The bioleaching of an organic-rich polymetallic ore was conducted under conditions intended to probe the boundaries of microbial activity using iron and sulphur oxidising microorganisms and heterotrophs enriched from self-heating pyritic coal. Solution chemistry parameters such as rapidly increased ORP and reduction in pH subsequent to inoculation point to the development of active microbial communities. The ease with which communities adapted to the organic-rich ore and the bioleaching systems indicated that the organic compounds were not present in leachates at toxic levels. Overall, extractions obtained in three series of inoculated tests were at 35 °C: 79–96% Zn, 48–82% Cu, 47–55% Ni and 79–86% Co; at 55 °C: 96–97% Zn, 72–80% Cu, 46–50%...
During start-up of heap bioleaching, low grade ores may be treated with acid for agglomeration and t...
In the present work the microbial community of a low grade nickel ore demonstration-scale bioheap wa...
The microorganisms involved in the bioleaching of sulphidic mineral ores are acidophilic. Generally,...
Tank bioleaching of refractory sulphidic gold ores is well established, with potential to expand app...
Bioheap leaching of low grade copper sulphides has been applied successfully at the commercial scale...
Bioheap leaching of low grade copper sulphides has been applied successfully at the commercial scale...
Microbial communities and activities in multi-lift bioleaching heap of copper sulfide ore were inv...
International audienceWithin European research project NEMO, a bioleaching strategy was developed fo...
International audienceWithin European research project NEMO, a bioleaching strategy was developed fo...
Three largely-independent studies were undertaken on the same heap leach system during the period of...
Recent understanding of microbial retention within heap bioleaching systems has highlighted the impo...
The effects of temperature on chalcocite/pyrite oxidation and the microbial population in the biolea...
In heap bioleaching, acidophilic extremophiles contribute to enhanced metal extraction from mineral ...
In heap bioleaching, acidophilic extremophiles contribute to enhanced metal extraction from mineral ...
In the present work the microbial community of a low grade nickel ore demonstration-scale bioheap wa...
During start-up of heap bioleaching, low grade ores may be treated with acid for agglomeration and t...
In the present work the microbial community of a low grade nickel ore demonstration-scale bioheap wa...
The microorganisms involved in the bioleaching of sulphidic mineral ores are acidophilic. Generally,...
Tank bioleaching of refractory sulphidic gold ores is well established, with potential to expand app...
Bioheap leaching of low grade copper sulphides has been applied successfully at the commercial scale...
Bioheap leaching of low grade copper sulphides has been applied successfully at the commercial scale...
Microbial communities and activities in multi-lift bioleaching heap of copper sulfide ore were inv...
International audienceWithin European research project NEMO, a bioleaching strategy was developed fo...
International audienceWithin European research project NEMO, a bioleaching strategy was developed fo...
Three largely-independent studies were undertaken on the same heap leach system during the period of...
Recent understanding of microbial retention within heap bioleaching systems has highlighted the impo...
The effects of temperature on chalcocite/pyrite oxidation and the microbial population in the biolea...
In heap bioleaching, acidophilic extremophiles contribute to enhanced metal extraction from mineral ...
In heap bioleaching, acidophilic extremophiles contribute to enhanced metal extraction from mineral ...
In the present work the microbial community of a low grade nickel ore demonstration-scale bioheap wa...
During start-up of heap bioleaching, low grade ores may be treated with acid for agglomeration and t...
In the present work the microbial community of a low grade nickel ore demonstration-scale bioheap wa...
The microorganisms involved in the bioleaching of sulphidic mineral ores are acidophilic. Generally,...