Journal Article10.1007/S00410-002-0364-7
Igneous zircon: trace element composition as an indicator of source rock type
1.8K
TL;DR: In this paper, the concentrations of 26 trace elements have been determined for zircons from a wide range of different rock types and reveal distinctive elemental abundances and chondrite-normalised trace element patterns for specific rock types.
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Abstract: Trace element abundances in igneous zircons, as determined by electron microprobe and laser-ablation microprobe ICPMS analysis, are shown to be sensitive to source rock type and crystallisation environment. The concentrations of 26 trace elements have been determined for zircons from a wide range of different rock types and reveal distinctive elemental abundances and chondrite-normalised trace element patterns for specific rock types. There is a general trend of increasing trace element abundance in zircons from ultramafic through mafic to granitic rocks. The average content of REE is typically less than 50 ppm in kimberlitic zircons, up to 600–700 ppm in carbonatitic and lamproitic zircons and 2,000 ppm in zircons from mafic rocks, and can reach per cent levels in zircons from granitoids and pegmatites. Relatively flat chondrite-normalised REE patterns with chondrite-normalised Yb/Sm ratios from 3 to 30 characterise zircons from kimberlites and carbonatites, but Yb/Sm is commonly over 100 in zircons from pegmatites. Th/U ratios typically range from 0.1 to 1, but can be 100–1000 in zircons from some carbonatites and nepheline syenite pegmatites. The geochemical signatures characteristic of zircon from some rock types can be recognised in bivariate discriminant diagrams, but multivariate statistical analysis is essential for the discrimination of zircons from most rock types. Classification trees based on recursive partitioning techniques provide a rapid means of relating parent rock type to zircon trace element analysis; zircons from many rock types can be discriminated at confidence levels of 75% or more. These trees allow recognition of the provenance of detrital zircons from heavy mineral concentrates, and significantly enhance the usefulness of zircon in regional crustal studies and as an indicator mineral in mineral exploration.
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Citations
Early Paleozoic dioritic and granitic plutons in the Eastern Tianshan Orogenic Belt, NW China: Constraints on the initiation of a magmatic arc in the southern Central Asian Orogenic Belt
Long Du,Xiaoping Long,Chao Yuan,Yunying Zhang,Zongying Huang,Min Sun,Guochun Zhao,Wenjiao Xiao +7 more
TL;DR: Zhang et al. as discussed by the authors studied the early Paleozoic dioritic and granitic plutons in the Eastern Tianshan Orogenic Belt (ETOB) in order to constraint the initiation of a magmatic arc formed in this region.
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Characterization of zircon reference materials via high precision U–Pb LA-MC-ICP-MS
Cristiano Lana,Federico Farina,Axel Gerdes,Ana Ramalho Alkmim,Guilherme O. Gonçalves,Antonio C. Jardim +5 more
TL;DR: In this article, the authors describe the precision and accuracy of Pbc corrected U-Pb ages obtained by LA-MC-ICP-MS, and discuss the homogeneity of two batches of zircon megacrystals (the Rio do Peixe (RP) and Blue Berry (BB)) as potential reference materials.
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Age and composition of Antarctic bedrock reflected by detrital zircons, erratics, and recycled microfossils in the Prydz Bay-Wilkes Land-Ross Sea-Marie Byrd Land sector (70°-240°E)
John J Veevers,Ayesha Saeed +1 more
TL;DR: The age and composition of the 14 × 10 6 ǫ km 2 of Antarctica's surface obscured by ice is unknown except for some dates on detrital minerals as mentioned in this paper.
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Genesis of the Xianghualing Sn–Pb–Zn deposit, South China: A multi-method zircon study
Jing-Hua Wu,Jing-Hua Wu,Huan Li,Thomas J. Algeo,Thomas J. Algeo,Wei-Cheng Jiang,Zhe-Kai Zhou +6 more
TL;DR: Zhang et al. as mentioned in this paper carried out precise U-Pb dating, trace element, and Hf isotopic analyses on magmatic and hydrothermally-altered zircons from the skarn-stage and sulfide-stage ores in the Xianghualing mine.
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Magmatic evolution of the ultramafic–mafic Kharaelakh intrusion (Siberian Craton, Russia): insights from trace-element, U–Pb and Hf-isotope data on zircon
Kreshimir N. Malitch,Elena Belousova,William L. Griffin,Inna Yu. Badanina,Norman J. Pearson,Sergey L. Presnyakov,Evgeniya V. Tuganova +6 more
TL;DR: In this article, the ultramafic-mafic Kharaelakh intrusion in the northwestern part of the Siberian Craton (Russia) hosts major economic platinum-group-element (PGE)-Cu-Ni sulphide deposits.
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