U and Th Contents and Th/U Ratios of Zircon in Felsic and Mafic Magmatic Rocks: Improved Zircon-Melt Distribution Coefficients
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This work was supported by the National Natural Science Foundation of China (Grant No. 40972058) and the research grants (2008-I-02 and 2008-II-08) from the State Key Laboratory for Mineral Deposit Research, Nanjing University.


U and Th Contents and Th/U Ratios of Zircon in Felsic and Mafic Magmatic Rocks: Improved Zircon-Melt Distribution Coefficients
Author:
  • WANG Xiang

    WANG Xiang

    1 State Key Laboratory for Mineral Deposit Research, Department of Earth Sciences, Nanjing University, Nanjing 210093, China; 2 GEMOC ARC National Key Center, Department of Earth and Planetary Sciences, Macquarie University, Sydney, New South Wales, Australia
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  • Williams L. GRIFFIN

    Williams L. GRIFFIN

    1 State Key Laboratory for Mineral Deposit Research, Department of Earth Sciences, Nanjing University, Nanjing 210093, China; 2 GEMOC ARC National Key Center, Department of Earth and Planetary Sciences, Macquarie University, Sydney, New South Wales, Australia
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  • CHEN Jie

    CHEN Jie

    1 State Key Laboratory for Mineral Deposit Research, Department of Earth Sciences, Nanjing University, Nanjing 210093, China; 2 GEMOC ARC National Key Center, Department of Earth and Planetary Sciences, Macquarie University, Sydney, New South Wales, Australia
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  • HUANG Pinyun

    HUANG Pinyun

    1 State Key Laboratory for Mineral Deposit Research, Department of Earth Sciences, Nanjing University, Nanjing 210093, China; 2 GEMOC ARC National Key Center, Department of Earth and Planetary Sciences, Macquarie University, Sydney, New South Wales, Australia
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  • LI Xiang

    LI Xiang

    1 State Key Laboratory for Mineral Deposit Research, Department of Earth Sciences, Nanjing University, Nanjing 210093, China; 2 GEMOC ARC National Key Center, Department of Earth and Planetary Sciences, Macquarie University, Sydney, New South Wales, Australia
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    摘要:

    High-precision data on U and Th contents and Th/U ratios of zircon obtained using secondary ion mass spectrometry analysis have been collected from the literature. Zircon in the granitic rocks has median values of 350 ppm U, 140 ppm Th, and Th/U=0.52; the recommended zircon-melt partition coefficients are 81 for DU and 8.2 for DTh. In zircon from mafic and intermediate rocks, the median values are 270 ppm U, 170 ppm Th, and Th/U=0.81, and the recommended zircon-melt partition coefficients are 169 for DU and 59 for DTh. The U and Th contents and Th/U ratios of magmatic zircon are low when zircon crystallizes in equilibrium with the melt. Increasing magma temperature should promote higher Th contents relative to U contents, resulting in higher Th/U ratios for zircon in mafic to intermediate rocks than in granitic rocks. However, when zircon crystallizes in disequilibrium with the melt, U and Th are more easily able to enter the zircon lattice, and their contents and Th/U ratios depend mainly on the degree of disequilibrium. The behavior of U and Th in magmatic zircon can be used as a geochemical indicator to determine the origins and crystallization environments of magmatic zircon.

    Abstract:

    High-precision data on U and Th contents and Th/U ratios of zircon obtained using secondary ion mass spectrometry analysis have been collected from the literature. Zircon in the granitic rocks has median values of 350 ppm U, 140 ppm Th, and Th/U=0.52; the recommended zircon-melt partition coefficients are 81 for DU and 8.2 for DTh. In zircon from mafic and intermediate rocks, the median values are 270 ppm U, 170 ppm Th, and Th/U=0.81, and the recommended zircon-melt partition coefficients are 169 for DU and 59 for DTh. The U and Th contents and Th/U ratios of magmatic zircon are low when zircon crystallizes in equilibrium with the melt. Increasing magma temperature should promote higher Th contents relative to U contents, resulting in higher Th/U ratios for zircon in mafic to intermediate rocks than in granitic rocks. However, when zircon crystallizes in disequilibrium with the melt, U and Th are more easily able to enter the zircon lattice, and their contents and Th/U ratios depend mainly on the degree of disequilibrium. The behavior of U and Th in magmatic zircon can be used as a geochemical indicator to determine the origins and crystallization environments of magmatic zircon.

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WANG Xiang, Williams L. GRIFFIN, CHEN Jie, HUANG Pinyun, LI Xiang.2011. U and Th Contents and Th/U Ratios of Zircon in Felsic and Mafic Magmatic Rocks: Improved Zircon-Melt Distribution Coefficients[J]. ACTA GEOLOGICA SINICA(English edition),(1):164~174

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  • 收稿日期:2010-10-01
  • 最后修改日期:2010-11-30
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