Acidification of the oceans by increasing anthropogenic CO2 emissions will cause a decrease in biogenic calcification and an increase in carbonate dissolution. Previous studies have suggested that carbonate dissolution will occur in polar regions and in the deep sea where saturation state with respect to carbonate minerals (Omega) will be 1. This is probably related to the dissolution of reef carbonate (Mg-calcite), which is more soluble than aragonite. However, the threshold of Omega for the dissolution of natural sediments has not been clearly determined. We designed an experimental dissolution system with conditions mimicking those of a natural coral reef, and measured the dissolution rates of aragonite in corals, and of Mg-calcite excre...
The success of coral reefs depends on a positive balance of calcium carbonate production exceeding d...
Ocean acidification (OA) is expected to negatively affect the calcium carbonate (CaCO3) budget of co...
Acidification of seawater owing to oceanic uptake of atmospheric CO2 originating from human activiti...
Acidification of the oceans by increasing anthropogenic CO2 emissions will cause a decrease in bioge...
Ocean acidification (OA), the decrease in surface ocean pH and seawater saturation state with respec...
We present the dissolution kinetics of mixed planktic foraminifera, the benthic foraminifera Amphist...
The bulk dissolution rates of six biogenic carbonates (goose barnacle, benthic foraminifera, bryozoa...
Ocean acidification (OA) is predicted to have a significant impact on the future of coral reefs, mai...
Ocean acidification (OA) is expected to have drastic effects on the future of coral reefs, mainly th...
Rising atmospheric CO2 is acidifying the world's oceans, affecting both calcification and dissolutio...
International audienceRising atmospheric CO2 is acidifying the world's oceans, affecting both calcif...
Rising atmospheric pCO2 and ocean acidification originating from human activities could result in in...
Dissolution of permeable calcium carbonate (CaCO3) sand on coral reefs is likely driven by environme...
Eight-month-old blocks of the coral Porites lobata colonized by natural Hawaiian euendolithic and ep...
Under ocean acidification conditions, the chemistry of the seawater will change including a decrease...
The success of coral reefs depends on a positive balance of calcium carbonate production exceeding d...
Ocean acidification (OA) is expected to negatively affect the calcium carbonate (CaCO3) budget of co...
Acidification of seawater owing to oceanic uptake of atmospheric CO2 originating from human activiti...
Acidification of the oceans by increasing anthropogenic CO2 emissions will cause a decrease in bioge...
Ocean acidification (OA), the decrease in surface ocean pH and seawater saturation state with respec...
We present the dissolution kinetics of mixed planktic foraminifera, the benthic foraminifera Amphist...
The bulk dissolution rates of six biogenic carbonates (goose barnacle, benthic foraminifera, bryozoa...
Ocean acidification (OA) is predicted to have a significant impact on the future of coral reefs, mai...
Ocean acidification (OA) is expected to have drastic effects on the future of coral reefs, mainly th...
Rising atmospheric CO2 is acidifying the world's oceans, affecting both calcification and dissolutio...
International audienceRising atmospheric CO2 is acidifying the world's oceans, affecting both calcif...
Rising atmospheric pCO2 and ocean acidification originating from human activities could result in in...
Dissolution of permeable calcium carbonate (CaCO3) sand on coral reefs is likely driven by environme...
Eight-month-old blocks of the coral Porites lobata colonized by natural Hawaiian euendolithic and ep...
Under ocean acidification conditions, the chemistry of the seawater will change including a decrease...
The success of coral reefs depends on a positive balance of calcium carbonate production exceeding d...
Ocean acidification (OA) is expected to negatively affect the calcium carbonate (CaCO3) budget of co...
Acidification of seawater owing to oceanic uptake of atmospheric CO2 originating from human activiti...