Pyrite weathering often occurs in nature and causes heavy metal ion pollution and acid mine drainage during the process. Humic acid (HA) is a critical natural organic material that can bind metal ions, thus affecting metal transfer and transformation. In this work, in situ electrochemical techniques combined with spectroscopic analysis were adopted to investigate the interfacial processes involved in pyrite weathering with/without HA. The results showed that the pyrite weathering mechanism with/without HA is FeS2 -> Fe2+ + 2S(0) + 2e(-). The presence of HA did not change the pyrite weathering mechanism, but HA adsorbs on the pyrite surface and inhibits the further transformation of sulfur. Furthermore, HA and Fe(II) ions can form complex at...
This research was designed to answer the question: can conventionally polished mineral surfaces be u...
The oxygen pressure leaching of pyrite has been studied in sulfuric and perchloric acid using an oxy...
The removal of pyrite from coal by flotation or any other surface chemistry based separation process...
Galena weathering often occurs in nature and releases metal ions during the process. Humic acid (HA)...
We investigated the electrochemical corrosion behavior of pyrite in simulated acid rain with differe...
A detailed study of the electrochemical behavior of pyrite under typical bio-leaching conditions has...
Recently, the acid sedimentary soft rock that caused a collapse of the cutting ground has appeared i...
The effect of Acidithiobacillus ferrooxidans on the humic-acid passivation layer on pyrite surfaces ...
Complex sulfide ores are usually found as a mixture of various sulfide and gangue minerals, and frot...
In situ electrochemical studies on the oxidation behavior of pyrite in 0.1 M H2SO4 solution in the t...
The products of pyrite oxidation, including solution phase Fe2+, Fe3+, S2O32-, S4O62-, SO32- and SO4...
In biohydrometallurgical processes, a mineral exhibits different oxidation phases due to the system'...
This paper presents electrochemical experiments on natural pyrite that combine potentiostatic and vo...
The surface properties of gold-associated pyrite play a determining role in pyrite dissolution in go...
Adsorption mechanism of l-cysteine on pyrite was investigated by thermogravimetric and electrochemic...
This research was designed to answer the question: can conventionally polished mineral surfaces be u...
The oxygen pressure leaching of pyrite has been studied in sulfuric and perchloric acid using an oxy...
The removal of pyrite from coal by flotation or any other surface chemistry based separation process...
Galena weathering often occurs in nature and releases metal ions during the process. Humic acid (HA)...
We investigated the electrochemical corrosion behavior of pyrite in simulated acid rain with differe...
A detailed study of the electrochemical behavior of pyrite under typical bio-leaching conditions has...
Recently, the acid sedimentary soft rock that caused a collapse of the cutting ground has appeared i...
The effect of Acidithiobacillus ferrooxidans on the humic-acid passivation layer on pyrite surfaces ...
Complex sulfide ores are usually found as a mixture of various sulfide and gangue minerals, and frot...
In situ electrochemical studies on the oxidation behavior of pyrite in 0.1 M H2SO4 solution in the t...
The products of pyrite oxidation, including solution phase Fe2+, Fe3+, S2O32-, S4O62-, SO32- and SO4...
In biohydrometallurgical processes, a mineral exhibits different oxidation phases due to the system'...
This paper presents electrochemical experiments on natural pyrite that combine potentiostatic and vo...
The surface properties of gold-associated pyrite play a determining role in pyrite dissolution in go...
Adsorption mechanism of l-cysteine on pyrite was investigated by thermogravimetric and electrochemic...
This research was designed to answer the question: can conventionally polished mineral surfaces be u...
The oxygen pressure leaching of pyrite has been studied in sulfuric and perchloric acid using an oxy...
The removal of pyrite from coal by flotation or any other surface chemistry based separation process...