4.7 Article

Zircon Hf-O-Li isotopes of granitoids from the Central Asian Orogenic Belt: Implications for supercontinent evolution

期刊

GONDWANA RESEARCH
卷 83, 期 -, 页码 132-140

出版社

ELSEVIER
DOI: 10.1016/j.gr.2020.02.003

关键词

Zircon Hf-O-Li isotopes; Ordovician to Silurian boundary; Permian to Triassic boundary; Super-delamination; Mass extinction

资金

  1. National Natural Science Foundation of China [41502209]
  2. National Science and Technology Major Project [2016ZX05034-001, 2017ZX05035-002]

向作者/读者索取更多资源

Deep lithospheric processes associated with the formation of major orogens, including the removal of lower crust and underlying mantle through delamination associated with orogen building are poorly constrained. With a view to evaluate the potential link between deep geodynamic processes and magmatic events, we performed in situ zircon Hf-O-Li isotopic analyses of granitoids from the Eastern and Western Junggar, Altai and Beishan orogens, within the Central Asian Orogenic Belt (CAOB). The epsilon(Hf)(t) and delta O-18 values of magmatic zircons crystallized during 443 Ma and 252 Ma indicate diverse and heterogeneous magma sources. The corresponding delta Li-7 peaks at similar to 440 Ma and similar to 250 Ma, suggesting two distinct high-temperature magmatic events. Based on a comparison with global data, we argue that large-scale delamination formed through Gondwana and Pangaea supercontinent assembly, may have occurred at Ordovician to Silurian boundary (OSB) and Permian to Triassic boundary (PTB), which we term as super-delamination. The subsequent widespread magmatism and volcanism might have made significant impact on the Earth surface ecosystems, ultimately leading to the OSB and FIB mass extinction events. We propose super-delamination as a potential mechanism to explain the link between Earth's internal and external processes, thus providing novel insights into the trigger for mass extinction events. (C) 2020 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.

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