Detrital Zircon Geochronology and Tectonic Evolution Implication of the Middle Jurassic Zhiluo Formation, Southern Ordos Basin, China
Abstract
:1. Introduction
2. Geological Setting
3. Lithological Characteristics and Sample Collection
4. Samples and Analytical Methods
4.1. Zircon U–Pb Dating
4.2. Net-Sand Ratio Maps
5. Results
5.1. Textures and CL Images
5.2. Rare Earth Element Characteristics
5.3. Zircon U–Pb Dating
5.4. Net-Sand Ratio Map of the Zhiluo Formation
6. Discussion
6.1. Potential Source Areas
6.1.1. Mechanical Features
6.1.2. Zircon REE Analysis
6.1.3. Zircon U–Pb Dating Analysis
6.1.4. Net-Sand Ratio Analysis
6.1.5. Paleocurrent
6.2. Primary Provenance
- (1)
- From 2831.79 to 2035.49 Ma, the peak is 2283 Ma, the zircon age in this range corresponds to the Early Luliang tectonic event.
- (2)
- From 1947.84 to 1561.12 Ma, the peak is 1788 Ma, the zircon age in this range corresponds to the Late Luliang–Early Jinning tectonic event.
- (3)
- From 1235.18 to 794.54 Ma, there are only 5 zircon ages (794.54 Ma, 799.08 Ma, 915.92 Ma, 1012.96 Ma and 1235.18 Ma). The zircon age in this range corresponds to the Late Jinning tectonic event.
- (4)
- From 461.04 to 412.61 Ma, the strong peak is 432.5 Ma. The zircon age in this range corresponds to the Late Caledonian tectonic event.
- (5)
- From 257.65 to 208.44 Ma, the strong peak is 218.7 Ma. The zircon age in this range corresponds to the Late Caledonian tectonic event.
6.3. Basin’s Southern Boundary during the Zhiluo Formation
6.4. Tectonic Evolution of the Basin’s Southern Margin
7. Conclusions
- The source area’s tectonic background of the Zhiluo Formation in the study area is related to the trench–arc–basin system, subduction–collision orogeny and material recycling, respectively. Combining multiple methods, it was determined that the provenance was from the N-QLOB in the southwest, the western part of the NQOB in the south, and the SNCB’s southern margin in the southeast, respectively, surrounded the Ordos Basin.
- The detrital zircon ages of the Zhiluo Formation in the study area cluster into five groups: 2831.79–2035.49, 1947.84–1561.12, 1235.18–794.54, 461.04–412.61 and 257.65–208.44 Ma, which are coeval with the tectonic–thermal events of the paleocontinental crust development and the splicing of microcontinents in the Early Luliang movement, the formation of a unified NCC basement in the Late Luliang movement–Early Jinning movement, the Rodinia supercontinent disintegration in the Late Jinning, the ocean–continent transformation of the QLOB and QOB in the Late Caledonian, and the subduction of Yangtze plate to the SNCB in the Indosinian, respectively.
- During the sedimentary period of the Zhiluo Formation, the Ordos Basin’s southwest boundary should reach the northeast side of the N-QLOB, the south boundary should reach the north side of the N-QOB, and the southeast boundary should be along the Sanmenxia–Lushan fault zone.
Supplementary Materials
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Cui, L.; Peng, N.; Liu, Y.; Qiao, D.; Liu, Y. Detrital Zircon Geochronology and Tectonic Evolution Implication of the Middle Jurassic Zhiluo Formation, Southern Ordos Basin, China. Minerals 2023, 13, 45. https://doi.org/10.3390/min13010045
Cui L, Peng N, Liu Y, Qiao D, Liu Y. Detrital Zircon Geochronology and Tectonic Evolution Implication of the Middle Jurassic Zhiluo Formation, Southern Ordos Basin, China. Minerals. 2023; 13(1):45. https://doi.org/10.3390/min13010045
Chicago/Turabian StyleCui, Liwei, Nan Peng, Yongqing Liu, Dawei Qiao, and Yanxue Liu. 2023. "Detrital Zircon Geochronology and Tectonic Evolution Implication of the Middle Jurassic Zhiluo Formation, Southern Ordos Basin, China" Minerals 13, no. 1: 45. https://doi.org/10.3390/min13010045
APA StyleCui, L., Peng, N., Liu, Y., Qiao, D., & Liu, Y. (2023). Detrital Zircon Geochronology and Tectonic Evolution Implication of the Middle Jurassic Zhiluo Formation, Southern Ordos Basin, China. Minerals, 13(1), 45. https://doi.org/10.3390/min13010045