Sediment-water fluxes are influenced by both hydrodynamics and sediment biogeochemical processes. However, fluxes at the sediment-water interface (SWI) are almost always analyzed from either a water-or sediment-side perspective. This study expands on previous work by comparing water-side (hydrodynamics and resulting diffusive boundary layer thickness, delta(DBL)) and sediment-side (oxygen consumption and resulting sediment oxic zone) approaches for evaluating diffusive sediment oxygen uptake rate (J(O2)) and delta DBL from microprofiles. Dissolved oxygen microprofile and current velocity data were analyzed using five common methods to estimate J(O2) and delta(DBL) and to assess the robustness of the approaches. Comparable values for J(O2) a...
A method is presented for the measurement of depth profiles of volumetric oxygen consumption rates i...
To understand water quality degradation during hypoxia, we need to understand sediment oxygen fluxes,...
Benthic oxygen fluxes calculated from in situ microelectrode profiles arc compared with benthic flux...
Sediment–water fluxes are influenced by both hydrodynamics and sediment biogeochemical processes. Ho...
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...
Information on benthic carbon mineralization rates is often derived from the analysis of oxygen micr...
Seiche-induced turbulence and the vertical distribution of dissolved oxygen above and within the sed...
At the scale of centimeters or millimeters, marine sediment surfaces are sculptured into complex thr...
Even though the O2 concentration in the diffusive boundary layer overlying natural aquatic sediments...
Dissolved oxygen (DO) distribution at the sediment–water interface of a flow over a smooth bed is in...
To assess the influence of boundary flow on interfacial oxygen flux in sediments inhabited by benthi...
A compilation of numerous studies of oxygen profiles in marine sediments and estimated fluxes across...
This paper presents a new non-invasive technique for measuring sediment O2 uptake that, in its conce...
Diffusion is the dominant physical mechanism for the transfer of oxygen into fine-grained aquatic se...
A method is presented for the measurement of depth profiles of volumetric oxygen consumption rates i...
To understand water quality degradation during hypoxia, we need to understand sediment oxygen fluxes,...
Benthic oxygen fluxes calculated from in situ microelectrode profiles arc compared with benthic flux...
Sediment–water fluxes are influenced by both hydrodynamics and sediment biogeochemical processes. Ho...
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...
Information on benthic carbon mineralization rates is often derived from the analysis of oxygen micr...
Seiche-induced turbulence and the vertical distribution of dissolved oxygen above and within the sed...
At the scale of centimeters or millimeters, marine sediment surfaces are sculptured into complex thr...
Even though the O2 concentration in the diffusive boundary layer overlying natural aquatic sediments...
Dissolved oxygen (DO) distribution at the sediment–water interface of a flow over a smooth bed is in...
To assess the influence of boundary flow on interfacial oxygen flux in sediments inhabited by benthi...
A compilation of numerous studies of oxygen profiles in marine sediments and estimated fluxes across...
This paper presents a new non-invasive technique for measuring sediment O2 uptake that, in its conce...
Diffusion is the dominant physical mechanism for the transfer of oxygen into fine-grained aquatic se...
A method is presented for the measurement of depth profiles of volumetric oxygen consumption rates i...
To understand water quality degradation during hypoxia, we need to understand sediment oxygen fluxes,...
Benthic oxygen fluxes calculated from in situ microelectrode profiles arc compared with benthic flux...