International audienceAbstract The emplacement of the Karoo Large Igneous Province (LIP) occurred synchronously with the Toarcian crisis (ca. 183 Ma), which is characterized by major carbon cycle perturbations. A marked increase in the atmospheric concentration of CO 2 ( p CO 2 ) attests to significant input of carbon, while negative carbon isotope excursions (CIEs) in marine and terrestrial records suggest the involvement of a 12 C-enriched source. Here we explore the effects of pulsed carbon release from the Karoo LIP on atmospheric p CO 2 and δ 13 C of marine sediments, using the GEOCLIM carbon cycle model. We show that a total of 20,500 Gt C replicates the Toarcian p CO 2 and δ 13 C proxy data, and that thermogenic carbon (δ 13 C of −36...
The end-Triassic mass extinction (ca. 201.4 Ma) coincided with a major carbon cycle perturbation, ba...
The Paleocene-Eocene Thermal Maximum (PETM) (∼56 Ma) was a ∼170,000-y (∼170-kyr) period of global wa...
Preceding the early Toarcian Oceanic Anoxic Event by similar to 1 Myr, the Pliensbachian-Toarcian bo...
International audienceAbstract The emplacement of the Karoo Large Igneous Province (LIP) occurred sy...
Large-scale release of isotopically light carbon is responsible for the carbon isotope excursion (CI...
The Karoo Large Igneous Province (K-LIP) is considered to have substantially influenced global warmi...
Large-scale release of isotopically light carbon is responsible for the carbon isotope excursion (CI...
International audienceThe Triassic–Jurassic boundary (TJB) ismarked by one of the five largestmass e...
Large-scale release of isotopically light carbon is responsible for the carbon isotope excursion (CI...
The Early Jurassic Toarcian oceanic anoxic event (T-OAE) and concurrent negative carbon-isotope (δ13...
Throughout the history, episodes of excessive volcanism, known as Large Igneous Provinces (LIP), hav...
In the Toarcian (Early Jurassic; ~183Myr ago), the ocean-atmosphere system was subject to one of the...
The end-Triassic mass extinction (ca. 201.4 Ma) coincided with a major carbon cycle perturbation, ba...
The Paleocene-Eocene Thermal Maximum (PETM) (∼56 Ma) was a ∼170,000-y (∼170-kyr) period of global wa...
Preceding the early Toarcian Oceanic Anoxic Event by similar to 1 Myr, the Pliensbachian-Toarcian bo...
International audienceAbstract The emplacement of the Karoo Large Igneous Province (LIP) occurred sy...
Large-scale release of isotopically light carbon is responsible for the carbon isotope excursion (CI...
The Karoo Large Igneous Province (K-LIP) is considered to have substantially influenced global warmi...
Large-scale release of isotopically light carbon is responsible for the carbon isotope excursion (CI...
International audienceThe Triassic–Jurassic boundary (TJB) ismarked by one of the five largestmass e...
Large-scale release of isotopically light carbon is responsible for the carbon isotope excursion (CI...
The Early Jurassic Toarcian oceanic anoxic event (T-OAE) and concurrent negative carbon-isotope (δ13...
Throughout the history, episodes of excessive volcanism, known as Large Igneous Provinces (LIP), hav...
In the Toarcian (Early Jurassic; ~183Myr ago), the ocean-atmosphere system was subject to one of the...
The end-Triassic mass extinction (ca. 201.4 Ma) coincided with a major carbon cycle perturbation, ba...
The Paleocene-Eocene Thermal Maximum (PETM) (∼56 Ma) was a ∼170,000-y (∼170-kyr) period of global wa...
Preceding the early Toarcian Oceanic Anoxic Event by similar to 1 Myr, the Pliensbachian-Toarcian bo...