Double refractory gold ore (DRGO) not only include ppt levels of gold grains locked in sulfide minerals but also a problematic amount of carbonaceous matter. This causes a significant recovery loss of gold during cyanidation because of the strong affinity of the Au(CN)2− with the carbonaceous matter. Combustion decreases the carbonaceous matter content, but also emits pollutant gases like CO2, SO2 and As2O3. Therefore, environmentally-friendly solutions have been explored by using biotechnology. Due to the very small amount of the above targets in the ore, it is challenging to show evidential changes in solid-phase before and after the biomineral processing of DRGO. This chapter introduces the mineralogical and chemical changes in the vario...
The use of autotrophic and heterotrophic microorganisms in the solublisation of gold from refractory...
Using iron- and sulfur-oxidising bacteria to catalyse the breakdown of sulfides that host the gold i...
Funding Information: The work was financially supported by Outotec (Finland) Oy. In addition, GoldTa...
In the recovery of gold from refractory gold ores, pretreatment is required to decompose sulphides a...
Refractory gold ores contain metal sulphides that encapsulate gold and prevent its dissolution by cy...
Sulfide minerals, like pyrite and arsenopyrite, are of economical interest due to the presence of...
Bioleaching has emerged as a green technology with promising applications in mining industries in th...
This article contains the results of experiments to recover gold from complex mineral raw materials ...
Using iron and sulphur oxidising bacteria to catalyse the breakdown of sulphides that host the gold ...
This thesis is a survey of treatments for the recovery of gold from refractory ores. An elucidation ...
The role of biological agents in the mining industry is currently limited to the use of microorganis...
In an era of electronics, recovering the precious metal such as gold from ever increasing piles of e...
The recent discovery of gold$nely intergrown with the complex metal sulphides in the Tertiary volca...
Journal ArticleAlthough most gold production from primary resources is achieved by cyanidation, many...
Iron arsenides may be the key to extraction of gold from existing refractory ores such as that at Ba...
The use of autotrophic and heterotrophic microorganisms in the solublisation of gold from refractory...
Using iron- and sulfur-oxidising bacteria to catalyse the breakdown of sulfides that host the gold i...
Funding Information: The work was financially supported by Outotec (Finland) Oy. In addition, GoldTa...
In the recovery of gold from refractory gold ores, pretreatment is required to decompose sulphides a...
Refractory gold ores contain metal sulphides that encapsulate gold and prevent its dissolution by cy...
Sulfide minerals, like pyrite and arsenopyrite, are of economical interest due to the presence of...
Bioleaching has emerged as a green technology with promising applications in mining industries in th...
This article contains the results of experiments to recover gold from complex mineral raw materials ...
Using iron and sulphur oxidising bacteria to catalyse the breakdown of sulphides that host the gold ...
This thesis is a survey of treatments for the recovery of gold from refractory ores. An elucidation ...
The role of biological agents in the mining industry is currently limited to the use of microorganis...
In an era of electronics, recovering the precious metal such as gold from ever increasing piles of e...
The recent discovery of gold$nely intergrown with the complex metal sulphides in the Tertiary volca...
Journal ArticleAlthough most gold production from primary resources is achieved by cyanidation, many...
Iron arsenides may be the key to extraction of gold from existing refractory ores such as that at Ba...
The use of autotrophic and heterotrophic microorganisms in the solublisation of gold from refractory...
Using iron- and sulfur-oxidising bacteria to catalyse the breakdown of sulfides that host the gold i...
Funding Information: The work was financially supported by Outotec (Finland) Oy. In addition, GoldTa...