Ocean acidification from fossil fuel burning is lowering the mean global ocean saturation state (Ω = Ca2+CO32−Ksp′), thus increasing the thermodynamic driving force for calcium carbonate minerals to dissolve. This dissolution process will eventually neutralize the input of anthropogenic CO2, but the relationship between Ω and calcite dissolution rates in seawater is still debated. Recent advances have also revealed that spectrophotometric measurements of seawater pHs, and therefore in-situ Ωs, are systematically lower than pHs/Ωs calculated from measurements of alkalinity (Alk) and total dissolved inorganic carbon (DIC). The location of the calcite saturation horizon, defined as the depth in the water column where Ω = 1, therefore shifts by...
The absorption, or uptake, of anthropogenic CO2 by the oceans results in a decrease in pH and carbon...
Under ocean acidification conditions, the chemistry of the seawater will change including a decrease...
The gradual decrease in the saturation state of calcium carbonate in the ocean due to the absorption...
Ocean acidification from fossil fuel burning is lowering the mean global ocean saturation state (Ω =...
Ocean acidification from fossil fuel burning is lowering the mean global ocean saturation state (Ω =...
Ocean acidification from fossil fuel burning is lowering the mean global ocean saturation state (Ω =...
Ocean acidification from fossil fuel burning is lowering the mean global ocean saturation state (Ω =...
The dissolution of CaCO₃ minerals in the ocean is a fundamental part of the marine alkalinity and ca...
Near-equilibrium calcite dissolution in seawater contributes significantly to the regulation of atmo...
Knowledge of calcite dissolution kinetics in seawater is a critical component of our understanding o...
Knowledge of calcite dissolution kinetics in seawater is a critical component of our understanding o...
Ocean acidification, in response to rising anthropogenic carbon dioxide concentration in the atmosph...
We present a novel determination of the dissolution kinetics of inorganic calcite in seawater. We di...
We present a novel determination of the dissolution kinetics of inorganic calcite in seawater. We di...
We present a novel determination of the dissolution kinetics of inorganic calcite in seawater. We di...
The absorption, or uptake, of anthropogenic CO2 by the oceans results in a decrease in pH and carbon...
Under ocean acidification conditions, the chemistry of the seawater will change including a decrease...
The gradual decrease in the saturation state of calcium carbonate in the ocean due to the absorption...
Ocean acidification from fossil fuel burning is lowering the mean global ocean saturation state (Ω =...
Ocean acidification from fossil fuel burning is lowering the mean global ocean saturation state (Ω =...
Ocean acidification from fossil fuel burning is lowering the mean global ocean saturation state (Ω =...
Ocean acidification from fossil fuel burning is lowering the mean global ocean saturation state (Ω =...
The dissolution of CaCO₃ minerals in the ocean is a fundamental part of the marine alkalinity and ca...
Near-equilibrium calcite dissolution in seawater contributes significantly to the regulation of atmo...
Knowledge of calcite dissolution kinetics in seawater is a critical component of our understanding o...
Knowledge of calcite dissolution kinetics in seawater is a critical component of our understanding o...
Ocean acidification, in response to rising anthropogenic carbon dioxide concentration in the atmosph...
We present a novel determination of the dissolution kinetics of inorganic calcite in seawater. We di...
We present a novel determination of the dissolution kinetics of inorganic calcite in seawater. We di...
We present a novel determination of the dissolution kinetics of inorganic calcite in seawater. We di...
The absorption, or uptake, of anthropogenic CO2 by the oceans results in a decrease in pH and carbon...
Under ocean acidification conditions, the chemistry of the seawater will change including a decrease...
The gradual decrease in the saturation state of calcium carbonate in the ocean due to the absorption...