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Pyrite−Arsenopyrite Galvanic Interaction and Electrochemical Reactivity

Authors :
Urbano, Gustavo
Aurora Veloz, M.
González, Ignacio
Cruz, Julián
E. Reyes, Victor
Source :
The Journal of Physical Chemistry - Part C; July 2008, Vol. 112 Issue: 28 p10453-10461, 9p
Publication Year :
2008

Abstract

Comparative voltammetric studies were performed between high purity pyrite mineral (98.86%) and arsenopyrite mineral (content of 85.96% arsenopyrite, FeAsS; 11.84% pyrite, FeS 2; 0.98% galena, PbS; 0.06% chalcopyrite, CuFeS 2) in order to analyze the galvanic effect on the electrochemical reactivity of two different mineralogical phases when these are associated in the same mineral, using carbon paste electrodes (CPE) in 0.1 M NaNO 3(pH 6.5) as electrolyte. Theoretical studies were performed for a more detailed analysis on the total energy and energy relative of a total optimization of the species involved in the pyrite and arsenopyrite oxidation as pure mineral. The results indicate that the electrochemical reactivity of pyrite in the arsenopyrite mineral was delayed and displaced to more positive potentials with respect to the high purity pyrite mineral electrochemical response, due to a galvanic effect. On the other hand, the voltammetric studies showed the oxidation stages of arsenopyrite mineral, indicating that arsenopyrite was oxidized in a first stage to Fe 2+, realgar (As 2S 2), H 3ASO 3, and S 0. In a second stage, the arsenopyrite and the pyrite were oxidized to FeOOH(s) and S 0, followed by oxidation of H 3AsO 3to H 2AsO 4−and S 0to SO 4−, besides the scorodite (FeSO 4·2H 2O) formation. Meanwhile, to more negative potentials the regeneration of FeAsS and the reduction to elemental arsenic do not occur due to the reduction of arsenate (H 2AsO 4−) to H 3AsO 3and the residual scorodite (FeAsO 4·2H 2O) that was not dissolved by chemical reaction. The analysis by scanning electron microscopy and energy dispersive spectrometer to surfaces of the electrodes with the mineral (CPE) modified electrochemically was carried out to support the reaction mechanisms.

Details

Language :
English
ISSN :
19327447 and 19327455
Volume :
112
Issue :
28
Database :
Supplemental Index
Journal :
The Journal of Physical Chemistry - Part C
Publication Type :
Periodical
Accession number :
ejs14584562
Full Text :
https://doi.org/10.1021/jp800273u