An eleven-box model of the ocean-atmosphere subsystem of the global carbon cycle is developed to study the potential contribution of continental rock weathering and oceanic sedimentation to the variations of the atmospheric CO2 pressure over glacial-interglacial timescales. The model is capable of reproducing the distribution of total dissolved inorganic carbon, total alkalinity, phosphate, delta C-13, and Delta C-14 between the various ocean basins today, as well as the partial pressure of atmospheric CO2. A simple sedimentation scheme at 20 different depth levels drives carbonate deposition and dissolution as a function of the depths of carbonate and aragonite lysoclines in each ocean basins considered (Atlantic, Antarctic and Indo-Paci...
Atmospheric CO2 and global climate are closely coupled. Since 800 ka CO2 concentrations have been up...
A numerical model describing the coupled evolution of the biogeochemical cycles of carbon, sulfur, c...
[1] The glacial/interglacial rise in atmospheric pCO2 is one of the best known changes in paleoclima...
An 11-box model of the oceanic carbon cycle including sedimentary processes is used to explore the r...
A reduction of the carbonate-carbon to organic-carbon export rain ratio during glacial times has bee...
The role of continental weathering in the global carbon cycle is presented, focussing on the CO2 con...
A reduction of the carbonate-carbon to organic-carbon export rain ratio during glacial times is comm...
The potential role of silicate weathering changes for explaining glacial-interglacial variations of ...
We examine the importance of the rock weathering feedback mechanism during the last deglacial period...
© 2016 Elsevier Ltd Atmospheric CO2 and global climate are closely coupled. Since 800 ka CO2 concent...
International audienceIt has been proposed that increased rates of chemical weathering and the relat...
International audienceAtmospheric CO2 and global climate are closely coupled. Since 800 ka CO2 conce...
Atmospheric CO2 and global climate are closely coupled. Since 800 ka CO2 concentrations have been up...
A reduction of the carbonate-carbon to organic-carbon export rain ratio during glacial times has bee...
We use an Earth system model of intermediate complexity, CLIMBER-2, to investigate what recent impro...
Atmospheric CO2 and global climate are closely coupled. Since 800 ka CO2 concentrations have been up...
A numerical model describing the coupled evolution of the biogeochemical cycles of carbon, sulfur, c...
[1] The glacial/interglacial rise in atmospheric pCO2 is one of the best known changes in paleoclima...
An 11-box model of the oceanic carbon cycle including sedimentary processes is used to explore the r...
A reduction of the carbonate-carbon to organic-carbon export rain ratio during glacial times has bee...
The role of continental weathering in the global carbon cycle is presented, focussing on the CO2 con...
A reduction of the carbonate-carbon to organic-carbon export rain ratio during glacial times is comm...
The potential role of silicate weathering changes for explaining glacial-interglacial variations of ...
We examine the importance of the rock weathering feedback mechanism during the last deglacial period...
© 2016 Elsevier Ltd Atmospheric CO2 and global climate are closely coupled. Since 800 ka CO2 concent...
International audienceIt has been proposed that increased rates of chemical weathering and the relat...
International audienceAtmospheric CO2 and global climate are closely coupled. Since 800 ka CO2 conce...
Atmospheric CO2 and global climate are closely coupled. Since 800 ka CO2 concentrations have been up...
A reduction of the carbonate-carbon to organic-carbon export rain ratio during glacial times has bee...
We use an Earth system model of intermediate complexity, CLIMBER-2, to investigate what recent impro...
Atmospheric CO2 and global climate are closely coupled. Since 800 ka CO2 concentrations have been up...
A numerical model describing the coupled evolution of the biogeochemical cycles of carbon, sulfur, c...
[1] The glacial/interglacial rise in atmospheric pCO2 is one of the best known changes in paleoclima...