Dependence of the Phenotypic Characteristics of Acidithiobacillus ferrooxidans on the Physical, Chemical, and Electrophysical Properties of Pyrites
Comparison of Acidithiobacillus ferrooxidans strains TFV-1 and TFBk with respect to their capacity to oxidize pyrite 1, with an electron-type (n-type) conductivity, or pyrite 2, with hole-type (p-type) conductivity, showed that, at a pulp density of 1%, both before and after its adaptation to the py...
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Veröffentlicht in: | Microbiology (New York) 2005-09, Vol.74 (5), p.515-521 |
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Sprache: | eng |
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Zusammenfassung: | Comparison of Acidithiobacillus ferrooxidans strains TFV-1 and TFBk with respect to their capacity to oxidize pyrite 1, with an electron-type (n-type) conductivity, or pyrite 2, with hole-type (p-type) conductivity, showed that, at a pulp density of 1%, both before and after its adaptation to the pyrites, strain TFBk, isolated from a substrate with a more complex mineral composition, grew faster and oxidized the pyrites of both conductivity types more efficiently than strain TFV-1, which was isolated from a mineralogically simple ore. At a pulp density of 3-5%, the oxidation of pyrite 2 by strain TFV-1 and both of the pyrites by strain TFBk began only after an artificial increase in Eh to 600 mV. If the pulp density was increased gradually, strain TFBk could oxidize the pyrites at its higher values than strain TFV-1, with the rate of pyrite 2 oxidation being higher than that of pyrite 1. During chemical oxidation of both of the pyrites, an increase was observed in the absolute values of the coefficients of thermoelectromotive force (K sub(TEMF)); during bacterial-chemical oxidation, the K sub(TEMF) of pyrite 1 changed insignificantly, whereas the K sub(TEMF) of pyrite 2 decreased. |
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ISSN: | 0026-2617 1608-3237 |
DOI: | 10.1007/s11021-005-0097-5 |