International Journal of Molecular Sciences (Mar 2022)

Enhancement Mechanism of Stibnite Dissolution Mediated by <i>Acidithiobacillus ferrooxidans</i> under Extremely Acidic Condition

  • Can Wang,
  • Jin-Lan Xia,
  • Hong-Chang Liu,
  • Yu-Hang Zhou,
  • Zhen-Yuan Nie,
  • Lu Chen,
  • Wen-Sheng Shu

DOI
https://doi.org/10.3390/ijms23073580
Journal volume & issue
Vol. 23, no. 7
p. 3580

Abstract

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Oxidative dissolution of stibnite (Sb2S3), one of the most prevalent geochemical processes for antimony (Sb) release, can be promoted by Sb-oxidizing microbes, which were studied under alkaline and neutral conditions but rarely under acidic conditions. This work is dedicated to unraveling the enhancement mechanism of stibnite dissolution by typical acidophile Acidithiobacillus ferrooxidans under extremely acidic conditions. The results of solution behavior showed that the dissolution of Sb2S3 was significantly enhanced by A. ferrooxidans, with lower pH and higher redox potential values and higher [Sb(III)] and [Sb(V)] than the sterile control. The surface morphology results showed that the cells adsorbed onto the mineral surface and formed biofilms. Much more filamentous secondary minerals were formed for the case with A. ferrooxidans. Further mineral phase compositions and Sb/S speciation transformation analyses showed that more secondary products Sb2O3/SbO2−, Sb2O5/SbO3−, SO42−, as well as intermediates, such as S0, S2O32− were formed for the biotic case, indicating that the dissolution of Sb2S3 and the Sb/S speciation transformation was promoted by A. ferrooxidans. These results were further clarified by the comparative transcriptome analysis. This work demonstrated that through the interaction with Sb2S3, A. ferrooxidans promotes S/Sb oxidation, so as to enhance S/Sb transformation and thus the dissolution of Sb2S3.

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