The top layer of natural rapid sand filtration was found to effectively oxidise arsenite (As(III)) in groundwater treatment. However, the oxidation pathway has not yet been identified. The aim of this study was to investigate whether naturally formed manganese oxide (MnO2), present on filter grains, could abiotically be responsible for As(III) oxidation in the top of a rapid sand filter. For this purpose As(III) oxidation with two MnO2 containing powders was investigated in aerobic water containing manganese(II) (Mn(II)), iron(II) (Fe(II)) and/or iron(III) (Fe(III)). The first MnO2 powder was a very pure - commercially available - natural MnO2 powder. The second originated from a filter sand coating, produced over 22 years in a rapid filter...
Arsenic (III) is much more toxic and difficult in removal than Arsenic (V) by conventional arsenic r...
Conventional groundwater treatment plants consist of aeration and rapid sand filtration steps, that ...
In this study we investigate opportunities for reducing arsenic (As) to low levels, below 1 μg/L in ...
The top layer of natural rapid sand filtration was found to effectively oxidise arsenite (As(III)) i...
Oxidation of As(III) by natural manganese (hydr)oxides is an important geochemical reaction mediatin...
Arsenic is known as a toxic element to humans, and has been reported to co-exist with iron and manga...
Manganese (Mn) oxides are extensively used to oxidize As(III) present in ground, drinking, and waste...
Sparks, Donald L.Arsenic contamination of groundwater and soils is a major global environmental chal...
Manganese (hydr)oxides are powerful oxidants mediating the transformation of As(III) to As(V) under ...
(arsenate) by freshwater lake sediments insouthern Saskatchewan was examined. Treating the sediments...
Arsenic (As) contamination of drinking water is a threat to global health. Manganese(III/IV) (Mn) ox...
High arsenic (As) concentrations can be found in drinking water around the world, the consumption of...
Mobilization of arsenic (As) in the subsurface environment can result in elevated concentrations of ...
Manganese (hydr)oxides (MnO x) is a powerful oxidant in the oxidation of As(III) in natural environm...
The aim of this study is to investigate removal of low As concentrations from groundwater at a Drink...
Arsenic (III) is much more toxic and difficult in removal than Arsenic (V) by conventional arsenic r...
Conventional groundwater treatment plants consist of aeration and rapid sand filtration steps, that ...
In this study we investigate opportunities for reducing arsenic (As) to low levels, below 1 μg/L in ...
The top layer of natural rapid sand filtration was found to effectively oxidise arsenite (As(III)) i...
Oxidation of As(III) by natural manganese (hydr)oxides is an important geochemical reaction mediatin...
Arsenic is known as a toxic element to humans, and has been reported to co-exist with iron and manga...
Manganese (Mn) oxides are extensively used to oxidize As(III) present in ground, drinking, and waste...
Sparks, Donald L.Arsenic contamination of groundwater and soils is a major global environmental chal...
Manganese (hydr)oxides are powerful oxidants mediating the transformation of As(III) to As(V) under ...
(arsenate) by freshwater lake sediments insouthern Saskatchewan was examined. Treating the sediments...
Arsenic (As) contamination of drinking water is a threat to global health. Manganese(III/IV) (Mn) ox...
High arsenic (As) concentrations can be found in drinking water around the world, the consumption of...
Mobilization of arsenic (As) in the subsurface environment can result in elevated concentrations of ...
Manganese (hydr)oxides (MnO x) is a powerful oxidant in the oxidation of As(III) in natural environm...
The aim of this study is to investigate removal of low As concentrations from groundwater at a Drink...
Arsenic (III) is much more toxic and difficult in removal than Arsenic (V) by conventional arsenic r...
Conventional groundwater treatment plants consist of aeration and rapid sand filtration steps, that ...
In this study we investigate opportunities for reducing arsenic (As) to low levels, below 1 μg/L in ...