Ocean acidification induced by atmospheric CO2 may be a major threat to marine ecosystems, particularly to calcareous nannoplankton. We show that, during the Aptian (~120 million years ago) Oceanic Anoxic Event 1a, which resulted from a massive addition of volcanic CO2, the morphological features of calcareous nannofossils traced the biological response to acidified surface waters. We observe the demise of heavily calcified nannoconids and reduced calcite paleofluxes at the beginning of a pre-anoxia calcification crisis. Ephemeral coccolith dwarfism and malformation represent species-specific adjustments to survive lower pH, whereas later, abundance peaks indicate intermittent alkalinity recovery. Deepwater acidification occurred with a del...
The Cretaceous has been characterized by intervals of super-greenhouse climate and profound environm...
The history of calcareous nannoplankton shows a general increase in species richness through the Mes...
The latest Cenomanian was a time of global paleoenvironmental changes: the normal pelagic sedimentat...
Ocean acidification induced by atmospheric CO2 may be a major threat to marine ecosystems, particula...
The Early Aptian (~120 Ma) Oceanic Anoxic Event (OAE)1a was caused by massive addition of volcanic C...
High-resolution sampling of the initial phase of both early Aptian oceanic anoxic event (OAE) 1a and...
Calcareous nannoplankton is an excellent proxy for detecting present and paste surface water conditi...
At present about one third of the carbon dioxide (CO2) released in the atmosphere from fossil fuel b...
The latest Cenomanian Oceanic Anoxic Event (OAE) 2 was a time of severe perturbations caused by natu...
The Aptian (~121 to ~113 Ma) has been characterized by super-greenhouse climate and profound environ...
The Cenomanian - Turonian Oceanic Anoxic Event 2 (OAE2) is one of the most pronounced perturbations ...
The latest Cenomanian Oceanic Anoxic Event 2 (OAE 2, ~ 94 Ma) represents a profound perturbation of ...
Earth history is punctuated by phases of extreme global stress of concurrent warming, ocean fertilis...
Coccolithopores are phytoplanktonic algae which produce a calcitic exoskeleton (coccosphere) and are...
The environmental changes associated with anthropogenic CO2 emissions will greatly influence the eco...
The Cretaceous has been characterized by intervals of super-greenhouse climate and profound environm...
The history of calcareous nannoplankton shows a general increase in species richness through the Mes...
The latest Cenomanian was a time of global paleoenvironmental changes: the normal pelagic sedimentat...
Ocean acidification induced by atmospheric CO2 may be a major threat to marine ecosystems, particula...
The Early Aptian (~120 Ma) Oceanic Anoxic Event (OAE)1a was caused by massive addition of volcanic C...
High-resolution sampling of the initial phase of both early Aptian oceanic anoxic event (OAE) 1a and...
Calcareous nannoplankton is an excellent proxy for detecting present and paste surface water conditi...
At present about one third of the carbon dioxide (CO2) released in the atmosphere from fossil fuel b...
The latest Cenomanian Oceanic Anoxic Event (OAE) 2 was a time of severe perturbations caused by natu...
The Aptian (~121 to ~113 Ma) has been characterized by super-greenhouse climate and profound environ...
The Cenomanian - Turonian Oceanic Anoxic Event 2 (OAE2) is one of the most pronounced perturbations ...
The latest Cenomanian Oceanic Anoxic Event 2 (OAE 2, ~ 94 Ma) represents a profound perturbation of ...
Earth history is punctuated by phases of extreme global stress of concurrent warming, ocean fertilis...
Coccolithopores are phytoplanktonic algae which produce a calcitic exoskeleton (coccosphere) and are...
The environmental changes associated with anthropogenic CO2 emissions will greatly influence the eco...
The Cretaceous has been characterized by intervals of super-greenhouse climate and profound environm...
The history of calcareous nannoplankton shows a general increase in species richness through the Mes...
The latest Cenomanian was a time of global paleoenvironmental changes: the normal pelagic sedimentat...