology 145: 325–394.10.1016/S0009-2541(97)00150-2
  • Price RC, Gamble JA, Smith IEM, Stewart RB, Eggins S, Wright IC 2005. An integrated model for the temporal evolution of andesites and rhyolites and crustal development in New Zealand’s North Island. Journal of Volcanology and Geothermal Research 140: 1–24.10.1016/j.jvolgeores.2004.07.013
  • Price RC, Gamble JA, Smith IEM, Maas R, Waight T, Stewart RB et al. 2012. The anatomy of an andesite volcano: a time-stratigraphic study of andesite petrogenesis and crustal evolution at Ruapehu volcano, New Zealand. Journal of Petrology 53: 2139–2189.10.1093/petrology/egs050
  • Price RC, Ireland TR, Maas R, Arculus RJ 2006. SHRIMP ion probe zircon geochronology and Sr and Nd isotope geochemistry for southern Longwood Range and Bluff Peninsula intrusive rocks of Southland, New Zealand. New Zealand Journal of Geology and Geophysics 49: 291–303.10.1080/00288306.2006.9515168
  • Price R, Spandler C, Arculus R, Reay A 2011. The Longwood Igneous Complex, Southland, New Zealand: a Permo-Jurassic, intra-oceanic, subduction-related, I-type batholithic complex. Lithos 126: 1–21.10.1016/j.lithos.2011.04.006
  • Reubi O, Blundy J 2009. A dearth of intermediate melts at subduction zone volcanoes and the petrogenesis of arc andesites. Nature 461: 1269–1273.10.1038/nature08510
  • Roser BP, Korsch RJ 1986. Determination of tectonic setting of sandstone-mudstone suites using SiO2 content and K2O/Na2O ratio. The Journal of Geology 94: 635–650.10.1086/629071
  • Roser BP, Korsch RJ 1999. Geochemical characterization, evolution and source of a Mesozoic accretionary wedge: the Torlesse terrane, New Zealand. Geological Magazine 136: 493–512.10.1017/S0016756899003003
  • Rowland JV, Sibson, RH 2001. Extensional fault kinematics within the Taupo Volcanic Zone, New Zealand: soft-linked segmentation of a continental rift system. New Zealand Journal of Geology and Geophysics 44: 271–283.10.1080/00288306.2001.9514938
  • Rudnick RL, Gao S 2005. Composition of the continental crust. In: Holland HD, Turekian KK eds. Treatise on geochemistry. Vol 3: the crust. Oxford, Elsevier-Pergamon. Pp. 1–64.
  • Smith IEM, Stewart RB, Price RC, Worthington TJ 2010. Are arc-type rocks the products of magma crystallisation? Observations from a simple oceanic arc volcano: Raoul Island, Kermadec Arc, SW Pacific. Journal of Volcanology and Geothermal Research 190: 219–234.10.1016/j.jvolgeores.2009.05.006
  • Soesoo A 2000. Fractional crystallization of mantle-derived melts as a mechanism for some i-type granite petrogenesis: an example from Lachlan Fold Belt, Australia. Journal of the Geological Society 157: 135–149.10.1144/jgs.157.1.135
  • Spörli KB 1978. Mesozoic tectonics, North Island, New Zealand. Geological Society of America Bulletin 89: 415–425.
  • Sutton AN, Blake S, Wilson CJN 1995. An outline geochemistry of rhyolite eruptives from Taupo volcanic centre, New Zealand. Journal of Volcanology and Geothermal Research 68: 153–175.10.1016/0377-0273(95)00011-I
  • Taylor SR, McLennan SM 1985. The continental crust: its composition and evolution. Oxford, Blackwell Scientific. 312 p.
  • Vance D, Thirlwall MF 2002. An assessment of mass discrimination in MC-ICPMS using Nd isotopes. Chemical Geology 185: 227–240.10.1016/S0009-2541(01)00402-8
  • Waight TE, Dean AA, Maas R, Nicholls IA 2000. Sr and Nd isotopic investigations towards the origin of feldspar megacrysts in microgranular enclaves in two I-type plutons of the Lachlan Fold Belt, southeast Australia. Australian Journal of Earth Sciences 47: 1105–1112.10.1046/j.1440-0952.2000.00831.x
  • Waight TE, Maas R, Nicholls IA 2001. Geochemical investigations of microgranitoid enclaves in the S-type Cowra Granodiorite, Lachlan Fold Belt, SE Australia. Lithos 56: 165–186.10.1016/S0024-4937(00)00053-0
  • Wandres AM, Bradshaw JD, Weaver S, Maas R, Ireland TR, Eby N 2004. Provenance of the sedimentary Rakaia sub-terrane, Torlesse Terrane, South Island, New Zealand: the use of igneous clast compositions to define the source. Sedimentary Geology 168: 193–226.10.1016/j.sedgeo.2004.03.003
  • Woodhead JD 2002. A simple method for obtaining highly accurate Pb isotope data by MC-ICP-MS. Journal of Analytical Atomic Spectroscopy 17: 1–6.
  • Zartman RE, Doe BR 1981. Plumbotectonics – the model. Tectonophysics 75: 135–162.

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