Methane, as a clean energy source and a potent greenhouse gas, is produced in marine sediments by microbes via complex biogeochemical processes associated with the mineralization of organic matter. Quantitative modeling of biogeochemical processes is a crucial way to advance the understanding of the global carbon cycle and the past, present, and future of climate change. Here, we present a new approach of dynamic transport-reaction model combined with sediment deposition. Compared to other studies, since the model does not need the methane concentration in the bottom of sediments and predicts that value, it provides us with a robust carbon budget estimation tool in the sediment. We applied the model to the Blake Ridge region (Ocean Drilling...
Methane is a potent greenhouse gas that is produced in marine sediments containing high amounts of d...
Methane has been detected in several cores of rapidly deposited (> 50 m/my) deep sea sediments. Othe...
We produced a two-dimensional geological time- and basin-scale model of the sedimentary margin in pa...
Methane, as a clean energy source and a potent greenhouse gas, is produced in marine sediments by mi...
A simplified version of a kinetic–bioenergetic reaction model for anaerobic oxidation of methane (AO...
A simplified version of a kinetic–bioenergetic reaction model for anaerobic oxidation of methane (AO...
A novel methodology for predicting upward diffusive fluxes of dissolved methane in gassy marine sedi...
Methane is a powerful greenhouse gas that is produced in large quantities in marine sediments. Micro...
Marine sediments near continental margins contain sedimentary organic matter (SOM) which is subject ...
Diffusion and reaction of chemical species in ocean sediments are important processes in global cycl...
Methane hydrate found in marine sediments is thought to contain gigaton quantities of methane and is...
The amount and formation rate of methane in marine sediments is a crucial aspect when determining bo...
A one-dimensional reaction-transport model is used to investigate the dynamics of methane gas in coa...
The subsurface seabed is a gigantic bioreactor and would also be a substantial source for methane on...
Methane gas hydrates in marine sediments often concentrate in coarse-grained layers surrounded by fi...
Methane is a potent greenhouse gas that is produced in marine sediments containing high amounts of d...
Methane has been detected in several cores of rapidly deposited (> 50 m/my) deep sea sediments. Othe...
We produced a two-dimensional geological time- and basin-scale model of the sedimentary margin in pa...
Methane, as a clean energy source and a potent greenhouse gas, is produced in marine sediments by mi...
A simplified version of a kinetic–bioenergetic reaction model for anaerobic oxidation of methane (AO...
A simplified version of a kinetic–bioenergetic reaction model for anaerobic oxidation of methane (AO...
A novel methodology for predicting upward diffusive fluxes of dissolved methane in gassy marine sedi...
Methane is a powerful greenhouse gas that is produced in large quantities in marine sediments. Micro...
Marine sediments near continental margins contain sedimentary organic matter (SOM) which is subject ...
Diffusion and reaction of chemical species in ocean sediments are important processes in global cycl...
Methane hydrate found in marine sediments is thought to contain gigaton quantities of methane and is...
The amount and formation rate of methane in marine sediments is a crucial aspect when determining bo...
A one-dimensional reaction-transport model is used to investigate the dynamics of methane gas in coa...
The subsurface seabed is a gigantic bioreactor and would also be a substantial source for methane on...
Methane gas hydrates in marine sediments often concentrate in coarse-grained layers surrounded by fi...
Methane is a potent greenhouse gas that is produced in marine sediments containing high amounts of d...
Methane has been detected in several cores of rapidly deposited (> 50 m/my) deep sea sediments. Othe...
We produced a two-dimensional geological time- and basin-scale model of the sedimentary margin in pa...