International audienceThis work presents the possibility of optimising 3D organised mesoporous silica (OMS) coated with both iron and aluminium oxides for the optimal removal of As(III) and As(V) from synthetic contaminated water. The materials developed were fully characterised and were tested for removing arsenic in batch experiments. The effect of total Al to Fe oxides coating on the selective removal of As(III) and As(V) was studied. It was shown that 8% metal coating was the optimal configuration for the coated OMS materials in.removing arsenic. The effect of arsenic initial concentration and pH, kinetics and diffusion mechanisms was studied, modelled and discussed. It was shown that the advantage of an organised material over an un-st...
Arsenic, is one of the most harmful elements to human health that continuously causes a threat to th...
Arsenic (As) is a highly toxic metalloid found in ground and surface water. Arsenic contamination in...
Groundwater arsenic contamination has emerged as a major health threat to millions of people around ...
International audienceThis work presents the possibility of optimising 3D organised mesoporous silic...
Millions of people worldwide are at risk from the presence of arsenic in groundwater. In this study,...
[[abstract]]This paper aims at the feasibility of arsenate and arsenite removal by reclaimed iron-ox...
Ordered mesoporous Al2O3 and Fe-Al2O3 materials were synthesized at room temperature by an easy and ...
In this research, adsorption of arsenic As(V) by iron oxide coated sep...
ABSTRACT: In this study, the removal of As (V) from water resources by using aluminum-coated pumice ...
Arsenic pollution in ground and drinking water is a major problem worldwide due to the natural abund...
Mesoporous aluminium magnesium oxide composites with varying composition (Mg content: 0-100%) and hi...
Arsenic pollution of water is a major problem faced worldwide. Arsenic is a suspected carcinogen in ...
Abstract—In this work mesoporous silica (MS) material was synthesized using block-co-polymer and use...
In this research, adsorption of arsenic As(V) by iron oxide coated sepiolite (IC-SEP) was studied. S...
Stable iron and manganese oxide pillared clays were synthesized with high surface area and studied a...
Arsenic, is one of the most harmful elements to human health that continuously causes a threat to th...
Arsenic (As) is a highly toxic metalloid found in ground and surface water. Arsenic contamination in...
Groundwater arsenic contamination has emerged as a major health threat to millions of people around ...
International audienceThis work presents the possibility of optimising 3D organised mesoporous silic...
Millions of people worldwide are at risk from the presence of arsenic in groundwater. In this study,...
[[abstract]]This paper aims at the feasibility of arsenate and arsenite removal by reclaimed iron-ox...
Ordered mesoporous Al2O3 and Fe-Al2O3 materials were synthesized at room temperature by an easy and ...
In this research, adsorption of arsenic As(V) by iron oxide coated sep...
ABSTRACT: In this study, the removal of As (V) from water resources by using aluminum-coated pumice ...
Arsenic pollution in ground and drinking water is a major problem worldwide due to the natural abund...
Mesoporous aluminium magnesium oxide composites with varying composition (Mg content: 0-100%) and hi...
Arsenic pollution of water is a major problem faced worldwide. Arsenic is a suspected carcinogen in ...
Abstract—In this work mesoporous silica (MS) material was synthesized using block-co-polymer and use...
In this research, adsorption of arsenic As(V) by iron oxide coated sepiolite (IC-SEP) was studied. S...
Stable iron and manganese oxide pillared clays were synthesized with high surface area and studied a...
Arsenic, is one of the most harmful elements to human health that continuously causes a threat to th...
Arsenic (As) is a highly toxic metalloid found in ground and surface water. Arsenic contamination in...
Groundwater arsenic contamination has emerged as a major health threat to millions of people around ...