Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Warm deep-sea temperatures across Eocene Thermal Maximum 2 from clumped isotope thermometry

View through CrossRef
AbstractThe early Eocene hothouse experienced highly elevated atmospheric CO2 levels and multiple transient global warming events, so-called hyperthermals. The deep ocean constitutes an assumed setting to estimate past global mean temperatures. However, available deep-sea temperature reconstructions from conventional benthic foraminiferal oxygen isotopes and magnesium/calcium ratios rely on uncertain assumptions of non-thermal influences, associated with seawater chemistry and species-specific physiological effects. Here we apply the carbonate clumped isotope thermometer, a proxy not governed by these uncertainties, to evaluate South Atlantic deep-sea temperatures across two hyperthermal events in the early Eocene (Eocene Thermal Maximum 2/H1 and H2; ~54 Myr ago). Our independent reconstructions indicate deep-sea temperatures of 13.5 ± 1.9 °C (95% CI) for the background conditions and average hyperthermal peak temperatures of 16.9 ± 2.3 °C (95% CI). On average, these absolute temperatures are three degrees warmer than estimates from benthic oxygen isotopes. This finding implies a necessary reassessment of (1) the Eocene seawater isotope composition and (2) pH changes in the deep ocean and its potential influence on benthic foraminiferal oxygen isotope records.
Title: Warm deep-sea temperatures across Eocene Thermal Maximum 2 from clumped isotope thermometry
Description:
AbstractThe early Eocene hothouse experienced highly elevated atmospheric CO2 levels and multiple transient global warming events, so-called hyperthermals.
The deep ocean constitutes an assumed setting to estimate past global mean temperatures.
However, available deep-sea temperature reconstructions from conventional benthic foraminiferal oxygen isotopes and magnesium/calcium ratios rely on uncertain assumptions of non-thermal influences, associated with seawater chemistry and species-specific physiological effects.
Here we apply the carbonate clumped isotope thermometer, a proxy not governed by these uncertainties, to evaluate South Atlantic deep-sea temperatures across two hyperthermal events in the early Eocene (Eocene Thermal Maximum 2/H1 and H2; ~54 Myr ago).
Our independent reconstructions indicate deep-sea temperatures of 13.
5 ± 1.
9 °C (95% CI) for the background conditions and average hyperthermal peak temperatures of 16.
9 ± 2.
3 °C (95% CI).
On average, these absolute temperatures are three degrees warmer than estimates from benthic oxygen isotopes.
This finding implies a necessary reassessment of (1) the Eocene seawater isotope composition and (2) pH changes in the deep ocean and its potential influence on benthic foraminiferal oxygen isotope records.

Related Results

Clumped isotopes in carbonates: state of the art and open questions 
Clumped isotopes in carbonates: state of the art and open questions 
Since its establishment almost 20 years ago, carbonate clumped isotope thermometry (Δ47, Δ48) has grown to the most widely applied branch of the rapidly evolving ...
Independent constraints on deep-sea temperatures across two early Eocene hyperthermals from clumped isotope thermometry
Independent constraints on deep-sea temperatures across two early Eocene hyperthermals from clumped isotope thermometry
The early Eocene hothouse experienced the occurrence of transient global warming events, so-called hyperthermals. The deep ocean constitutes a stable and vast heat reservoir, and h...
Thermal Effects in High Compactness CEA Stack
Thermal Effects in High Compactness CEA Stack
Thermal management is a pivotal aspect of stack durability and system operability. Consequently, understanding the thermal mapping within a stack based on its operating conditions ...
Taking the Temperature of Hydrothermal Ore Deposits Using Clumped Isotope Thermometry
Taking the Temperature of Hydrothermal Ore Deposits Using Clumped Isotope Thermometry
Abstract Better tools are needed to map the thermal structure of ore deposits. Here, carbonate clumped isotope thermometry is applied for the first time in epitherma...
Clumped isotope temperature reconstruction using stalagmite drip cups
Clumped isotope temperature reconstruction using stalagmite drip cups
Rationale Application of clumped isotope palaeothermometry to speleothems has been restricted largely to phreatic samples because of kinetic fractionation process...
Summer temperatures in southern Siberia not seen since the Holocene Thermal Maximum
Summer temperatures in southern Siberia not seen since the Holocene Thermal Maximum
The thermal history of continental Eurasia and regional responses to anthropogenic warming remains poorly understood prior to instrumental records. Like the faster-than-global warm...

Back to Top