4.3 Article

Sr-Nd-Pb isotope systematics of the Permian volcanic rocks in the northern margin of the Alxa Block (the Shalazhashan Belt) and comparisons with the nearby regions: Implications for a Permian rift setting?

期刊

JOURNAL OF GEODYNAMICS
卷 115, 期 -, 页码 43-56

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jog.2018.01.007

关键词

Volcanic rocks; Sr-Nd-Pb isotopes; Geochemistry; Solonker Belt; Central Asian Orogenic Belt

资金

  1. National Natural Science Foundation of China [41402192, 41702121, 41472084]
  2. Major National Science and Technology Programs in the Thirteenth Five-Year Plan period [2016ZX05024-006-002]
  3. China Postdoctoral Science Foundation [2014M562080]

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The petrogenesis of the Permian magmatic rocks in the Shalazhashan Belt is helpful for us to understand the tectonic evolution of the Central Asian Orogenic Belt (CAOB) in the northern margin of the Alxa Block. The Permian volcanic rocks in the Shalazhashan Belt include basalts, trachyandesites and trachydacites. Our study shows that two basalt samples have negative epsilon(Nd)(t) values (-5.4 to -1.5) and higher radiogenic Pb values, which are relevant to the ancient subcontinental lithospheric mantle. One basalt sample has positive epsilon(Nd)(t) value (+ 10) representing mafic juvenile crust and is derived from depleted asthenosphere. The trachyandesites are dated at 284 +/- 3 Ma with epsilon(Nd)(t) = + 2.7 to + 8.0; I-Sr = 0.7052 to 0.7057, and they are generated by different degrees of mixing between mafic magmas and crustal melts. The trachydacites have high epsilon(Nd)(t) values and slightly higher I-Sr contents, suggesting the derivation from juvenile sources with crustal contamination. The isotopic comparisons of the Permian magmatic rocks of the Shalazhashan Belt, the Nuru-Langshan Belt (representing the northern margin of the Alxa Block), the Solonker Belt (Mandula area) and the northern margin of the North China Craton (Bayan Obo area) indicate that the radiogenic isotopic compositions have an increasingly evolved trend from the south (the northern margins of the Alxa Block and the North China Craton) to the north (the Shalazhashan Belt and the Solonker Belt). Three end-member components are involved to generate the Permian magmatic rocks: the ancient subcontinental lithospheric mantle, the mafic juvenile crust or newly underplated mafic rocks that were originated from depleted asthenosphere, and the ancient crust. The rocks correlative with the mafic juvenile crust or newly underplated mafic rocks are predominantly distributed along the Shalazhashan Belt and the Solonker Belt, and the rocks derived from ancient, enriched subcontinental lithospheric mantle are mainly distributed along the northern margins of the Alxa Block and the North China Craton. The magmatic rock types, isotopic features and their temporal, spatial distributions suggest an extensional regime probably related to rifting.

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