Detrital zircon age, oxygen and hafnium isotope systematics record rigid continents after 2.5 Ga

Gondwana Research - Tập 57 - Trang 90-118 - 2018
Linda M. Iaccheri1,2, Anthony I.S. Kemp1,3
1School of Earth Sciences, The University of Western Australia, 35 Stirling Highway, Crawley, WA 6009, Australia
2School of Geosciences, University of the Witwatersrand, Private Bag 3, Wits, 2050, South Africa
3Department of Geosciences, James Cook University, Townsville, QLD 4811, Australia

Tài liệu tham khảo

Ashwal, 2017, Crustal evolution and the temporality of anorthosites, Earth-Science Reviews, 173, 307, 10.1016/j.earscirev.2017.09.002 Bagas, 2008, An example of a Palaeoproterozoic back-arc basin: petrology and geochemistry of the ca. 1864 Ma Stubbins Formation as an aid towards an improved understanding of the Granites–Tanami Orogen, Western Australia, Precambrian Research, 166, 168, 10.1016/j.precamres.2007.06.025 Bagas, 2014, Paleoproterozoic stratigraphy and gold mineralisation in the Granites-Tanami Orogen, North Australian Craton, Australian Journal of Earth Sciences, 61, 89, 10.1080/08120099.2013.784220 Barley, 1992, Supercontinent cycles and the distribution of metal deposits through time, Geology, 20, 291, 10.1130/0091-7613(1992)020<0291:SCATDO>2.3.CO;2 Belousova, 2010, The growth of the continental crust: constraints from zircon Hf-isotope data, Lithos, 119, 457, 10.1016/j.lithos.2010.07.024 Betts, 2006, The 1800–1100 Ma tectonic evolution of Australia, Precambrian Research, 144, 92, 10.1016/j.precamres.2005.11.006 Betts, 2002, Evolution of the Australian lithosphere, Australian Journal of Earth Sciences, 49, 661, 10.1046/j.1440-0952.2002.00948.x Betts, 2006, Synthesis of the proterozoic evolution of the Mt Isa Inlier, Australian Journal of Earth Sciences, 53, 187, 10.1080/08120090500434625 Betts, 2008, Comparing 1800–1600 Ma accretionary and basin processes in Australia and Laurentia: possible geographic connections in Columbia, Precambrian Research, 166, 81, 10.1016/j.precamres.2007.03.007 Betts, 2011, Palaeoproterozoic accretion processes of Australia and comparisons with Laurentia, International Geology Review, 53, 1357, 10.1080/00206814.2010.527646 Beyer, 2012, Summary of results. NTGS laser ablation ICPMS and SHRIMP U-Pb, Hf and O geochronology project: Pine Creek Orogen, Arunta Region, Georgina Basin and McArthur Basin, July 2008–May 2011 Black, 2004, Improved 206Pb/238U microprobe geochronology by the monitoring of a trace-element-related matrix effect; SHRIMP, ID–TIMS, ELA–ICP–MS and oxygen isotope documentation for a series of zircon standards, Chemical Geology, 205, 115, 10.1016/j.chemgeo.2004.01.003 Blake, 2000, Regional geology of the Halls Creek Orogen, 35 Bouvier, 2008, The Lu-Hf and Sm-Nd isotopic composition of CHUR: constraints from unequilibrated chondrites and implications for the bulk composition of terrestrial planets, Earth and Planetary Science Letters, 273, 48, 10.1016/j.epsl.2008.06.010 Campbell, 2008, Formation of supercontinents linked to increases in atmospheric oxygen, Nature Geoscience, 1, 554, 10.1038/ngeo259 Carson, 2011, Summary of results. Joint NTGS-GA geochronology project: East Arunta Region, Pine Creek Orogen and Murphy Inlier, July 2007–June 2009 Cawood, 2014, Earth's middle age, Geology, 42, 503, 10.1130/G35402.1 Cawood, 2008, Assembling Australia: proterozoic building of a continent, Precambrian Research, 166, 1, 10.1016/j.precamres.2008.08.006 Cawood, 2011, Orogenesis without collision: stabilizing the Terra Australis accretionary orogen, eastern Australia, Geological Society of America Bulletin, 123, 2240, 10.1130/B30415.1 Choukroune, 1995, Soft lithosphere during periods of Archaean crustal growth or crustal reworking, Geological Society, London, Special Publications, 95, 67, 10.1144/GSL.SP.1995.095.01.05 Claoue-Long, 2008, A correlation of Aileron Province stratigraphy in central Australia, Precambrian Research, 166, 230, 10.1016/j.precamres.2007.06.022 Collerson, 1999, Evolution of the continents and the atmosphere inferred from Th-U-Nb systematics of the depleted mantle, Science, 283, 1519, 10.1126/science.283.5407.1519 Collins, 2002, Hot orogens, tectonic switching, and creation of continental crust, Geology, 30, 535, 10.1130/0091-7613(2002)030<0535:HOTSAC>2.0.CO;2 Collins, 2002, Nature of extensional accretionary orogens, Tectonics, 21, 6, 10.1029/2000TC001272 Collins, 2011, Two contrasting Phanerozoic orogenic systems revealed by hafnium isotope data, Nature Geoscience, 4, 333, 10.1038/ngeo1127 Condie, 1998, Episodic continental growth and supercontinents: a mantle avalanche connection?, Earth and Planetary Science Letters, 163, 97, 10.1016/S0012-821X(98)00178-2 Condie, 2018, A planet in transition: the onset of plate tectonics on Earth between 3 and 2 Ga?, Geoscience Frontiers, 9, 51, 10.1016/j.gsf.2016.09.001 Condie, 2010, Episodic zircon age spectra of orogenic granitoids: the supercontinent connection and continental growth, Precambrian Research, 180, 227, 10.1016/j.precamres.2010.03.008 Condie, 2017, Zircon age peaks: production or preservation of continental crust?, Geosphere, 13, 227, 10.1130/GES01361.1 Cross, 2007, SHRIMP U–Pb analyses of detrital zircon: a window to understanding the Paleoproterozoic development of the Tanami Region, northern Australia, Mineralium Deposita, 42, 27, 10.1007/s00126-006-0102-6 Davidson, 2006 De Laeter, 1998, A double focusing mass spectrometer for geochronology 11 dedicated to the memory of Al Nier, International Journal of Mass Spectrometry, 178, 43, 10.1016/S1387-3806(98)14092-7 Dhuime, 2012, A change in the geodynamics of continental growth 3 billion years ago, Science, 335, 1334, 10.1126/science.1216066 Dhuime, 2015, Emergence of modern continental crust about 3 billion years ago, Nature Geoscience, 8, 552, 10.1038/ngeo2466 Drueppel, 2009, High-K granites of the Rum Jungle Complex, N-Australia: insights into the Late Archean crustal evolution of the North Australian Craton, Lithos, 111, 203, 10.1016/j.lithos.2009.04.007 Etheridge, 1987, Orogenesis and tectonic process in the Early and Middle Proterozoic of Northern Australia, American Geophysical Union, 131 Fedo, 2003, Detrital zircon analysis of the sedimentary record, Reviews in Mineralogy and Geochemistry, 53, 277, 10.2113/0530277 Flament, 2008, A case for late-Archaean continental emergence from thermal evolution models and hypsometry, Earth and Planetary Science Letters, 275, 326, 10.1016/j.epsl.2008.08.029 Foley, 2014, Initiation of plate tectonics from post-magma ocean thermochemical convection, Journal of Geophysical Research. Solid Earth, 119, 8538, 10.1002/2014JB011121 GA Gaillard, 2011, Atmospheric oxygenation caused by a change in volcanic degassing pressure, Nature, 478, 229, 10.1038/nature10460 Giles, 2004, 1.8–1.5-Ga links between the North and South Australian Cratons and the Early–Middle Proterozoic configuration of Australia, Tectonophysics, 380, 27, 10.1016/j.tecto.2003.11.010 Goleby, 2009, The Tanami deep seismic reflection experiment: an insight into gold mineralization and Paleoproterozoic collision in the North Australian Craton, Tectonophysics, 472, 169, 10.1016/j.tecto.2008.05.031 Griffin, 2000, Tectonic implications of Palaeoproterozoic post-collisional, high-K felsic igneous rocks from the Kimberley region of northwestern Australia, Precambrian Research, 101, 1, 10.1016/S0301-9268(99)00084-4 Hawkesworth, 2006, The differentiation and rates of generation of the continental crust, Chemical Geology, 226, 134, 10.1016/j.chemgeo.2005.09.017 Hawkesworth, 2006, Using hafnium and oxygen isotopes in zircons to unravel the record of crustal evolution, Chemical Geology, 226, 144, 10.1016/j.chemgeo.2005.09.018 Hawkesworth, 2009, Geochemistry: a matter of preservation, Science, 323, 49, 10.1126/science.1168549 Hawkesworth, 2010, The generation and evolution of the continental crust, Journal of the Geological Society, 167, 229, 10.1144/0016-76492009-072 Hinton, 2006, New approaches to U-Th-Pb zircon dating using the Cameca ims-1270, Geochimica et Cosmochimica Acta, 70, A252, 10.1016/j.gca.2006.06.508 Hollis, 2009, SHRIMP U-Pb zircon geochronological evidence for Neoarchean basement in western Arnhem Land, northern Australia, Precambrian Research, 174, 364, 10.1016/j.precamres.2009.08.010 Hollis, 2010, U-Pb_Hf_O character of Neoarchean basement to the Pine Creek Orogen, North Australin Craton, 410 Hollis, 2014, Detrital zircon U–Pb–Hf and O isotope character of the Cahill Formation and Nourlangie Schist, Pine Creek Orogen: implications for the tectonic correlation and evolution of the North Australian Craton, Precambrian Research, 246, 35, 10.1016/j.precamres.2014.02.013 Hollis, 2014, Basin formation by orogenic collapse: zircon U–Pb and Lu–Hf isotope evidence from the Kimberley and Speewah Groups, northern Australia, 46 Hollis, 2014, Low δ18O zircon grains in the Neoarchean Rum Jungle Complex, northern Australia: an indicator of emergent continental crust, Lithosphere, 6, 17, 10.1130/L296.1 Huston, 2012, Australia through time: a summary of its tectonic and metallogenic evolution, Episodes, 35, 23, 10.18814/epiiugs/2012/v35i1/004 Johnson, 2017, An isotopic perspective on growth and differentiation of Proterozoic orogenic crust: from subduction magmatism to cratonization, Lithos, 268, 76, 10.1016/j.lithos.2016.11.003 Joly, 2010, The importance of early crustal architecture for subsequent basin-forming, magmatic and fluid flow events. The Granites-Tanami Orogen example, Precambrian Research, 182, 15, 10.1016/j.precamres.2010.06.012 Kamber, 2015, The evolving nature of terrestrial crust from the Hadean, through the Archaean, into the Proterozoic, Precambrian Research, 258, 48, 10.1016/j.precamres.2014.12.007 Kamber, 2001, The geochemistry of late Archaean microbial carbonate: implications for ocean chemistry and continental erosion history, Geochimica et Cosmochimica Acta, 65, 2509, 10.1016/S0016-7037(01)00613-5 Karlstrom, 2001, Long-lived (1.8–1.0 Ga) convergent orogen in southern Laurentia, its extensions to Australia and Baltica, and implications for refining Rodinia, Precambrian Research, 111, 5, 10.1016/S0301-9268(01)00154-1 Keller, 2012, Statistical geochemistry reveals disruption in secular lithospheric evolution about 2.5 Gyr ago, Nature, 485, 490, 10.1038/nature11024 Kemp, 2014, Growth and differentiation of the continental crust from isotope studies of accessory minerals Kemp, 2006, Episodic growth of the Gondwana supercontinent from hafnium and oxygen isotopes in zircon, Nature, 439, 580, 10.1038/nature04505 Kemp, 2009, Isotopic evidence for rapid continental growth in an extensional accretionary orogen: the Tasmanides, eastern Australia, Earth and Planetary Science Letters, 284, 455, 10.1016/j.epsl.2009.05.011 Kemp, 2010, Hadean crustal evolution revisited: new constraints from Pb-Hf isotope systematics of the Jack Hills zircons, Earth and Planetary Science Letters, 296, 45, 10.1016/j.epsl.2010.04.043 Kemp, 2015, Hf isotopes in detrital and inherited zircons of the Pilbara Craton provide no evidence for Hadean continents, Precambrian Research, 261, 112, 10.1016/j.precamres.2015.02.011 Kinny, 1988, Early Archaean zircon ages from orthogneisses and anorthosites at Mount Narryer, Western Australia, Precambrian Research, 38, 325, 10.1016/0301-9268(88)90031-9 Kositcin, 2013, Summary of results. Joint NTGS-GA geochronology project: Arunta Region, Ngalia Basin, Tanami region and Murphy Province, July 2011–June 2012 Kositcin, 2013, Summary of results. Joint NTGS–GA geochronology project: Arunta Region, Davenport Province and Pine Creek Orogen July 2009–June 2011 Kump, 2008, The rise of atmospheric oxygen, Nature, 451, 277, 10.1038/nature06587 Kump, 2007, Increased subaerial volcanism and the rise of atmospheric oxygen 2.5 billion years ago, Nature, 448, 1033, 10.1038/nature06058 Lambeck, 2008, Sedimentary geochemistry, geochronology and sequence stratigraphy as tools to typecast stratigraphic units and constrain basin evolution in the gold mineralised Palaeoproterozoic Tanami Region, Northern Australia, Precambrian Research, 166, 185, 10.1016/j.precamres.2007.10.012 Lancaster, 2011, Understanding the roles of crustal growth and preservation in the detrital zircon record, Earth and Planetary Science Letters, 305, 405, 10.1016/j.epsl.2011.03.022 Lancaster, 2015, Contrasting crustal evolution processes in the Dharwar craton: insights from detrital zircon U–Pb and Hf isotopes, Gondwana Research, 28, 1361, 10.1016/j.gr.2014.10.010 Lee, 2016, Two-step rise of atmospheric oxygen linked to the growth of continents, Nature Geoscience, 417, 10.1038/ngeo2707 Ludwig, 2003, User's manual for Isoplot 3, a geochronological toolkit for Microsoft Excel Marschall, 2012, Arc magmas sourced from mélange diapirs in subduction zones, Nature Geoscience, 5, 862, 10.1038/ngeo1634 McCulloch, 1994, Progressive growth of the Earths continental-crust and depleted mantle - geochemical contraints, Geochimica et Cosmochimica Acta, 58, 4717, 10.1016/0016-7037(94)90203-8 McLennan, 1982, Geochemical constraints on the growth of the continental crust, The Journal of Geology, 347, 10.1086/628690 Miller, 2003, Hot and cold granites? Implications of zircon saturation temperatures and preservation of inheritance, Geology, 31, 529, 10.1130/0091-7613(2003)031<0529:HACGIO>2.0.CO;2 Myers, 1996, Tectonic evolution of Proterozoic Australia, Tectonics, 15, 1431, 10.1029/96TC02356 Naeraa, 2012, Hafnium isotope evidence for a transition in the dynamics of continental growth 3.2 Gyr ago, Nature, 485, 627, 10.1038/nature11140 Payne, 2015, Crustal thickening and clay: controls on O isotope variation in global magmatism and siliciclastic sedimentary rocks, Earth and Planetary Science Letters, 412, 70, 10.1016/j.epsl.2014.12.037 Phillips, 2016 Phillips, 2017, Revised tectono-stratigraphy of the Kimberley Basin, northern Western Australia, 33 Pidgeon, 1998, The interpretation of complex zircon U–Pb systems in Archaean granitoids and gneisses from the Jack Hills, Narryer Gneiss Terrane, Western Australia, Precambrian Research, 91, 309, 10.1016/S0301-9268(98)00056-4 Rainbird, 2007, U-Pb detrital zircon geochronology and provenance of the late Paleoproterozoic Dubawnt Supergroup: linking sedimentation with tectonic reworking of the western Churchill Province, Canada, Geological Society of America Bulletin, 119, 314, 10.1130/B25989.1 Rey, 2008, Neoarchean lithospheric strengthening and the coupling of Earth's geochemical reservoirs, Geology, 36, 635, 10.1130/G25031A.1; Roberts, 2015, Continental growth and reworking on the edge of the Columbia and Rodinia supercontinents; 1.86–0.9 Ga accretionary orogeny in southwest Fennoscandia, International Geology Review, 57, 1582, 10.1080/00206814.2014.958579 Rudnick, 1995, Making continental crust, Nature, 378, 571, 10.1038/378571a0 Rudnick, 2003, Composition of the continental crust, vol. 3, 1 Scherer, 2001, Calibration of the lutetium-hafnium clock, Science, 293, 683, 10.1126/science.1061372 Segal, 2003, Accurate isotope ratio measurements of ytterbium by multiple collection inductively coupled plasma mass spectrometry applying erbium and hafnium in an improved double external normalization procedure, Journal of Analytical Atomic Spectrometry, 18, 1217, 10.1039/b307016f Sheppard, 1999, Palaeoproterozoic subduction-related and passive margin basalts in the Halls Creek Orogen, northwest Australia, Australian Journal of Earth Sciences, 46, 679, 10.1046/j.1440-0952.1999.00737.x Spandler, 2013, Element recycling from subducting slabs to arc crust: a review, Lithos, 170, 208, 10.1016/j.lithos.2013.02.016 Spencer, 2014, Proterozoic onset of crustal reworking and collisional tectonics: reappraisal of the zircon oxygen isotope record, Geology, 42, 451, 10.1130/G35363.1 Spencer, 2017, Growth, destruction, and preservation of Earth's continental crust, Earth-Science Reviews, 172, 87, 10.1016/j.earscirev.2017.07.013 Stein, 1994, Mantle plumes and episodic crustal growth, Nature, 372, 63, 10.1038/372063a0 Sun, 2000, Trace elements geochemical and Nd isotopic study of the mafic-ultramafic intrusions: implications for their petrogenesis and tectonic environment, 226 Tang, 2016, Archean upper crust transition from mafic to felsic marks the onset of plate tectonics, Science, 351, 372, 10.1126/science.aad5513 Torres, 2014, Sulphide oxidation and carbonate dissolution as a source of CO2 over geological timescales, Nature, 507, 346, 10.1038/nature13030 Valley, 2003, Oxygen isotopes in zircon, Reviews in Mineralogy and Geochemistry, 53, 343, 10.2113/0530343 Valley, 1998, Zircon megacrysts from kimberlite: oxygen isotope variability among mantle melts, Contributions to Mineralogy and Petrology, 133, 1, 10.1007/s004100050432 Valley, 2005, 4.4 billion years of crustal maturation: oxygen isotope ratios of magmatic zircon, Contributions to Mineralogy and Petrology, 150, 561, 10.1007/s00410-005-0025-8 Veizer, 1989, Stronzium isotopes in seawater through time, Annual Review of Earth and Planetary Sciences, 17, 141, 10.1146/annurev.ea.17.050189.001041 Vervoort, 1999, Evolution of the depleted mantle: Hf isotope evidence from juvenile rocks through time, Geochimica et Cosmochimica Acta, 63, 533, 10.1016/S0016-7037(98)00274-9 Wade, 2008, Origin of metasedimentary and igneous rocks from the Entia Dome, eastern Arunta region, central Australia: a U-Pb LA-ICPMS, SHRIMP and Sm-Nd isotope study, Australian Journal of Earth Sciences, 55, 703, 10.1080/08120090801982868 Watson, 1996, Dissolution, growth and survival of zircons during crustal fusion: kinetic principles, geological models and implications for isotopic inheritance, Geological Society of America Special Papers, 315, 43 Watson, 1983, Zircon saturation revisited: temperature and composition effects in a variety of crustal magma types, Earth and Planetary Science Letters, 64, 295, 10.1016/0012-821X(83)90211-X Whelan, 2014, Zircon SHRIMP U-Pb, SIMS O and LA-ICPMS Hf isotopic data for granitic gneiss of the Billabong Complex, Tanami Region White, 2012, Portrait of Earth's coming of age, Nature, 485, 452, 10.1038/485452a Whitmeyer, 2007, Tectonic model for the Proterozoic growth of North America, Geosphere, 3, 220, 10.1130/GES00055.1 Wiedenbeck, 2004, Further characterisation of the 91500 zircon crystal, Geostandards and Geoanalytical Research, 28, 9, 10.1111/j.1751-908X.2004.tb01041.x Woodhead, 2005, A preliminary appraisal of seven natural zircon reference materials for in situ Hf isotope determination, Geostandards and Geoanalytical Research, 29, 183, 10.1111/j.1751-908X.2005.tb00891.x Worden, 2008, Summary of results. Joint NTGS-GA geochronology project: Tanami Region, Arunta Region, Pine Creek Orogen and Halls Creek orogen correlatives, January 2005–March 2007 Wyborn, 1988, Petrology, geochemistry and origin of a major Australian 1880–1840 Ma felsic volcano-plutonic suite - a model for intracontinental felsic magma generation, Precambrian Research, 40-1, 37, 10.1016/0301-9268(88)90060-5 Wyborn, 1992, Proterozoic granite types in Australia - implications for lower crust composition, structure and evolution, Transactions of the Royal Society of Edinburgh Earth Science, 83, 201, 10.1017/S0263593300007896 Zhao, 2002, Review of global 2.1–1.8 Ga orogens: implications for a pre-Rodinia supercontinent, Earth-Science Reviews, 59, 125, 10.1016/S0012-8252(02)00073-9