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Geochemical and geochronological study of early Carboniferous volcanic rocks from the West Junggar: Petrogenesis and tectonic implications
► Early Carboniferous basalt, andesite, dacite have the zircon U–Pb age of 331–340 Ma. ► Basalt, andesite and dacite display enriched LILE, depleted HFSE patterns. ► Basalt, andesite and dacite have depleted Sr–Nd isotopic compositions. ► Basalt, andesite and dacite derived from a slightly metasomat...
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Published in: | Journal of Asian earth sciences 2011-10, Vol.42 (5), p.854-866 |
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Main Authors: | , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | ► Early Carboniferous basalt, andesite, dacite have the zircon U–Pb age of 331–340
Ma. ► Basalt, andesite and dacite display enriched LILE, depleted HFSE patterns. ► Basalt, andesite and dacite have depleted Sr–Nd isotopic compositions. ► Basalt, andesite and dacite derived from a slightly metasomatized depleted mantle. ► Ridge subduction probably commenced between 331 and 310
Ma in the West Junggar.
A series of early Carboniferous volcanic rocks, i.e., basalt, andesite, and dacite, occur in the West Junggar. Zircon U–Pb isotopic data indicate that these rocks coevally erupted at 331–344
Ma. These volcanic rocks have comparable trace element patterns, characterized by the enrichment of large ion lithophile elements (LILE) and the depletion of high field strength elements (HFSE). Isotopically, they display consistently depleted Sr–Nd isotopic compositions (initial
87Sr/
86Sr ratios
=
0.7034–0.7054,
ε
Nd(
t)
=
4.2–7.7). These rocks are interpreted to be derived from a slightly metasomatized depleted mantle in a normal subduction environment. In the context of a previously proposed ridge subduction model, this study constrains that ridge subduction, if it indeed occurred, commenced between 331 and 310
Ma in the central West Junggar. |
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ISSN: | 1367-9120 1878-5786 |
DOI: | 10.1016/j.jseaes.2011.01.006 |