To understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-rich sites are increasingly being used as OA analogues. However, the characterization of these naturally CO2-rich sites is often limited to OA-related variables, neglecting additional environmental variables that may confound OA effects. Here, we used an extensive array of sediment and bottom water parameters to evaluate pH effects on sediment microbial communities at hydrothermal CO2 seeps in Papua New Guinea. The geochemical composition of the sediment pore water showed variations in the hydrothermal signature at seep sites with comparable pH, allowing the identification of sites that may better represent future OA scenarios. At these sites...
Natural CO2 venting systems can mimic conditions that resemble intermediate to high pCO2 levels as p...
SummaryOcean acidification (OA) is one of the global issues caused by rising atmospheric CO2. The ri...
Natural CO2 venting systems can mimic conditions that resemble intermediate to high pCO2 levels as p...
To understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-...
To understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-...
To understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-...
Hassenrück C, Fink A, Lichtschlag A, Tegetmeyer H, de Beer D, Ramette A. Quantification of the effec...
To understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-...
o understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-r...
To understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-...
Ocean acidification (OA) is a major threat to marine systems. Very little is known about OA effects ...
Ocean acidification (OA) is a major threat to marine systems. Very little is known about OA effects ...
Anthropogenic CO2 emissions are causing oceans to become more acidic, with consequences for all mari...
Anthropogenic CO2 emissions are causing oceans to become more acidic, with consequences for all mari...
As the atmospheric CO2 concentration rises, more CO2 will dissolve in the oceans, leading to a reduc...
Natural CO2 venting systems can mimic conditions that resemble intermediate to high pCO2 levels as p...
SummaryOcean acidification (OA) is one of the global issues caused by rising atmospheric CO2. The ri...
Natural CO2 venting systems can mimic conditions that resemble intermediate to high pCO2 levels as p...
To understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-...
To understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-...
To understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-...
Hassenrück C, Fink A, Lichtschlag A, Tegetmeyer H, de Beer D, Ramette A. Quantification of the effec...
To understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-...
o understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-r...
To understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-...
Ocean acidification (OA) is a major threat to marine systems. Very little is known about OA effects ...
Ocean acidification (OA) is a major threat to marine systems. Very little is known about OA effects ...
Anthropogenic CO2 emissions are causing oceans to become more acidic, with consequences for all mari...
Anthropogenic CO2 emissions are causing oceans to become more acidic, with consequences for all mari...
As the atmospheric CO2 concentration rises, more CO2 will dissolve in the oceans, leading to a reduc...
Natural CO2 venting systems can mimic conditions that resemble intermediate to high pCO2 levels as p...
SummaryOcean acidification (OA) is one of the global issues caused by rising atmospheric CO2. The ri...
Natural CO2 venting systems can mimic conditions that resemble intermediate to high pCO2 levels as p...