Seiche-induced turbulence and the vertical distribution of dissolved oxygen above and within the sediment were analyzed to evaluate the sediment oxygen uptake rate (JO2), diffusive boundary layer thickness (δDBL), and sediment oxic zone depth (zmax) in situ. High temporal-resolution microprofiles across the sediment-water interface and current velocity data within the bottom boundary layer in a medium-sized mesotrophic lake were obtained during a 12-h field study. We resolved the dynamic forcing of a full 8-h seiche cycle and evaluated JO2 from both sides of the sediment-water interface. Turbulence (characterized by the energy dissipation rate, ε), the vertical distribution of dissolved oxygen across the sediment-water interface (characteri...
Dissolved oxygen (DO) distribution at the sediment–water interface of a flow over a smooth bed is in...
Information on benthic carbon mineralization rates is often derived from the analysis of oxygen micr...
Sediment plays a key role in controlling the oxygen demand of aquatic systems. The reaction rate, pe...
Seiche-induced turbulence and the vertical distribution of dissolved oxygen above and within the sed...
Sediment–water fluxes are influenced by both hydrodynamics and sediment biogeochemical processes. Ho...
Sediment-water fluxes are influenced by both hydrodynamics and sediment biogeochemical processes. Ho...
Turbulent oxygen transport from the overlying stratified water column into the bottom boundary layer...
AbstractBenthic oxygen dynamics and the exchange of oxygen and other solutes across the sediment‐wat...
Sedimentary oxygen demand, SOD, is the uptake of dissolved oxygen, DO, by chemical and biological p...
Sedimentary oxygen demand, SOD, frequently the major oxygen consumer in lakes, is the uptake of dis...
In shallow environments, common unsteady flows, such as tides, waves or wind-driven currents modulat...
Even though the O2 concentration in the diffusive boundary layer overlying natural aquatic sediments...
Oxygen depletion in bottom waters of lakes and coastal regions is expanding worldwide. To examine th...
To assess the influence of boundary flow on interfacial oxygen flux in sediments inhabited by benthi...
To understand water quality degradation during hypoxia, we need to understand sediment oxygen fluxes,...
Dissolved oxygen (DO) distribution at the sediment–water interface of a flow over a smooth bed is in...
Information on benthic carbon mineralization rates is often derived from the analysis of oxygen micr...
Sediment plays a key role in controlling the oxygen demand of aquatic systems. The reaction rate, pe...
Seiche-induced turbulence and the vertical distribution of dissolved oxygen above and within the sed...
Sediment–water fluxes are influenced by both hydrodynamics and sediment biogeochemical processes. Ho...
Sediment-water fluxes are influenced by both hydrodynamics and sediment biogeochemical processes. Ho...
Turbulent oxygen transport from the overlying stratified water column into the bottom boundary layer...
AbstractBenthic oxygen dynamics and the exchange of oxygen and other solutes across the sediment‐wat...
Sedimentary oxygen demand, SOD, is the uptake of dissolved oxygen, DO, by chemical and biological p...
Sedimentary oxygen demand, SOD, frequently the major oxygen consumer in lakes, is the uptake of dis...
In shallow environments, common unsteady flows, such as tides, waves or wind-driven currents modulat...
Even though the O2 concentration in the diffusive boundary layer overlying natural aquatic sediments...
Oxygen depletion in bottom waters of lakes and coastal regions is expanding worldwide. To examine th...
To assess the influence of boundary flow on interfacial oxygen flux in sediments inhabited by benthi...
To understand water quality degradation during hypoxia, we need to understand sediment oxygen fluxes,...
Dissolved oxygen (DO) distribution at the sediment–water interface of a flow over a smooth bed is in...
Information on benthic carbon mineralization rates is often derived from the analysis of oxygen micr...
Sediment plays a key role in controlling the oxygen demand of aquatic systems. The reaction rate, pe...