Abstract The chemolithoautotrophic bacterium, Acidithiobacillus ferrooxidans, commonly occurs in acid mine drainage (AMD) environments where it is responsible for catalyzing the oxidation of pyrite and concomitant development of acidic conditions. This investigation reports on the growth of this bacterial species on the pyrite surface and in the aqueous phase at a pH close to 2 as well as the role of adsorbed lipid in preventing pyrite dissolution. Both acid washed pyrite and acid-washed pyrite coated with lipids were used as substrates in the studies. The choice of lipid, 1,2-bis(10,12-tricosadiynoyl)-sn-Glycero-3-Phosphocholine lipid (23:2 Diyne PC), a phosphocholine lipid, was based on earlier work that showed that this lipid inhibits th...
This paper discusses the selective depression of pyrite from chalcopyrite and arsenopyrite by biomod...
AbstractIn the current study, the action of two bacteria capable of producing biosurfactants and oxi...
Acidithiobacillus ferrooxidans has been shown to be a good depressant of pyrite in freshwater and se...
Acid mine drainage (AMD) resulting from the oxidation of metal-sulfides, primarily pyrite, is a sign...
The effect of Acidithiobacillus ferrooxidans on the humic-acid passivation layer on pyrite surfaces ...
Pyrite oxidation by mixed mesophilic acidophiles was conducted under conditions of controlled and no...
This article is an open access article distributed under the terms and conditions of the Creative C...
Given the low-cost and eco-friendly method, biotechnology has been widely utilized in industries as ...
Adhesion of Thiobacillus ferrooxidans to pyrite and chalcopyrite in relation to its importance in bi...
Artículo de publicación ISIBioleaching of metal sulfides is an interfacial process where biofilm for...
Presence of sulfide minerals in flotation tailings poses an environmental threat due to enhanced aci...
Acid mine drainage (AMD), which is also known as acid rock drainage (ARD), can cause serious environ...
Acid mine drainages (AMDs) arise at the weathering of sulphidic minerals. The occurrence of acidic s...
The oxidation of pyrite in a mine tailings heap in Romania was studied to clarify the contribution o...
At an initial pH of 2, while abiotic oxidation of aqueous Fe2+ was enhanced by a flux of H2O2 at mic...
This paper discusses the selective depression of pyrite from chalcopyrite and arsenopyrite by biomod...
AbstractIn the current study, the action of two bacteria capable of producing biosurfactants and oxi...
Acidithiobacillus ferrooxidans has been shown to be a good depressant of pyrite in freshwater and se...
Acid mine drainage (AMD) resulting from the oxidation of metal-sulfides, primarily pyrite, is a sign...
The effect of Acidithiobacillus ferrooxidans on the humic-acid passivation layer on pyrite surfaces ...
Pyrite oxidation by mixed mesophilic acidophiles was conducted under conditions of controlled and no...
This article is an open access article distributed under the terms and conditions of the Creative C...
Given the low-cost and eco-friendly method, biotechnology has been widely utilized in industries as ...
Adhesion of Thiobacillus ferrooxidans to pyrite and chalcopyrite in relation to its importance in bi...
Artículo de publicación ISIBioleaching of metal sulfides is an interfacial process where biofilm for...
Presence of sulfide minerals in flotation tailings poses an environmental threat due to enhanced aci...
Acid mine drainage (AMD), which is also known as acid rock drainage (ARD), can cause serious environ...
Acid mine drainages (AMDs) arise at the weathering of sulphidic minerals. The occurrence of acidic s...
The oxidation of pyrite in a mine tailings heap in Romania was studied to clarify the contribution o...
At an initial pH of 2, while abiotic oxidation of aqueous Fe2+ was enhanced by a flux of H2O2 at mic...
This paper discusses the selective depression of pyrite from chalcopyrite and arsenopyrite by biomod...
AbstractIn the current study, the action of two bacteria capable of producing biosurfactants and oxi...
Acidithiobacillus ferrooxidans has been shown to be a good depressant of pyrite in freshwater and se...