Cells of Saccharomyces cerevisiae and their metabolites were successfully utilized to achieve selective separation of quartz and calcite through microbially induced flotation and flocculation. S. cerevisiae was adapted to calcite and quartz minerals. Adsorption studies and electrokinetic investigations were carried out to understand the changes in the surface chemistry of yeast cells and the minerals after mutual interaction. Possible mechanisms in microbially induced flotation and flocculation are outlined
Quartz and calcite are the representative gangue minerals exited in the hematite ores while the inte...
The formation of biofilms on solid surfaces is a universal bacterial strategy for survival and optim...
Interaction of Bacillus polymyxa with calcite, hematite, corundum and quartz resulted in significant...
Cells of Saccharomyces cerevisiae and their metabolites were successfully utilized to achieve select...
The utility of yeast, Saccharomyces cerevisiae, in the separation of quartz from hematite is demonst...
Cells and metabolic products of Bacillus polymyxa were successfully used in flocculation and flotati...
Selective separation of pyrite from quartz and calcite was achieved through microbiologically induce...
Cells and metabolic products of Desulfovibrio desulfuricans were successfully used to separate quart...
Selective separation of haematite from alumina and silica/calcite was achieved through microbiologic...
Cells of Paenibacillus polymyxa and their metabolite products were successfully utilized to achieve ...
Selective separation of alumina, silica, calcite and apatite from hematite was achieved through micr...
The increasing demand for minerals worldwide and the depletion of high-grade ores necessitate the ex...
Selective separation of pyrite and galena from mixture of the two minerals was achieved through inte...
Quartz and calcite are the representative gangue minerals exited in the hematite ores while the inte...
The formation of biofilms on solid surfaces is a universal bacterial strategy for survival and optim...
Interaction of Bacillus polymyxa with calcite, hematite, corundum and quartz resulted in significant...
Cells of Saccharomyces cerevisiae and their metabolites were successfully utilized to achieve select...
The utility of yeast, Saccharomyces cerevisiae, in the separation of quartz from hematite is demonst...
Cells and metabolic products of Bacillus polymyxa were successfully used in flocculation and flotati...
Selective separation of pyrite from quartz and calcite was achieved through microbiologically induce...
Cells and metabolic products of Desulfovibrio desulfuricans were successfully used to separate quart...
Selective separation of haematite from alumina and silica/calcite was achieved through microbiologic...
Cells of Paenibacillus polymyxa and their metabolite products were successfully utilized to achieve ...
Selective separation of alumina, silica, calcite and apatite from hematite was achieved through micr...
The increasing demand for minerals worldwide and the depletion of high-grade ores necessitate the ex...
Selective separation of pyrite and galena from mixture of the two minerals was achieved through inte...
Quartz and calcite are the representative gangue minerals exited in the hematite ores while the inte...
The formation of biofilms on solid surfaces is a universal bacterial strategy for survival and optim...
Interaction of Bacillus polymyxa with calcite, hematite, corundum and quartz resulted in significant...