Pulses of ocean acidification at the Triassic–Jurassic boundary
Abstract
Abstract Mass extinctions have repeatedly perturbed the history of life, but their causes are often elusive. Ocean acidification has been implicated during Triassic–Jurassic environmental perturbations, but this interval lacks direct reconstructions of ocean pH. Here, we present boron isotope data from well-preserved fossil oysters, which provide evidence for acidification of ≥ 0.29 pH units coincident with a 2 ‰ negative carbon isotope excursion (the “main” CIE) following the end–Triassic extinction. These results suggest a prolonged interval of CO2-driven environmental perturbation that may have delayed ecosystem recovery. Earth system modelling with cGENIE paired with our pH constraints demonstrates this was driven by predominantly mantle-derived carbon. Ocean acidification therefore appears to be associated with three of the five largest extinction events in Earth history, highlighting the catastrophic ecological impact of major perturbations to the carbon cycle in Earth’s past, and possibly Earth’s anthropogenically perturbed future.
Article Details
Authors (25)
Molly Trudgill
James W. B. Rae
Ross Whiteford
Markus Adloff
Jessica Crumpton-Banks
Michael Van Mourik
Andrea Burke
School of Earth and Environmental Sciences, University of St Andrews
Marieke Cuperus
Frank Corsetti
Daniel Doherty
William Gray
Rosanna Greenop
Wei-Li Hong
Aivo Lepland
Section for Marine Geology, Geological Survey of Norway
Andrew McIntyre
Noor Neiroukh
Catherine V. Rose
Micha Ruhl
David Saunders
Magali M.F.R. Siri
Robert C. J. Steele
Eva E. Stüeken
School of Earth and Environmental Sciences, University of St. Andrews
A. Joshua West
Martin Ziegler
Sarah E. Greene