Asteroid impact, not volcanism, caused the end-Cretaceous dinosaur extinction.
other · Level V
Where this comes from
- Record sourced from PubMed, PMID 32601204.
- Also identified by DOI 10.1073/pnas.2006087117 and PMC identifier 7382232.
- Licence recorded as CC BY-NC-ND.
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Abstract
The Cretaceous/Paleogene mass extinction, 66 Ma, included the demise of non-avian dinosaurs. Intense debate has focused on the relative roles of Deccan volcanism and the Chicxulub asteroid impact as kill mechanisms for this event. Here, we combine fossil-occurrence data with paleoclimate and habitat suitability models to evaluate dinosaur habitability in the wake of various asteroid impact and Deccan volcanism scenarios. Asteroid impact models generate a prolonged cold winter that suppresses potential global dinosaur habitats. Conversely, long-term forcing from Deccan volcanism (carbon dioxide [CO<sub>2</sub>]-induced warming) leads to increased habitat suitability. Short-term (aerosol cooling) volcanism still allows equatorial habitability. These results support the asteroid impact as the main driver of the non-avian dinosaur extinction. By contrast, induced warming from volcanism mitigated the most extreme effects of asteroid impact, potentially reducing the extinction severity.
Medical subject headings
- Dinosaurs
- Extinction, Biological
- Minor Planets