4.6 Article

Zircon U-Pb ages, geochemistry, and Nd-Hf isotopes of the TTG gneisses from the Jiaobei terrane: Implications for Neoarchean crustal evolution in the North China Craton

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JOURNAL OF ASIAN EARTH SCIENCES
卷 98, 期 -, 页码 61-74

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jseaes.2014.10.023

关键词

TTG gneisses; Petrogenesis; Crustal evolution; Jiaobei terrane; North China Craton

资金

  1. 973 program [2012CB4166006]
  2. National Nature Science Foundation of China [41210003]
  3. technological innovation project of Shangdong Gold Group Co., LTD.

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The Precambrian basement in the Jiaobei terrane is largely composed of Tonalite-Trondhjemite-Granodiorite (TTG) suite of rocks and offers important insights into the crustal evolution history of the North China Craton (NCC). The LA-ICP-MS zircon U-Pb age data presented in this study show that the magmatic protoliths of the TTG gneisses formed during 2508-2547 Ma and recorded the Paleoproterozoic metamorphism (similar to 1905 Ma). The rocks are enriched in LILE (Rb, Ba and Sr) and depleted in HFSE (Nb, Ta, Zr and Hf). They are characterized by high Sr contents (406-2906 ppm), Sr/Y ratios (31.3-355) and subchondritic Nb/Ta ratios (18.5-68.9). The TTGs show relatively high Sigma REE contents (72.0-266 ppm) with strongly enriched LREE ((La/Yb)(N) = 11.5-121) and positive or negligible negative Eu anomalies (Eu/Eu* = 0.84-1.89). These geochemical features suggest that the magma source might have been rutile-bearing amphibole eclogite. Their high Mg-# (42-56) and high Cr (153-285 ppm) and Ni contents (22.2-74.5 ppm) indicate interaction with the mantle wedge during magma ascent. The whole rock epsilon Nd (t) values (+2.6 to +3.8) and most of the magmatic zircon epsilon(Hf) (t) values (+1.3 to +7.6) suggest juvenile to evolved isotopic signatures. All these lines of evidence suggest that the TTG rocks in this study formed through partial melting of subducted oceanic slab in a continental arc environment. The drill holes in the Jiaobei terrane are dominated by similar to 2.5 Ga TTG gneisses, suggesting that the TTG magma at similar to 2.5 Ga is more widely distributed deep underground than that of similar to 2.7-2.9 Ga, at least within the approachable depth range of our research. Some zircon grains from Jiaobei TTGs give high epsilon(Hf) (t) values plotting above the curve of 0.75 * epsilon(Hf) of DM, and their T-DM(C) ages are very close to the time of the zircon crystallization. However, the majority of the epsilon(Hf)(t) values fall below the curve of 0.75 * epsilon(Hf) of DM and their T-DM(C) ages are concentrated between similar to 2.7-2.9 Ga. Therefore, combining with other related studies, we propose that the -2.5-2.6 Ga magmatism in the NCC probably represents a coherent event of crustal growth and major reworking (remelting). (C) 2014 Elsevier Ltd. All rights reserved.

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