3.8 Article

Role of mantle-derived magma in genesis of early Yanshanian granites in the Nanling Range, South China: in situ zircon Hf-O isotopic constraints

Journal

SCIENCE IN CHINA SERIES D-EARTH SCIENCES
Volume 52, Issue 9, Pages 1262-1278

Publisher

SCIENCE PRESS
DOI: 10.1007/s11430-009-0117-9

Keywords

granites; SIMS; zircon; Hf-O isotopes; mantle

Funding

  1. National Basic Research Program of China [2007CB411403]
  2. Knowledge Innovation Project of the Chinese Academy of Sciences [KZCX1-YW-15-2]
  3. National Natural Science Foundation of China [40728002]

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Although a number of petrographic observations and isotopic data suggest that magma mixing is common in genesis of many granite plutons, it is still controversial whether the mantle-derived magmas were involved in granites. We carried out in this study a systematic analysis of in situ zircon Hf-O isotopes for three early Yanshanian intrusions dated at ca. 160 Ma from the Nanling Range of Southeast China. The Qinghu monzonite has very homogeneous zircon Hf-O isotopic compositions, E > (Hf)(t)=11.6 +/- 0.3 and delta O-18=5.4%+/- 0.3aEuro degrees In combination with whole-rock geochemical and Sr-Nd isotopic data, the parental magma of the Qinghu monzonite were likely derived from the partial melting of recently-metasomatized, phlogopite-bearing lithospheric mantle without appreciable crustal contamination. The Lisong and Fogang granites and the mafic microgranular enclaves (MME) within the Lisong granites have a wide range of zircon Hf-O isotopic compositions, with Hf and O isotopes being negatively correlated within each pluton. The Lisong MMEs were crystallized from a mantle-derived magma, similar to the parental magma of the Qinghu monzonite, with small amount of crustal assimilation. The Lisong and Fogang granites were formed by reworking of meta-sedimentary materials by mantle-derived magmas and mixing of the mantle- and sediment-derived melts to varying degrees. It is thus concluded that these two Yanshanian granites in the Nanling Range were formed associated with growth and differentiation of continental crust.

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