The end-Permian mass extinction, ~252 million years ago, is notable for a complex recovery period of ~5 Myr. Widespread euxinic (anoxic and sulfidic) oceanic conditions have been proposed as both extinction mechanism and explanation for the protracted recovery period, yet the vertical distribution of anoxia in the water column and its temporal dynamics through this time period are poorly constrained. Here we utilize Fe–S–C systematics integrated with palaeontological observations to reconstruct a complete ocean redox history for the Late Permian to Early Triassic, using multiple sections across a shelf-to-basin transect on the Arabian Margin (Neo-Tethyan Ocean). In contrast to elsewhere, we show that anoxic non-sulfidic (ferruginous), rathe...
Explaining the ~5-million-year delay in marine biotic recovery following the latest Permian mass ext...
Explaining the ∼5-million-year delay in marine biotic recovery following the latest Permian mass ext...
Explaining the ∼5-million-year delay in marine biotic recovery following the latest Permian mass ext...
The end-Permian mass extinction, ~252 million years ago, is notable for a complex recovery period of...
A detailed, 10 m.y. redox history of Changhsingian to Anisian (latest Permian to Middle Triassic) oc...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
The end-Permian extinction at 252 Ma is widely regarded as the most severe of the Phanerozoic mass-e...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
Oceanic anoxia has long been considered as one of the main causes for the end-Permian mass extinctio...
Explaining the ~5-million-year delay in marine biotic recovery following the latest Permian mass ext...
Explaining the ~5-million-year delay in marine biotic recovery following the latest Permian mass ext...
Explaining the ∼5-million-year delay in marine biotic recovery following the latest Permian mass ext...
Explaining the ∼5-million-year delay in marine biotic recovery following the latest Permian mass ext...
The end-Permian mass extinction, ~252 million years ago, is notable for a complex recovery period of...
A detailed, 10 m.y. redox history of Changhsingian to Anisian (latest Permian to Middle Triassic) oc...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
The end-Permian extinction at 252 Ma is widely regarded as the most severe of the Phanerozoic mass-e...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
Water column oxygen deficiency has been considered as a potent driver of the extinction of marine be...
Oceanic anoxia has long been considered as one of the main causes for the end-Permian mass extinctio...
Explaining the ~5-million-year delay in marine biotic recovery following the latest Permian mass ext...
Explaining the ~5-million-year delay in marine biotic recovery following the latest Permian mass ext...
Explaining the ∼5-million-year delay in marine biotic recovery following the latest Permian mass ext...
Explaining the ∼5-million-year delay in marine biotic recovery following the latest Permian mass ext...