© 2016 Elsevier B.V. At Site U1385, drilled during IODP Expedition 339 off the coast of Portugal on the continental slope, high-resolution sulfate concentration measurements in the pore fluids display non-steady-state behavior. At this site there is a zone of sulfate reduction in the uppermost seven meters of sediment, followed by a 38-meter interval where sulfate concentrations do not change, and finally sulfate concentrations are depleted to zero between 45 and 55. meters below seafloor. Below the sulfate minimum zone, there is abundant methane, suggesting that the lower sulfate consumption zone is coupled to anaerobic methane oxidation. We analyze pore water samples from IODP Site U1385 for sulfur and oxygen isotope ratios of dissolved s...
The anaerobic oxidation of methane coupled with sulfate reduction (AOM-SR) is a major microbially-me...
The anaerobic oxidation of methane coupled with sulfate reduction (AOM-SR) is a major microbially-me...
The anaerobic oxidation of methane coupled with sulfate reduction (AOM-SR) is a major microbially-me...
At Site U1385, drilled during IODP Expedition 339 off the coast of Portugal on the continental slope...
At Site U1385, drilled during IODP Expedition 339 off the coast of Portugal on the continental slope...
Changes in the major element and related isotope profiles in porewaters of organic-rich sediments su...
The marine sulfate inventory represents the largest standing pool of electron acceptors, which, via ...
Separating the contributions of anaerobic oxidation of methane and organoclastic sulfate reduction i...
Pore-water sulfate concentration and sulfur isotopic composition within marine sediments are control...
AbstractWe present new sulfur and oxygen isotope data in sulfate (δ34SSO4 and δ18OSO4, respectively)...
Isotope signatures of sulfur compounds are key tools for studying sulfur cycling in the modern envir...
AbstractWe use multiple stable isotope measurements in two highly stratified estuaries located along...
Bacterially-catalyzed sulfate reduction is the dominant respiratory pathway in much of the deep subs...
Interstitial water samples from seven ODP sites (Leg 181, Sites 1119–1125) of the southwestern Pacif...
Isotope signatures of sulfur compounds are key tools for studying sulfur cycling in the modern envir...
The anaerobic oxidation of methane coupled with sulfate reduction (AOM-SR) is a major microbially-me...
The anaerobic oxidation of methane coupled with sulfate reduction (AOM-SR) is a major microbially-me...
The anaerobic oxidation of methane coupled with sulfate reduction (AOM-SR) is a major microbially-me...
At Site U1385, drilled during IODP Expedition 339 off the coast of Portugal on the continental slope...
At Site U1385, drilled during IODP Expedition 339 off the coast of Portugal on the continental slope...
Changes in the major element and related isotope profiles in porewaters of organic-rich sediments su...
The marine sulfate inventory represents the largest standing pool of electron acceptors, which, via ...
Separating the contributions of anaerobic oxidation of methane and organoclastic sulfate reduction i...
Pore-water sulfate concentration and sulfur isotopic composition within marine sediments are control...
AbstractWe present new sulfur and oxygen isotope data in sulfate (δ34SSO4 and δ18OSO4, respectively)...
Isotope signatures of sulfur compounds are key tools for studying sulfur cycling in the modern envir...
AbstractWe use multiple stable isotope measurements in two highly stratified estuaries located along...
Bacterially-catalyzed sulfate reduction is the dominant respiratory pathway in much of the deep subs...
Interstitial water samples from seven ODP sites (Leg 181, Sites 1119–1125) of the southwestern Pacif...
Isotope signatures of sulfur compounds are key tools for studying sulfur cycling in the modern envir...
The anaerobic oxidation of methane coupled with sulfate reduction (AOM-SR) is a major microbially-me...
The anaerobic oxidation of methane coupled with sulfate reduction (AOM-SR) is a major microbially-me...
The anaerobic oxidation of methane coupled with sulfate reduction (AOM-SR) is a major microbially-me...