Increased atmospheric CO2 concentration is leading to changes in the carbonate chemistry and the temperature of the ocean. The impact of these processes on marine organisms will depend on their ability to cope with those changes, particularly the maintenance of calcium carbonate structures. Both a laboratory experiment (long-term exposure to decreased pH and increased temperature) and collections of individuals from natural environments characterized by low pH levels (individuals from intertidal pools and around a CO2 seep) were here coupled to comprehensively study the impact of near-future conditions of pH and temperature on the mechanical properties of the skeleton of the euechinoid sea urchin Paracentrotus lividus. To assess skeletal me...
Anthropogenic carbon dioxide (CO2) emissions are increasing the atmospheric CO2 concentration and th...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Continuous anthropogenic CO2 emissions to the atmosphere and uptake by the oceans will cause a reduc...
Increased atmospheric CO2 concentration is leading to changes in the carbonate chemistry and the tem...
Increased atmospheric CO2 concentration is leading to changes in the carbonate chemistry and the tem...
Sea urchins, ecologically important herbivores of shallow subtidal temperate reefs, are considered p...
The current increase in atmospheric CO2 concentration induces changes in the seawater carbonate syst...
We examined the long-term effects of near-future changes in temperature and acidification on skeleta...
We examined the long-term effects of near-future changes in temperature and acidification on skeleta...
We examined the long-term effects of near-future changes in temperature and acidification on skeleta...
We examined the long-term effects of near-future changes in temperature and acidification on skeleta...
Atmospheric carbon dioxide (pCO2) has risen from approximately 280 to 400 ppm since the Industrial R...
Ocean warming (OW) and acidification (OA) are intensively investigated as they pose major threats to...
Continuous anthropogenic CO2 emissions to the atmosphere and uptake by the oceans will cause a reduc...
Abstract. Available evidence on the impact of acidifica-tion and its interaction with warming on the...
Anthropogenic carbon dioxide (CO2) emissions are increasing the atmospheric CO2 concentration and th...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Continuous anthropogenic CO2 emissions to the atmosphere and uptake by the oceans will cause a reduc...
Increased atmospheric CO2 concentration is leading to changes in the carbonate chemistry and the tem...
Increased atmospheric CO2 concentration is leading to changes in the carbonate chemistry and the tem...
Sea urchins, ecologically important herbivores of shallow subtidal temperate reefs, are considered p...
The current increase in atmospheric CO2 concentration induces changes in the seawater carbonate syst...
We examined the long-term effects of near-future changes in temperature and acidification on skeleta...
We examined the long-term effects of near-future changes in temperature and acidification on skeleta...
We examined the long-term effects of near-future changes in temperature and acidification on skeleta...
We examined the long-term effects of near-future changes in temperature and acidification on skeleta...
Atmospheric carbon dioxide (pCO2) has risen from approximately 280 to 400 ppm since the Industrial R...
Ocean warming (OW) and acidification (OA) are intensively investigated as they pose major threats to...
Continuous anthropogenic CO2 emissions to the atmosphere and uptake by the oceans will cause a reduc...
Abstract. Available evidence on the impact of acidifica-tion and its interaction with warming on the...
Anthropogenic carbon dioxide (CO2) emissions are increasing the atmospheric CO2 concentration and th...
Increasing atmospheric carbon dioxide (CO2) has resulted in a change in seawater chemistry and lower...
Continuous anthropogenic CO2 emissions to the atmosphere and uptake by the oceans will cause a reduc...