A novel granular media developed by the coating of iron, barium and sulfur on quartz sand surface has been demonstrated to be an effective sorbent for removal of arsenic(V) from a 0.01 M NaNO3-Spiked distilled water system in laboratory-scale tests. The results of fixed bed studies indicate that arsenic(V) removal is dependent on pH, the size of sorbent and influent arsenic concentrations. The particle size of media has shown significant differences in reactor breakthrough times in similar experimental conditions. The removal of As(V) may be explained using the surface complexation theory. The presence of alkalinity (250-260 mg/L as CaCO3) and hardness (200 mg/L as CaCO3) slightly increases reactor breakthrough time for similar experimental...
This study investigated the feasibility of using reduced iron sulfide (FeS) as a permeable reactive ...
Abstract: The drinking water from a small drinking water system contained ar-senic in a concentratio...
Arsenic, a common toxic element is mainly transported in the environment by water. Arsenic in drinki...
A novel granular media developed by the coating of iron, barium and sulfur on quartz sand surface ha...
A medium known as sulfate modified iron oxide coated sand (SMIOCS) was evaluated for the removal of ...
A medium developed by coating BaSO4 and Fe on quartz sand known as sulfate-modified iron oxide-coate...
Abstract: A medium known as sulfate modified iron oxide coated sand (SMIOCS) was evaluated for the r...
A medium known as sulfate modified iron oxide coated sand (SMIOCS) was evaluated for the removal of ...
In this study, removal of arsenic ions using two industrial by-products as adsorbents is represented...
[[abstract]]This paper aims at the feasibility of arsenate and arsenite removal by reclaimed iron-ox...
© 2016 Taylor & Francis Group, London.Arsenic contamination in water sources is a global problem. Ad...
Arsenic (As) is a highly toxic metalloid found in ground and surface water. Arsenic contamination in...
In this research, adsorption of arsenic As(V) by iron oxide coated sep...
518-525Present study is carried out for the removal of As(III) from water using commonly available ...
In this research, adsorption of arsenic As(V) by iron oxide coated sepiolite (IC-SEP) was studied. S...
This study investigated the feasibility of using reduced iron sulfide (FeS) as a permeable reactive ...
Abstract: The drinking water from a small drinking water system contained ar-senic in a concentratio...
Arsenic, a common toxic element is mainly transported in the environment by water. Arsenic in drinki...
A novel granular media developed by the coating of iron, barium and sulfur on quartz sand surface ha...
A medium known as sulfate modified iron oxide coated sand (SMIOCS) was evaluated for the removal of ...
A medium developed by coating BaSO4 and Fe on quartz sand known as sulfate-modified iron oxide-coate...
Abstract: A medium known as sulfate modified iron oxide coated sand (SMIOCS) was evaluated for the r...
A medium known as sulfate modified iron oxide coated sand (SMIOCS) was evaluated for the removal of ...
In this study, removal of arsenic ions using two industrial by-products as adsorbents is represented...
[[abstract]]This paper aims at the feasibility of arsenate and arsenite removal by reclaimed iron-ox...
© 2016 Taylor & Francis Group, London.Arsenic contamination in water sources is a global problem. Ad...
Arsenic (As) is a highly toxic metalloid found in ground and surface water. Arsenic contamination in...
In this research, adsorption of arsenic As(V) by iron oxide coated sep...
518-525Present study is carried out for the removal of As(III) from water using commonly available ...
In this research, adsorption of arsenic As(V) by iron oxide coated sepiolite (IC-SEP) was studied. S...
This study investigated the feasibility of using reduced iron sulfide (FeS) as a permeable reactive ...
Abstract: The drinking water from a small drinking water system contained ar-senic in a concentratio...
Arsenic, a common toxic element is mainly transported in the environment by water. Arsenic in drinki...