Water quality response in a reservoir has often been assessed using relatively restricted datasets that cannot provide sufficient information, thereby giving rise to a dramatic over- or underestimate of actual figures. In this paper we discuss how the levels of metallic elements between the sediment and overlying water in an estuarine reservoir can be influenced by aquatic parameters in response to spatial and seasonal conditions. To better elucidate the interfacial exchange between sediment and water, statistical analyses are employed to intensive data sets collected from the Yeongsan Reservoir (YSR), Korea, which has undergone widespread deterioration in water quality due to the continuous growth of anthropogenic sources. During three sea...
We studied factors affecting the accumulation, mobility and availability of metals in intertidal wet...
High concentrations of manganese (>50 mu g L-1) and iron (>226-467 mu g L-1) have caused water...
Climate change and land use may significantly influence metal cycling in dynamic river systems. We s...
Munger ZW, Carey CC, Gerling AB, Doubek JP, Hamre KD, McClure RP, Schreiber ME. 2018. Oxygenation an...
International audienceIn a hydroelectric reservoir, sediments are subject to remobilization events, ...
We studied the concentration of a series of transition metals including Mn and Fe in an estuarine fi...
During the last several decades, human-related activities and populations have increased markedly al...
Concentrations of Fe, Mn, Cd, Co, Ni, Pb, and Zn were determined in pore water and sediment of a coa...
Heavy metals in surface water systems can be from natural or human sources. Sediments play auseful r...
The distributions of Fe, Mn, Ni, Cu, Zn and As in the water column, interstitial waters and associat...
This paper reports work to determine the impact that concentrations of manganese (Mn) and iron (Fe) ...
This paper reviews the factors affecting trace metal behaviour in estuarine and riverine floodplain ...
Various hydrogeochemical processes can modify the quality of river water during riverbank filtration...
The release of nanophase metal particles from sulfide mineral decomposition in mining-impacted envir...
Nutrient inputs to estuarine and coastal waters worldwide are increasing and this in turn is increas...
We studied factors affecting the accumulation, mobility and availability of metals in intertidal wet...
High concentrations of manganese (>50 mu g L-1) and iron (>226-467 mu g L-1) have caused water...
Climate change and land use may significantly influence metal cycling in dynamic river systems. We s...
Munger ZW, Carey CC, Gerling AB, Doubek JP, Hamre KD, McClure RP, Schreiber ME. 2018. Oxygenation an...
International audienceIn a hydroelectric reservoir, sediments are subject to remobilization events, ...
We studied the concentration of a series of transition metals including Mn and Fe in an estuarine fi...
During the last several decades, human-related activities and populations have increased markedly al...
Concentrations of Fe, Mn, Cd, Co, Ni, Pb, and Zn were determined in pore water and sediment of a coa...
Heavy metals in surface water systems can be from natural or human sources. Sediments play auseful r...
The distributions of Fe, Mn, Ni, Cu, Zn and As in the water column, interstitial waters and associat...
This paper reports work to determine the impact that concentrations of manganese (Mn) and iron (Fe) ...
This paper reviews the factors affecting trace metal behaviour in estuarine and riverine floodplain ...
Various hydrogeochemical processes can modify the quality of river water during riverbank filtration...
The release of nanophase metal particles from sulfide mineral decomposition in mining-impacted envir...
Nutrient inputs to estuarine and coastal waters worldwide are increasing and this in turn is increas...
We studied factors affecting the accumulation, mobility and availability of metals in intertidal wet...
High concentrations of manganese (>50 mu g L-1) and iron (>226-467 mu g L-1) have caused water...
Climate change and land use may significantly influence metal cycling in dynamic river systems. We s...