Late Cretaceous Sedimentology and Provenance of the Taining Basin in South China: Implications for the Basin–Range System and Regional Palaeogeography

Tectonics-topography-climate coupling regulates surface processes across East Asia, yet the role of Palaeo-Pacific subduction in shaping Cretaceous palaeogeography remains debated. Here we reconstruct the early Late Cretaceous source-to-sink system and palaeogeography of the Taining Basin (western Cathaysia Block, South China) by integrating sedimentary facies, palaeocurrents, clast compositions, and detrital zircon U-Pb geochronology from the Shaxian and Chong'an formations. Thirteen lithofacies are recognised and grouped into alluvial fan, fluvial, and floodplain facies associations. The Shaxian Formation records a retrogradational alluvial fan system, whereas the overlying Chong'an Formation is dominated by alluvial fan deposits with subordinate fluvial and floodplain deposits. Provenance signals indicate short transport distances and proximal north-northwest uplifts associated with the northern Wuyi terrane. Stratigraphic architecture and provenance patterns support half-graben development and basinward progradation during back-arc extension driven by Palaeo-Pacific slab rollback. Regionally, along-strike differentiation in Basin-Range system within the Cathaysia Block is proposed: western Cathaysia Block is characterised by Early Palaeozoic granitic ranges and extensional basins, whereas eastern Cathaysia Block is dominated by Early Cretaceous granitic/volcanic ranges and basins. Sparse Mesozoic detrital zircon input and south-southeast palaeoflow indicators argue against prominent Late Cretaceous coastal mountains; major coastal uplift more likely peaked during the late Early Cretaceous.

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Journal
Geological Society London Special Publications
Published
2026-09-29
DOI
https://doi.org/10.1144/gslspecpub2025-85
Primary Topic
Geological and Geophysical Studies
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article
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article

Late Cretaceous Sedimentology and Provenance of the Taining Basin in South China: Implications for the Basin–Range System and Regional Palaeogeography

Liuqin Chen, Tingyuan Yuan, Fusheng Guo, Huan Xu et al.
Geological Society London Special Publications
Geological and Geophysical Studies
article

Late Cretaceous Sedimentology and Provenance of the Taining Basin in South China: Implications for the Basin–Range System and Regional Palaeogeography

Liuqin Chen, Tingyuan Yuan, Fusheng Guo, Huan Xu, Chao Cen, Xiaojun Jiang
article en

Abstract

Tectonics-topography-climate coupling regulates surface processes across East Asia, yet the role of Palaeo-Pacific subduction in shaping Cretaceous palaeogeography remains debated. Here we reconstruct the early Late Cretaceous source-to-sink system and palaeogeography of the Taining Basin (western Cathaysia Block, South China) by integrating sedimentary facies, palaeocurrents, clast compositions, and detrital zircon U-Pb geochronology from the Shaxian and Chong'an formations. Thirteen lithofacies are recognised and grouped into alluvial fan, fluvial, and floodplain facies associations. The Shaxian Formation records a retrogradational alluvial fan system, whereas the overlying Chong'an Formation is dominated by alluvial fan deposits with subordinate fluvial and floodplain deposits. Provenance signals indicate short transport distances and proximal north-northwest uplifts associated with the northern Wuyi terrane. Stratigraphic architecture and provenance patterns support half-graben development and basinward progradation during back-arc extension driven by Palaeo-Pacific slab rollback. Regionally, along-strike differentiation in Basin-Range system within the Cathaysia Block is proposed: western Cathaysia Block is characterised by Early Palaeozoic granitic ranges and extensional basins, whereas eastern Cathaysia Block is dominated by Early Cretaceous granitic/volcanic ranges and basins. Sparse Mesozoic detrital zircon input and south-southeast palaeoflow indicators argue against prominent Late Cretaceous coastal mountains; major coastal uplift more likely peaked during the late Early Cretaceous.

Geological Society London Special PublicationsVol. 568(1)
Kunming University of Science and Technology (CN), Yunnan University (CN), China Geological Survey (CN), Department of Land Resource Management (AU), East China University of Technology (CN), Jiangsu Provincial Institute of Geological Survey (CN)
Climate action
Openalex Percentile: Top 9%
Geological and Geophysical Studies
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