Summarization: Zero-valent iron can be used to remove inorganic arsenic from aqueous solutions. The mechanism for arsenic removal appears to be a surface precipitation or adsorption of arsenic with iron. This mechanism differs significantly from the removal mechanisms of chlorinated hydrocarbons (reductive dechlorination) and chromium(VI) reduction accompanied by hydroxide precipitation. Arsenic removal efficiencies of greater than 95% are observed in laboratory and field-column studies. Arsenate is removed more effectively than arsenite; however, effective arsenite removal occurs even under anoxic conditions. The removal efficiency is related to the surface area or the type of iron used and improved over time, possibly due to pitting of th...
International audienceNanoscale zero-valent iron (NZVI) was synthesized and tested for the removal o...
International audienceNanoscale zero-valent iron (NZVI) was synthesized and tested for the removal o...
It has corne to light that countries like India (West Bengal region) and Bangladesh are facing serio...
Summarization: Field and laboratory studies were conducted to elucidate the design factors and mecha...
Background: Zero-valent iron can control the sites contaminated Arsenic (V) used. The aim of this re...
Arsenic contamination of ground water resources used for potable water supply is an emerging problem...
This research investigated the mechanisms controlling chromate and arsenate removal by zerovalent ir...
Arsenic has long been recognized as a toxin and carcinogen. Arsenic contaminated drinking water pro...
Groundwater contamination with arsenic (As) has been recognized as a serious problem and there are v...
In treating hydrometallurgical solutions and waste streams for the removal of arsenic, the use of co...
Summarization: The objective of this study was to identify the corrosion products which are formed o...
Arsenic removal by passive treatment, in which naturally present Fe(II) is oxidized by aeration and...
Arsenic is one of the most hazardous pollutants of water resources which threaten human health as we...
Serious cases of arsenic toxicity of people drinking water have led to the development ...
This study investigated the removal of dissolved arsenite (As(III)) using a 100-\ud mesh zero valent...
International audienceNanoscale zero-valent iron (NZVI) was synthesized and tested for the removal o...
International audienceNanoscale zero-valent iron (NZVI) was synthesized and tested for the removal o...
It has corne to light that countries like India (West Bengal region) and Bangladesh are facing serio...
Summarization: Field and laboratory studies were conducted to elucidate the design factors and mecha...
Background: Zero-valent iron can control the sites contaminated Arsenic (V) used. The aim of this re...
Arsenic contamination of ground water resources used for potable water supply is an emerging problem...
This research investigated the mechanisms controlling chromate and arsenate removal by zerovalent ir...
Arsenic has long been recognized as a toxin and carcinogen. Arsenic contaminated drinking water pro...
Groundwater contamination with arsenic (As) has been recognized as a serious problem and there are v...
In treating hydrometallurgical solutions and waste streams for the removal of arsenic, the use of co...
Summarization: The objective of this study was to identify the corrosion products which are formed o...
Arsenic removal by passive treatment, in which naturally present Fe(II) is oxidized by aeration and...
Arsenic is one of the most hazardous pollutants of water resources which threaten human health as we...
Serious cases of arsenic toxicity of people drinking water have led to the development ...
This study investigated the removal of dissolved arsenite (As(III)) using a 100-\ud mesh zero valent...
International audienceNanoscale zero-valent iron (NZVI) was synthesized and tested for the removal o...
International audienceNanoscale zero-valent iron (NZVI) was synthesized and tested for the removal o...
It has corne to light that countries like India (West Bengal region) and Bangladesh are facing serio...