Abstract Bioleaching, a novel biotechnological process, is used to eliminate heavy metals from contaminated sediments by acidification as well as solubilization of heavy metals. Metals from poor-quality ore and mineral compounds are removed by Bioleaching process, which is simple and low cost effective technology. Acidophilic sulfur oxidizing bacteria (Acidithiobacillus ferrooxidans, Acidithiobacillus thioosidans) transforms toxic metal sulphides to less toxic sulphates. Trace elements are processed by using sulfur oxidizing microorganisms (Aspergillus niger). Heap bioleaching of chalcocite ores is widely used as a relatively low cost process option, especially for marginal deposits. Aspergillus niger has good leaching efficiency in the ext...
A multitude of microbes are involved in the solubilisation of minerals and metals as this approach o...
In this research, efforts were made to examine bioleaching behaviour of copper from a low grade Indi...
Sulfuric acid solution containing ferric iron is the extractant for industrial heap bioleaching of c...
Bioleaching of heavy metals from abandoned Ag-Au mine tailings was carried out using Acidithiobacill...
Spent catalysts are considered as hazardous residues of major concern, mainly due to the simultaneou...
An extreme thermophilic, iron-sulphur oxidising bacterial culture was isolated and adapted to tol...
With the rapid depletion of high grade ores and concerns about environmental degradation, the ...
The aim of this study was to investigate the effect of bacterial strains on the bioleaching of Cr, C...
Solid waste from sulfuric acid production may contain relatively high levels of metals such as Fe, Z...
Microbially catalyzed reactions, which occur in the natural sulfur cycle, have been integrated in a ...
Precipitates and sludges from the galvanic industry are one of the sources of the environment contam...
680-683Present study assesses efficiency of bioleaching to decontaminate heavy metal laden soil affe...
In recent years, the heavy metal contamination in the environment, due to the high industrial and mi...
In the present study, the effect of ferrous sulfate concentration and total solids on bioleaching of...
The aim of the study was to evaluate the application of bioleaching technique to reduce content of s...
A multitude of microbes are involved in the solubilisation of minerals and metals as this approach o...
In this research, efforts were made to examine bioleaching behaviour of copper from a low grade Indi...
Sulfuric acid solution containing ferric iron is the extractant for industrial heap bioleaching of c...
Bioleaching of heavy metals from abandoned Ag-Au mine tailings was carried out using Acidithiobacill...
Spent catalysts are considered as hazardous residues of major concern, mainly due to the simultaneou...
An extreme thermophilic, iron-sulphur oxidising bacterial culture was isolated and adapted to tol...
With the rapid depletion of high grade ores and concerns about environmental degradation, the ...
The aim of this study was to investigate the effect of bacterial strains on the bioleaching of Cr, C...
Solid waste from sulfuric acid production may contain relatively high levels of metals such as Fe, Z...
Microbially catalyzed reactions, which occur in the natural sulfur cycle, have been integrated in a ...
Precipitates and sludges from the galvanic industry are one of the sources of the environment contam...
680-683Present study assesses efficiency of bioleaching to decontaminate heavy metal laden soil affe...
In recent years, the heavy metal contamination in the environment, due to the high industrial and mi...
In the present study, the effect of ferrous sulfate concentration and total solids on bioleaching of...
The aim of the study was to evaluate the application of bioleaching technique to reduce content of s...
A multitude of microbes are involved in the solubilisation of minerals and metals as this approach o...
In this research, efforts were made to examine bioleaching behaviour of copper from a low grade Indi...
Sulfuric acid solution containing ferric iron is the extractant for industrial heap bioleaching of c...