Lithospheric extension associated with slab rollback: Insights from early Cretaceous magmatism in the southern segment of Tan-Lu fault zone, central-eastern China

Lithospheric extension associated with slab rollback: Insights from early Cretaceous magmatism in the southern segment of Tan-Lu fault zone, central-eastern China
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与板块回滚相关的岩石圈伸展:中国中东部郯庐断裂带南段早白垩世岩浆作用的见解

DOI:
10.1016/j.lithos.2020.105487
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发表时间:
2020
期刊:
影响因子:
3.5
通讯作者:
Wei Junhao
Wei Junhao
中科院分区:
地球科学2区
文献类型:
--
作者:
Zhao Zhixin;Liang Shengnan;Santosh M.;Wei Junhao

文献摘要

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The eastern China region underwent an intense lithosphere thinning event during Mesozoic but the mechanism for this process remains controversial. Here we investigate the Early Cretaceous Guandian intrusive complex in southern segment of the Tancheng-Lujiang (Tan-Lu) fault zone, central-eastern China, to gain insights into lithospheric extension and thinning. We present zircon Usingle bondPb ages and Lusingle bondHf isotope data, together with whole rock major and trace elements, and Srsingle bondNd isotopes. The major rock types in this igneous complex are high-K calc-alkaline granodiorites, diorites and lamprophyre dikes. LA-ICP-MS zircon Usingle bondPb dating yielded emplacement ages of 128 ± 2 Ma, 131 ± 2 Ma and 130 ± 1 Ma, for lamprophyre dikes, diorites and granodiorites respectively. These ages coincide with the commencement of lithospheric extension and thinning in eastern China. The elemental and isotopic characteristics of the lamprophyre dikes suggest that they were derived from partial melting of amphibole-bearing lithospheric mantle that was metasomatized by subducted continental crust and slab-derived fluids. Petrographic evidence, as well as geochemical and Srsingle bondNd isotope characters suggest that the dioritic and granodioritic magmas were likely derived through magma mixing between partial melts of ancient lower crust and enriched lithospheric mantle. In conjunction with the coeval regional magmatism, mineralization and tectonic setting, we correlate the genesis of Guandian complex with crust-mantle interaction, and the extensional tectonic regime is correlated to slab rollback of the Paleo-Pacific Plate.