YOHANA RODRÍGUEZ, ANTONIO BALLESTER
In this study, the degree of bacterial attachment of the main microorganisms involved in the bioleaching of metal sulfides and their influence on the dissolution rate and final metal extractions were determined. Three different mineral sulfides were bioleached: chalcopyrite (CuFeS2), sphalerite (ZnS), and pyrite (FeS2). A mixed culture of mesophilic bacteria (Acidithiobacillus and Leptospirillum spp.) was tested at 35°C and thermophilic bacteria (Sulfolobus spp.) were tested at 68°C. The results confirmed that a relationship exists between attachment and mineral dissolution rates. The bioleaching process can be divided into three stages. An initial stage with extensive bacterial attachment to the pyritic phase, which is of major importance in order to obtain high dissolution rates (since attached cells liberate Fe2+ by contact bioleaching and oxidize Fe2+ to Fe3+ avoiding iron accumulation at the surface). In a second stage, the bacterial attachment diminishes due to the saturation of the surface by the attached cells. This limitation, together with the presence of Fe2+ in solution, produces an increase in the concentration of free cells, which use Fe2+ as an energy source. Finally, in a third stage, a balance between free and attached cells is reached, giving rise to a cooperative mechanism.
@article{f098d1df-dc61-4933-9efc-476aa98a296b,
title={Study of Bacterial Attachment During the},
author={YOHANA RODRÍGUEZ and ANTONIO BALLESTER},
year={2026},
language={en}
}TY - JOUR TI - Study of Bacterial Attachment During the AU - YOHANA RODRÍGUEZ AU - ANTONIO BALLESTER PY - 2026 LA - en ER -
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