Authors
Masayuki Shimizu, Jihai Zhou, Christian Schröder, Martin Obst, Andreas Kappler, Thomas Borch
Publication date
2013/12/3
Journal
Environmental science & technology
Volume
47
Issue
23
Pages
13375-13384
Publisher
American Chemical Society
Description
Organic matter (OM) is present in most terrestrial environments and is often found coprecipitated with ferrihydrite (Fh). Sorption or coprecipitation of OM with Fe oxides has been proposed to be an important mechanism for long-term C preservation. However, little is known about the impact of coprecipitated OM on reductive dissolution and transformation of Fe(III) (oxyhydr)oxides. Thus, we study the effect of humic acid (HA) coprecipitation on Fh reduction and secondary mineral formation by the dissimilatory Fe(III)-reducing bacterium Shewanella putrefaciens strain CN32. Despite similar crystal structure for all coprecipitates investigated, resembling 2-line Fh, the presence of coprecipitated HA resulted in lower specific surface areas. In terms of reactivity, coprecipitated HA resulted in slower Fh bioreduction rates at low C/Fe ratios (i.e., C/Fe ≤ 0.8), while high C/Fe ratios (i.e., C/Fe ≥ 1.8) enhanced the extent of …
Total citations
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Scholar articles
M Shimizu, J Zhou, C Schröder, M Obst, A Kappler… - Environmental science & technology, 2013