An experimental system has been set up to investigate the reaction kinetics of framboidal pyrite oxidation in real, reactive acid sulfate soil assemblages. This study was undertaken to determine the degree to which pyrite oxidation rates are reduced by bacteriological reactions and organic matter, which both modify the net reaction mechanisms and compete for available oxygen. The results from these experimental runs not only confirm the role of organic matter in mitigating pyrite oxidation, but indicate that, at least initially, the acidity produced is consumed or otherwise ameliorated by parallel reactions. Tracking pH or [H+] in both a reactor and in soil does not accurately reflect reaction progress, and may not correctly indicate the tr...
Pyrite oxidation is a significant process in many marine environments, including salt marshes, norma...
This thesis describes a kinetib study of the oxidation of pyrite in aqueous suspension by molecular ...
At an initial pH of 2, while abiotic oxidation of aqueous Fe2+ was enhanced by a flux of H2O2 at mic...
An experimental system has been set up to investigate the reaction kinetics of framboidal pyrite oxi...
Acid sulfate soils cover an estimated 13 million hectares (ha) worldwide, the largest concentration ...
Acid sulfate soils (ASS) are soils containing iron sulfide minerals (predominantly pyrite) and/or th...
This thesis examines sulfide oxidation in 4 physically and mineralogically diverse acid sulfate soil...
The transformation of potential into actual acid sulphate soils was studied in a 450 day column expe...
The products of pyrite oxidation, including solution phase Fe2+, Fe3+, S2O32-, S4O62-, SO32- and SO4...
The effects of acidic ground water are a major worldwide problem. Investigations under controlled la...
When acid sulfate soils with hypersulfidic material dry, oxidation of pyrite can cause strong acidif...
This paper reports the findings of two studies conducted to investigate the effects on pH, Eh and su...
According to the literature, pyrite (FeS2) oxidation has been previously determined to involve thios...
ACLThe oxidation of pyrite is one of the near field processes of the chemical evolution of clay rock...
International audienceThe acidophilic iron-oxidizing bacterium, Acidithiobacillus ferrooxidans, play...
Pyrite oxidation is a significant process in many marine environments, including salt marshes, norma...
This thesis describes a kinetib study of the oxidation of pyrite in aqueous suspension by molecular ...
At an initial pH of 2, while abiotic oxidation of aqueous Fe2+ was enhanced by a flux of H2O2 at mic...
An experimental system has been set up to investigate the reaction kinetics of framboidal pyrite oxi...
Acid sulfate soils cover an estimated 13 million hectares (ha) worldwide, the largest concentration ...
Acid sulfate soils (ASS) are soils containing iron sulfide minerals (predominantly pyrite) and/or th...
This thesis examines sulfide oxidation in 4 physically and mineralogically diverse acid sulfate soil...
The transformation of potential into actual acid sulphate soils was studied in a 450 day column expe...
The products of pyrite oxidation, including solution phase Fe2+, Fe3+, S2O32-, S4O62-, SO32- and SO4...
The effects of acidic ground water are a major worldwide problem. Investigations under controlled la...
When acid sulfate soils with hypersulfidic material dry, oxidation of pyrite can cause strong acidif...
This paper reports the findings of two studies conducted to investigate the effects on pH, Eh and su...
According to the literature, pyrite (FeS2) oxidation has been previously determined to involve thios...
ACLThe oxidation of pyrite is one of the near field processes of the chemical evolution of clay rock...
International audienceThe acidophilic iron-oxidizing bacterium, Acidithiobacillus ferrooxidans, play...
Pyrite oxidation is a significant process in many marine environments, including salt marshes, norma...
This thesis describes a kinetib study of the oxidation of pyrite in aqueous suspension by molecular ...
At an initial pH of 2, while abiotic oxidation of aqueous Fe2+ was enhanced by a flux of H2O2 at mic...