Potential low-cost sorption materials (mostly industrial by-products) were screened for removal of arsenic from mine effluent water. First, the maximum adsorption capacities were determined in batch tests with various liquid to solid ratios. The highest arsenic sorption capacity, 46 mg As/g of sorption material, was measured for cast iron chips. The most promising materials were also studied in batch tests that assessed the reaction kinetics and in kinetic column tests for their behavior in a filter or reactive barrier application. The column tests revealed the cast iron chips caused clogging in the percolation column when operating with real mine water. A commercial ferric oxi-hydroxide sorption material developed for As removal for drinki...
This research is aimed at a broad audience of rural populations affected by drinking arsenic-contami...
Arsenic contamination of ground water resources used for potable water supply is an emerging problem...
Among the different technologies for reducing arsenic concentration in drinking water, adsorption ha...
Potential low-cost sorption materials (mostly industrial by-products) were screened for removal of a...
In this study, removal of arsenic ions using two industrial by-products as adsorbents is represented...
Natural iron ores were tested as adsorbents for the removal of arsenic from contaminated water. Inve...
In the present study, waste and low-cost materials like Cast-Iron Filings (wastes from mechanical wo...
Arsenic, a common toxic element is mainly transported in the environment by water. Arsenic in drinki...
Arsenic has been classified as a toxic and carcinogenic chemical element. It therefore presents a se...
The paper is devoted to the development of a method for obtaining and using iron-containing sorption...
The paper is devoted to the development of a method for obtaining and using iron-containing sorption...
There is a global need to develop low-cost technologies to remove arsenic from water for individual ...
Arsenic (As) is a highly toxic metalloid found in ground and surface water. Arsenic contamination in...
Abstract. The possibility of removing soluble arsenic from water during the application of a treatme...
This review was compiled to summarize the technologies currently being investigated to remove arseni...
This research is aimed at a broad audience of rural populations affected by drinking arsenic-contami...
Arsenic contamination of ground water resources used for potable water supply is an emerging problem...
Among the different technologies for reducing arsenic concentration in drinking water, adsorption ha...
Potential low-cost sorption materials (mostly industrial by-products) were screened for removal of a...
In this study, removal of arsenic ions using two industrial by-products as adsorbents is represented...
Natural iron ores were tested as adsorbents for the removal of arsenic from contaminated water. Inve...
In the present study, waste and low-cost materials like Cast-Iron Filings (wastes from mechanical wo...
Arsenic, a common toxic element is mainly transported in the environment by water. Arsenic in drinki...
Arsenic has been classified as a toxic and carcinogenic chemical element. It therefore presents a se...
The paper is devoted to the development of a method for obtaining and using iron-containing sorption...
The paper is devoted to the development of a method for obtaining and using iron-containing sorption...
There is a global need to develop low-cost technologies to remove arsenic from water for individual ...
Arsenic (As) is a highly toxic metalloid found in ground and surface water. Arsenic contamination in...
Abstract. The possibility of removing soluble arsenic from water during the application of a treatme...
This review was compiled to summarize the technologies currently being investigated to remove arseni...
This research is aimed at a broad audience of rural populations affected by drinking arsenic-contami...
Arsenic contamination of ground water resources used for potable water supply is an emerging problem...
Among the different technologies for reducing arsenic concentration in drinking water, adsorption ha...