Marine acidification will be an important environmental problem in the near future as a result of persistent emissions of CO2 and dissolution into seawater. In this study, we found that calcification and respiration of the Zhikong scallop (Chlamys farreri) are likely to be severely affected by increasing acidification. Calcification and respiration significantly declined as pH decreased. The calcification rate decreased by 33% when the pH of water was 7.9 compared with a pH of 8.1, and decreased close to 0 when the pH was reduced to 7.3. CO2 and O2 respiratory rates were reduced by 14% and 11%, respectively, when pH decreased from 7.9 to 7.3. Increasing acidification also led to changes in the metabolic pathways of C. farreri. Under acidic ...
Ocean acidification is predicted to have severe consequences for calcifying marine organisms especia...
As a result of high anthropogenic CO2 emissions, the concentration of CO2 in the oceans has increase...
Oceanic uptake of CO2 from the atmosphere has significantly reduced surface seawater pH and altered ...
The increasing amount of dissolved anthropogenic CO2 has caused a drop in pH values in the open ocea...
Seven cruises were carried out in a bay scallop (Argopecten irradians) farming area and its surround...
Future ocean acidification (OA) will affect physiological traits of marine species, with calcifying ...
The decline in ocean water pH and changes in carbonate saturation states through anthropogenically m...
Ocean acidification (OA) will decrease shellfish growth and survival, with ecological and economic c...
participantAnthropogenic emissions of carbon dioxide (CO2) are rapidly increasing the atmospheric co...
The combined effect of ocean acidification and warming on the common cockle Cerastoderma edule was i...
The decline in ocean water pH and changes in carbonate saturation states through anthropogenically m...
Ocean acidification is a well recognised threat to marine ecosystems. High latitude regions are pred...
Over the next century, elevated quantities of atmospheric CO2 are expected to penetrate into the oce...
Estuarine organisms are exposed to periodic strong fluctuations in seawater pH driven by biological ...
As a result of high anthropogenic CO2 emissions, the concentration of CO2 in the oceans has increase...
Ocean acidification is predicted to have severe consequences for calcifying marine organisms especia...
As a result of high anthropogenic CO2 emissions, the concentration of CO2 in the oceans has increase...
Oceanic uptake of CO2 from the atmosphere has significantly reduced surface seawater pH and altered ...
The increasing amount of dissolved anthropogenic CO2 has caused a drop in pH values in the open ocea...
Seven cruises were carried out in a bay scallop (Argopecten irradians) farming area and its surround...
Future ocean acidification (OA) will affect physiological traits of marine species, with calcifying ...
The decline in ocean water pH and changes in carbonate saturation states through anthropogenically m...
Ocean acidification (OA) will decrease shellfish growth and survival, with ecological and economic c...
participantAnthropogenic emissions of carbon dioxide (CO2) are rapidly increasing the atmospheric co...
The combined effect of ocean acidification and warming on the common cockle Cerastoderma edule was i...
The decline in ocean water pH and changes in carbonate saturation states through anthropogenically m...
Ocean acidification is a well recognised threat to marine ecosystems. High latitude regions are pred...
Over the next century, elevated quantities of atmospheric CO2 are expected to penetrate into the oce...
Estuarine organisms are exposed to periodic strong fluctuations in seawater pH driven by biological ...
As a result of high anthropogenic CO2 emissions, the concentration of CO2 in the oceans has increase...
Ocean acidification is predicted to have severe consequences for calcifying marine organisms especia...
As a result of high anthropogenic CO2 emissions, the concentration of CO2 in the oceans has increase...
Oceanic uptake of CO2 from the atmosphere has significantly reduced surface seawater pH and altered ...