Javascript must be enabled to continue!
Mechanism of Pyrite Depression by Marine Fe(Ii)-Oxidizing Bacteria in Seawater Flotation
View through CrossRef
Seawater flotation is a promising technique to reduce environmental and economic loads in mineral processing. This study attempted to depress pyrite, a common gangue sulfide mineral, using two marine iron (Fe) oxidizing bacteria (MFeOB), Thalassospira sp. TF-1 and Mariprofundus sp. E-4, in seawater flotation without pH control; the MFeOB could contribute to hydrophilization of the pyrite surface by oxidation and/or adhesion of bacterial cells. Pyrite or chalcopyrite samples were preconditioned in seawater containing MFeOB for different times (15 min or 30 min). As a result of flotation experiments, the recovery of pyrite preconditioned without MFeOB (i.e., control sample) decreased to 64.2% after 30 min reaction. The same recovery was observed when pyrite was preconditioned with Thalassospira sp. TF-1, whereas the recovery was successfully decreased to 20.2% after preconditioning with Mariprofundus sp. E-4 for 30 min. X-ray photoelectron spectroscopy analysis of preconditioned pyrite samples showed no significant difference of Fe-oxidizing compounds between with and without MFeOB reaction, suggesting that the formation of hydrophilic substances such as Fe(OH)3 derived from pyrite oxidation by MFeOB is unlikely to be the main reason for the pyrite depression by Mariprofundus sp. E-4. The adhesion experiment revealed that MFeOB cells could cover the pyrite surface but not the chalcopyrite surface, showing that the hydrophilicity of Mariprofundus sp. E-4 cell caused the pyrite depression. This result suggests that the hydrophilic/hydrophobic properties of bacterial cells are a significant determining factor in pyrite recovery in seawater flotation in the case of MFeOB.
Title: Mechanism of Pyrite Depression by Marine Fe(Ii)-Oxidizing Bacteria in Seawater Flotation
Description:
Seawater flotation is a promising technique to reduce environmental and economic loads in mineral processing.
This study attempted to depress pyrite, a common gangue sulfide mineral, using two marine iron (Fe) oxidizing bacteria (MFeOB), Thalassospira sp.
TF-1 and Mariprofundus sp.
E-4, in seawater flotation without pH control; the MFeOB could contribute to hydrophilization of the pyrite surface by oxidation and/or adhesion of bacterial cells.
Pyrite or chalcopyrite samples were preconditioned in seawater containing MFeOB for different times (15 min or 30 min).
As a result of flotation experiments, the recovery of pyrite preconditioned without MFeOB (i.
e.
, control sample) decreased to 64.
2% after 30 min reaction.
The same recovery was observed when pyrite was preconditioned with Thalassospira sp.
TF-1, whereas the recovery was successfully decreased to 20.
2% after preconditioning with Mariprofundus sp.
E-4 for 30 min.
X-ray photoelectron spectroscopy analysis of preconditioned pyrite samples showed no significant difference of Fe-oxidizing compounds between with and without MFeOB reaction, suggesting that the formation of hydrophilic substances such as Fe(OH)3 derived from pyrite oxidation by MFeOB is unlikely to be the main reason for the pyrite depression by Mariprofundus sp.
E-4.
The adhesion experiment revealed that MFeOB cells could cover the pyrite surface but not the chalcopyrite surface, showing that the hydrophilicity of Mariprofundus sp.
E-4 cell caused the pyrite depression.
This result suggests that the hydrophilic/hydrophobic properties of bacterial cells are a significant determining factor in pyrite recovery in seawater flotation in the case of MFeOB.
Related Results
Genesis of the Canadian Malartic, Côté Gold, and Musselwhite gold deposits: insights from LA-ICP-MS element mapping of pyrite
Genesis of the Canadian Malartic, Côté Gold, and Musselwhite gold deposits: insights from LA-ICP-MS element mapping of pyrite
Pyrite efficiently incorporates many key metals during progressive precipitation and thus records the chemical evolution of fluids from which it was deposited. To reveal this infor...
A Critical Review of Nanobubble Flotation for Seawater Treatment Process
A Critical Review of Nanobubble Flotation for Seawater Treatment Process
The growth in public demand for clean water is increasing due to the development of the population, triggering the decline in clean water resources. Seawater provides an unrestrict...
Depression of Pyrite in Seawater Flotation by Guar Gum
Depression of Pyrite in Seawater Flotation by Guar Gum
The application of guar gum for pyrite depression in seawater flotation was assessed through microflotation tests, Focused Beam Reflectance Measurements (FBRM), and Particle Vision...
Novel pyrite depressant at low alkalinity: Selective adsorption mechanism and its application in separation of galena from high-sulfur lead ore
Novel pyrite depressant at low alkalinity: Selective adsorption mechanism and its application in separation of galena from high-sulfur lead ore
Low-alkalinity flotation separation of galena from pyrite is challenging yet important. In this study, N-(2-hydroxyethyl) ethylenediamine-N, N', N'-triacetic acid...
Correlation between postpartum depression and the number of births
Correlation between postpartum depression and the number of births
IntroductionPostpartum depression is a disorder that usually occurs six weeks after birth and can last for up to a year. If postpartum depression is not diagnosed and treated, ther...
Study on the effect of seawater on making and curing of unreinforced concrete applications
Study on the effect of seawater on making and curing of unreinforced concrete applications
Concrete, an essential component of worldwide infrastructure, depends significantly on fresh water for its manufacturing, contributing to freshwater scarcity in many regions. As co...
Oxidation of pyrite: Consequences and significance
Oxidation of pyrite: Consequences and significance
This paper presents the most important studies on the oxidation of pyrite particularly in aqueous solutions. The consequences of pyrite oxidation was examined, as well as its impor...
A Critical Review of Nanobubbles Flotation for Seawater Desalination
A Critical Review of Nanobubbles Flotation for Seawater Desalination
The growth in public demand for clean water is increasing due to the development of the population, triggering the decline in clean water resources. Seawater desalination provides ...

