Hypolimnetic oxygen depletion in lakes is a widespread problem and is mainly controlled by the sediment oxygen uptake (SOU) and flux of reduced substances out of the sediments (Fred). Especially in eutrophic lakes, Fred may constitute a major fraction of the areal hypolimnetic mineralization rate, but its size and source is often poorly understood. Using a diagenetic reaction-transport model supported by a large data set of sediment porewater concentrations, bulk sediment core data and lake monitoring data, the behavior of Fred was simulated in eutrophic Lake Baldegg. Transient boundary conditions for the gross sedimentation of total organic carbon and for hypolimnetic O2 concentrations were applied to simulate the eutrophication and re-oli...
This study investigated the consumption of oxygen (O-2) in 11 European lakes ranging from 48 m to 37...
Sedimentary oxygen demand, SOD, is the uptake of dissolved oxygen, DO, by chemical and biological p...
Diagenesis of particulate organic matter in lake sediments consumes and produces chemical species th...
Hypolimnetic oxygen depletion in lakes is a widespread problem and is mainly controlled by the sedim...
The flux of reduced substances, such as methane and ammonium, from the sediment to the bottom water ...
A mechanistic, two-layer mass balance model for dissolved oxygen (DO) in Onondaga Lake, a hypereutro...
We quantified the areal hypolimnetic mineralization rate (AHM; total areal hypolimnetic oxygen deple...
Dissolved oxygen is an influential factor of aquatic ecosystem health. Future predictions of oxygen ...
Estimates of hypolimnetic water column (Jv) and sediment (JA) dissolved oxygen (DO) consumption rate...
Many lakes around the world have been exposed to increased nutrient input from anthropogenic sources...
Many lakes around the world have been exposed to increased nutrient input from anthropogenic sources...
A two-dimensional reservoir model was applied to simulate the vertical-longitudinal hy-drodynamics a...
Eutrophication increases hypoxia in lakes and reservoirs, causing deleterious effects on biological ...
Eutrophication increases hypoxia in lakes and reservoirs, causing deleterious effects on biological ...
Addressing the problems of low deep-water oxygen concentrations and impairment of cold-water fish ha...
This study investigated the consumption of oxygen (O-2) in 11 European lakes ranging from 48 m to 37...
Sedimentary oxygen demand, SOD, is the uptake of dissolved oxygen, DO, by chemical and biological p...
Diagenesis of particulate organic matter in lake sediments consumes and produces chemical species th...
Hypolimnetic oxygen depletion in lakes is a widespread problem and is mainly controlled by the sedim...
The flux of reduced substances, such as methane and ammonium, from the sediment to the bottom water ...
A mechanistic, two-layer mass balance model for dissolved oxygen (DO) in Onondaga Lake, a hypereutro...
We quantified the areal hypolimnetic mineralization rate (AHM; total areal hypolimnetic oxygen deple...
Dissolved oxygen is an influential factor of aquatic ecosystem health. Future predictions of oxygen ...
Estimates of hypolimnetic water column (Jv) and sediment (JA) dissolved oxygen (DO) consumption rate...
Many lakes around the world have been exposed to increased nutrient input from anthropogenic sources...
Many lakes around the world have been exposed to increased nutrient input from anthropogenic sources...
A two-dimensional reservoir model was applied to simulate the vertical-longitudinal hy-drodynamics a...
Eutrophication increases hypoxia in lakes and reservoirs, causing deleterious effects on biological ...
Eutrophication increases hypoxia in lakes and reservoirs, causing deleterious effects on biological ...
Addressing the problems of low deep-water oxygen concentrations and impairment of cold-water fish ha...
This study investigated the consumption of oxygen (O-2) in 11 European lakes ranging from 48 m to 37...
Sedimentary oxygen demand, SOD, is the uptake of dissolved oxygen, DO, by chemical and biological p...
Diagenesis of particulate organic matter in lake sediments consumes and produces chemical species th...