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Petrogenesis of the Large-Scale Serpentinites in the Kumishi Ophiolitic Mélange, Southwestern Tianshan, China
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The Kumishi ophiolitic mélange contains well-preserved large-scale serpentinites and their accompanying granulites in the eastern South Tianshan Accretionary Complex (STAC), southwestern Altaids. Previous studies have mainly focused on the thermodynamic conditions and tectonic setting of granulites. However, the petrogenesis of the widespread serpentinites in the Kumishi ophiolitic mélange remains largely unexplored. In this paper, petrological, geochemical, and geochronological studies were carried out on the Kumishi serpentinites, as well as the host sediment and intermediate–felsic volcanic rocks. The serpentinites show variable LOI values of 8.3–16.5 wt% and relatively consistent SiO2/(sum oxides) ratios of 0.81, which demonstrate that the major elements of their protoliths have been preserved well during serpentinization. Multi-trace element and REE diagrams suggest that the protoliths of the Kumishi serpentinites have experienced varying degrees of refertilization, with distinct natures seen between the Yushugou, Tonghuashan, and Liuhuangshan serpentinites. Zircon U-Pb chronology of the Tonghuahsan serpentinites yields a mean age of 355.8 ± 7.3 Ma (MSWD = 1.0, N = 26). Detrital zircons from the host sediment record a maximum depositional age of 375 ± 10 Ma (MSWD = 0.4, N = 3), with a peak at ca.419 Ma. Subduction-related volcanic rocks yield ages of ca.437 Ma. Hence, clues are provided to the petrogenesis of the Kumishi serpentinites, with calls for future in-depth works from an isotopic perspective.
Title: Petrogenesis of the Large-Scale Serpentinites in the Kumishi Ophiolitic Mélange, Southwestern Tianshan, China
Description:
The Kumishi ophiolitic mélange contains well-preserved large-scale serpentinites and their accompanying granulites in the eastern South Tianshan Accretionary Complex (STAC), southwestern Altaids.
Previous studies have mainly focused on the thermodynamic conditions and tectonic setting of granulites.
However, the petrogenesis of the widespread serpentinites in the Kumishi ophiolitic mélange remains largely unexplored.
In this paper, petrological, geochemical, and geochronological studies were carried out on the Kumishi serpentinites, as well as the host sediment and intermediate–felsic volcanic rocks.
The serpentinites show variable LOI values of 8.
3–16.
5 wt% and relatively consistent SiO2/(sum oxides) ratios of 0.
81, which demonstrate that the major elements of their protoliths have been preserved well during serpentinization.
Multi-trace element and REE diagrams suggest that the protoliths of the Kumishi serpentinites have experienced varying degrees of refertilization, with distinct natures seen between the Yushugou, Tonghuashan, and Liuhuangshan serpentinites.
Zircon U-Pb chronology of the Tonghuahsan serpentinites yields a mean age of 355.
8 ± 7.
3 Ma (MSWD = 1.
0, N = 26).
Detrital zircons from the host sediment record a maximum depositional age of 375 ± 10 Ma (MSWD = 0.
4, N = 3), with a peak at ca.
419 Ma.
Subduction-related volcanic rocks yield ages of ca.
437 Ma.
Hence, clues are provided to the petrogenesis of the Kumishi serpentinites, with calls for future in-depth works from an isotopic perspective.
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