In situ simultaneous determination of trace elements, U-Pb and Lu-Hf isotopes in zircon and baddeleyite

Science Bulletin - Tập 53 Số 10 - Trang 1565-1573 - 2008
Lie‐Wen Xie1, Yanbin Zhang1, Hui-Huang Zhang1, Jiantong Sun1, Fu‐Yuan Wu2
1State Key Laboratory of Lithospheric Evolution, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, China
2Chinese Academy of sciences

Tóm tắt

Từ khóa


Tài liệu tham khảo

Ireland T R, Williams I S. Considerations in zircon geochronology by SIMS. In: Hanchar J M, Hoskin P W O, eds. Zircon. Rev Mineral Geochem, 2003, 53: 215–241

Kosler J, Sylvester P J. Present trends and the future of zircon in geochronology: laser ablation ICPMS. In: Hanchar J M and Hoskin P W O (eds.), Zircon. Rev Mineral Geochem, 2003, 53: 243–275

Kinny P D, Maas R. Lu-Hf and Sm-Nd isotope systems in zircon. In: Hanchar J M and Hoskin P W O (eds.), Zircon. Rev Mineral Geochem, 2003, 53: 327–341

Hawkesworth C J, Kemp A I S. Using hafnium and oxygen isotopes in zircons to unravel the record of crustal evolution. Chem Geol, 2006, 226: 144–162

Zheng Y F, Wu Y B, Zhao Z F, et al. Metamorphic effect on zircon Lu-Hf and U-Pb isotope systems in ultrahigh-pressure eclogite-facies metagranite and metabasite. Earth Planet Sci Lett, 2005, 240: 378–400

Yang J H, Wu F Y, Wilde S A, et al. Tracing magma mixing in granite genesis: in situ U-Pb dating and Hf-isotope analysis of zircons. Contrib Mineral Petrol, 2007, 153: 177–190

Zheng Y F, Zhao Z F, Wu Y B, et al. Zircon U-Pb age, Hf and O isotope constraints on protolith origin of ultrahigh-pressure eclogite and gneiss in the Dabie orogen. Chem Geol, 2006, 231: 135–158

Zheng Y F, Zhang S B, Zhao Z F, et al. Contrasting zircon Hf and O isotopes in the two episodes of Neoproterozoic granitoids in South China: implications for growth and reworking of continental crust. Lithos, 2007, 96: 127–150

Zhang S B, Zheng Y F, Wu Y B, et al. Zircon isotope evidence for ≥3.5 Ga continental crust in the Yangtze craton of China. Precambr Res, 2006, 146: 16–34

Zhang S B, Zheng Y F, Wu Y B, et al. Zircon U-Pb age and Hf isotope evidence for 3.8 Ga crustal remnant and episodic reworking of Archean crust in South China. Earth Planet Sci Lett, 2006, 252: 56–71

Wu F Y, Yang J H, Wilde S A, et al. Detrital zircon U-Pb and Hf isotopic constraints on the crustal evolution of North Korea. Precambr Res, 2007, 159: 155–177

Yang J H, Wu F Y, Shao J A, et al. Constraints on the timing of uplift of the Yanshan Fold and Thrust Belt, North China. Earth Planet Sci Lett, 2006, 246: 336–352

Wu F Y, Clift P D, Yang J H. Zircon Hf isotopic constraints on the sources of the Indus Molasse, Ladakh Himalaya, India. Tectonics, 26, TC2014, doi: 10.1029/2006TC002051

Xu P, Wu F Y, Xie L W, et al. Hf isotopic compositions of the standard zircons for U-Pb dating. Chin Sci Bull, 2004, 49: 1642–1648

Wu F Y, Yang Y H, Xie L W, et al. Hf isotopic compositions of the standard zircons and baddeleyites used in U-Pb geochronology. Chem Geol, 2006, 234: 105–126

Liu X M, Gao S, Diwu C R, et al. Simultaneous in-situ determination of U-Pb age and trace elements in zircon by LA-ICP-MS in 20 μm spot size. Chin Sci Bull, 2007, 52: 1257–1264

Ludwig K R. ISOPLOT 3.0-A geochronological toolkit for Microsoft Excel. Berkeley Geochronology Center Special Publication, 2003, (4): 70

Machado N, Simonetti A. U-Pb dating and Hf isotopic composition of zircons by laser ablation-MC-ICP-MS. In: Sylvester P, ed. Laser-Ablation-ICPMS in the Earth Sciences: Principles and Applications. Short Course, Mineral Assoc Can, 2001, 29: 121–146

Yuan H L, Gao S, Dai M N, et al. Simultaneous determinations of U-Pb age, Hf isotopes and trace element compositions of zircon by excimer laser ablation quadrupole and multiple collector ICP-MS. Chem Geol, 2007, in press

Machado N, Gauthier G. Determination of 207Pb/206Pb ages on zircon and monazite by laser-ablation ICPMS and application to a study of sedimentary provenance and metamorphism in southeastern Brazil. Geochim Cosmochim Acta, 1996, 60: 5063–5073

Xia X P, Sun M, Zhao G C, et al. Spot zircon U-Pb isotope analysis by ICP-MS coupled with a frequency quintupled (213 nm) Nd-YAG laser system. Geochem J, 2004, 38: 191–200

Bouman C, Schwieters J, Cocherie A, et al. In situ U-Pb zircon dating using laser ablation-multi ion counting-ICP-MS (LA-MIC-ICP-MS) Finnigan NEPTUNE. Thermal Electron Corporation Application Note, 2005, (30021): 6

Eriksson S C. Age of carbonatite and phoscorite magmatism of the Phalaborwa complex (South Africa). Isotope Geosci, 1984, 2: 291–299

Heaman L M, LeCheminant A N. Paragenesis and U-Pb systeatics of baddeleyite (ZrO2). Chem Geol, 1993, 110: 95–126

Reischmann T. Precise U/Pb age determination with baddeleyite (ZrO2), a case study from the Phalaborwa igneous complex, South Africa. S Afr J Geol, 1995, 98: 1–4

Reischmann T, Brugmann G E, Jochum K P, et al. Trace element and isotopic composition of baddeleyite. Mineral Petrol, 1995, 53: 155–164

Horn I, Rudnick R L, McDonough W F. Precise elemental and isotope ratio determination by simultaneous solution nebulization and laser ablation-ICP-MS: application to U-Pb geochronology. Chem Geol, 2000, 167: 405–425

Wingate M T D, Compston W. Crystal orientation effects during ion microprobe U-Pb analysis of baddeleyite. Chem Geol, 2000, 168: 75–97

Hirata T. Determination of Zr isotopic composition and U-Pb ages for terrestrial and extraterrestrial Zr-bearing minerals using laser ablation-inductively coupled plasma mass spectrometry: implications for Nb-Zr isotopic systematics. Chem Geol, 2001, 176: 323–342

Scherer E, Munker C, Mezger K. Calibration of the lutetium-hafnium clock. Science, 2001, 293: 683–687

French J E, Heaman L M, Chacko T. Feasibility of chemical U-Th-total Pb baddeleyite dating by electron microprobe. Chem Geol, 2002, 188: 85–104

Horn I, McDonough W F, Rudnick R L. In-situ hafnium, uranium/lead and lead/lead isotopic analyses of zircons and baddeleyite by laser ablation MC-ICP-MS. Abstract of Ninth Goldschimdt Conference, Harvard University: Massachusetts, 1999, 7646

Rubatto D, Scambelluri M. U-Pb dating of magmatic zircon and metamorphic baddeleyite in the Ligurian eclogites (Voltri Massif, Western Alps). Contrib Mineral Petrol, 2003, 146: 341–355

Wiedenbeck M, Alle P, Corfu F, et al. Three natural zircon standards for U-Th-Pb, Lu-Hf, trace element, and REE analyses. Geostand Newslett, 1995, 19: 1–23

Lopez R, Cameron K L, Jones NW. Evidence for Paleoproterozoic, Grenvillian and Pan-African age Gondwana crust beneath northeastern Mexico. Precambrian Res, 2001, 107: 195–214

Paquette J L, Pin C. A new minimaturized extraction chromatography method for precise U-Pb zircon geochronology. Chem Geol, 2001, 176: 311–319

Amelin Y V, Zaitsev A N. Precise geochronology of phoscorites and carbonatites: the critical role of U-series disequilibrium in age interpretations. Geochim Cosmochim Acta, 2002, 66: 2399–2419

Chen F, Siebel W, Satir M. Zircon U-Pb and Pb-isotope fractionation during stepwise HF acid leaching and geochronological implications. Chem Geol, 2002, 191: 155–164

Nebel-Jacobsen Y, Scherer E E, Munker K, et al. Separation of U, Pb, Lu, and Hf from single zircons for combined U-Pb dating and Hf isotope measurements by TIMS and MC-ICPMS. Chem Geol, 2005, 220: 105–120

Whitehouse M J, Platt J P. Dating high-grade metamorphism—constraints from rare-earth elements in zircon and garnet. Contrib Mineral Petrol, 2003, 145: 61–74

Yuan H L, Wu F Y, Gao S, et al. Determination of U-Pb age and rare earth element concentrations of zircons from Cenozoic untrusions in northeastern China by laser ablation ICP-MS. Chin Sci Bull, 2003, 48: 2411–2421

Yuan H L, Gao S, Liu X M, et al. Precise U-Pb age and trace element determinations of zircon by laser ablation—inductively coupled plasma mass spectrometry. Geostand Geoanal Res, 2004, 28: 353–370

Jackson S E, Pearson N J, Griffin W L, et al. The application of laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) to in situ U-Pb zircon geochronology. Chem Geol, 2004, 211: 47–69

Elhlou S, Belousova E, Griffin W L, et al. Trace element and isotopic composition of GJ-red zircon standard by laser ablation. Geochim Cosmochim Acta, 2006, 70(supp.): A158

Zeh A, Gerdes A, Klemd R, et al. Archaean to Proterozoic Crustal Evolution in the Central Zone of the Limpopo Belt (South Africa-Botswana): Constraints from Combined U-Pb and Lu-Hf Isotope Analyses of Zircon. J Petrol, 2007, 48: 1605–1639

Black L P, Kamo S L, Allen C M, et al. TEMORA 1: a new zircon standard for Phanerozoic U-Pb geochronology. Chem Geol, 2003, 200: 155–170

Black L P, Kamo S L, Williams I S, et al. The application of SHRIMP to Phanerozoic geochronology: a critical appraisal of four zircon standards. Chem Geol, 2003, 200: 171–188

Woodhead J, Hergt J, Shelley M, et al. Zircon Hf-isotope analysis with an excimer laser, depth profiling, ablation of complex geometries, and concomitant age estimation. Chem Geol, 2004, 209: 121–135

Qi C S, Li X H, Liang X R, et al. High-precision measurement of Hf isotopic reference values for the U-Pb geochronology standard zircons by multi-collector ICP-MS. J Chin Mass Spectro Soc (in Chinese with English abstract), 2005, 26: 149–154