MICROBIAL REDUCTION OF FE(III) IN THE FIFTHIAN AND MULOORINA ILLITES: CONTRASTING EXTENTS AND RATES OF BIOREDUCTION

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dc.contributor.author Seabaugh J.L.
dc.contributor.author Dong H.
dc.contributor.author Morton J.P.
dc.contributor.author Kukkadapu R.K.
dc.contributor.author Eberl D.D.
dc.contributor.author Kim J.
dc.date.accessioned 2024-11-17T03:30:10Z
dc.date.available 2024-11-17T03:30:10Z
dc.date.issued 2006
dc.identifier https://www.elibrary.ru/item.asp?id=13972561
dc.identifier.citation Clays and Clay Minerals, 2006, 54, 1, 67-79
dc.identifier.issn 0009-8604
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/46525
dc.description.abstract Shewanella putrefaciens CN32 reduces Fe(III) within two illites which have different properties: the Fithian bulk fraction and the <0.2 μm fraction of Muloorina. The Fithian illite contained 4.6% (w/w) total Fe, 81% of which was Fe(III). It was dominated by illite with some jarosite (~32% of the total Fe(III)) and goethite (11% of the total Fe(III)). The Muloorina illite was pure and contained 9.2% Fe, 93% of which was Fe(III). Illite suspensions were buffered at pH 7 and were inoculated with CN32 cells with lactate as the electron donor. Select treatments included anthraquinone-2,6-disulfonate (AQDS) as an electron shuttle. Bioproduction of Fe(II) was determined by ferrozine analysis. The unreduced and bioreduced solids were characterized by Mössbauer spectroscopy, X-ray diffraction and transmission electron microscopy. The extent of Fe(III) reduction in the bulk Fithian illite was enhanced by the presence of AQDS (73%) with complete reduction of jarosite and goethite and partial reduction of illite. Mössbauer spectroscopy and chemical extraction determined that 21-25% of illite-associated Fe(III) was bioreduced. The extent of bioreduction was less in the absence of AQDS (63%) and only jarosite was completely reduced with partial reduction of goethite and illite. The XRD and TEM data revealed no significant illite dissolution or biogenic minerals, suggesting that illite was reduced in the solid state and biogenic Fe(II) from jarosite and goethite was either released to aqueous solution or adsorbed onto residual solid surfaces. In contrast, only 1% of the structural Fe(III) in Muloorina illite was bioreduced. The difference in the extent and rate of bioreduction between the two illites was probably due to the difference in layer charge and the total structural Fe content between the Fithian illite (0.56 per formula) and Muloorina illite (0.87). There may be other factors contributing to the observed differences, such as expandability, surface area and the arrangements of Fe in the octahedral sheets. The results of this study have important implications for predicting microbe-induced physical and chemical changes of clay minerals in soils and sediments. Copyright © 2006, The Clay Minerals Society.
dc.subject CN32
dc.subject FITHIAN
dc.subject ILLITE
dc.subject MICROBIAL FE(III) REDUCTION
dc.subject MöSSBAUER SPECTROSCOPY
dc.subject MULOORINA
dc.subject SHEWANELLA PUTREFACIENS
dc.title MICROBIAL REDUCTION OF FE(III) IN THE FIFTHIAN AND MULOORINA ILLITES: CONTRASTING EXTENTS AND RATES OF BIOREDUCTION
dc.type Статья
dc.identifier.doi 10.1346/CCMN.2006.0540109


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