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all geography including DSDP/ODP Sites and Legs
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Asia
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Far East
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China
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Guizhou China (2)
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Meishan China (1)
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Asia
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China
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isotopes
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stable isotopes
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C-13/C-12 (3)
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O-18/O-16 (1)
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S-33/S-32 (1)
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S-34/S-32 (2)
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Sr-87/Sr-86 (1)
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Permian-Triassic boundary (2)
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metals
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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Volcanic Age and Geochemistry of the Permian Linxi Formation in Northeast China: Implications for the Tectonic Evolution of the Paleo-Asian Ocean
Geochemical, biostratigraphic, and high-resolution geochronological constraints on the waning stage of Emeishan Large Igneous Province
Strontium and carbon isotopic evidence for decoupling of p CO 2 from continental weathering at the apex of the late Paleozoic glaciation
Precarious ephemeral refugia during the earliest Triassic
Widespread shoaling of sulfidic waters linked to the end-Guadalupian (Permian) mass extinction
Carboniferous and Lower Permian sedimentological cycles and biotic events of South China
Abstract The sedimentary successions and four fossil groups, including rugose corals, brachiopods, fusulinaceans and conodonts, from the Carboniferous and Lower Permian of South China have been studied in order to reveal the sedimentary characteristics and evolutionary pattern of main biological groups in the East Tethyan region during the Late Palaeozoic Ice Age. The Lower Carboniferous lithology of South China is diverse, ranging from basinal and shelf carbonate rocks to coal measures and continental clastics, while the Upper Carboniferous and Lower Permian are composed mostly of shallow-marine carbonates. From uppermost Devonian to Lower Carboniferous, five major regression events are recognized at the topmost Devonian, middle and upper Tournaisian boundary, Tournasian–Viséan boundary, uppermost Viséan and the Mid-Carboniferous boundary in South China, separately. The Upper Carboniferous and Lower Permian shallow-water carbonate rocks consist of remarkable, high-frequency cyclothems. Moreover, another major sea-level fall is recognized and characterized by an extensive sedimentary hiatus at the Sakmarian–Artinskian boundary throughout South China. All of the sedimentary basins of South China were formed in extensional tectonic settings during this time; thus, multiple regressive events that occurred throughout South China should be primarily induced by glacio-eustatic drawdown. In addition, two biotic events characterized by a remarkable decline in the diversity of benthic biota and a turnover in the composition of fossil assemblages occurred, respectively, at the Mid-Carboniferous and Sakmarian–Artinskian boundaries, consistent with two major regressions, and were probably caused by the glaciations in Gondwana.