首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Reduction of Fe(III) colloids by Shewanella putrefaciens: A kinetic model
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Reduction of Fe(III) colloids by Shewanella putrefaciens: A kinetic model

机译:腐臭希瓦氏菌还原Fe(III)胶体的动力学模型

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摘要

A kinetic model for the microbial reduction of Fe(III) oxyhydroxide colloids in the presence of excess electron donor is presented. The model assumes a two-step mechanism: (1) attachment of Fe(III) colloids to the cell surface and (2) reduction of Fe(III) centers at the surface of attached colloids. The validity of the model is tested using Shewanella putrefaciens and nanohematite as model dissimilatory iron reducing bacteria and Fe(III) colloidal particles, respectively. Attachment of nanohematite to the bacteria is formally described by a Langmuir isotherm. Initial iron reduction rates are shown to correlate linearly with the relative coverage of the cell surface by nanohematite particles, hence supporting a direct electron transfer from membrane-bound reductases to mineral particles attached to the cells. Using internally consistent parameter values for the maximum attachment capacity of Fe(III) colloids to the cells, M-max, the attachment constant, K-P, and the first-order Fe(III) reduction rate constant, k, the model reproduces the initial reduction rates of a variety of fine-grained Fe(III) oxyhydroxides by S. putrefaciens. The model explains the observed dependency of the apparent Fe(III) half-saturation constant, K-m*, on the solid to cell ratio, and it predicts that initial iron reduction rates exhibit saturation with respect to both the cell density and the abundance of the Fe(III) oxyhydroxide substrate. (c) 2006 Elsevier Inc. All rights reserved.
机译:建立了在过量电子给体存在下微生物还原羟基氢氧化铁(III)胶体的动力学模型。该模型采用两步机制:(1)将Fe(III)胶体附着到细胞表面,以及(2)减少附着的胶体表面的Fe(III)中心。使用腐臭希瓦氏菌和纳米赤铁矿分别作为模型异化铁还原细菌和Fe(III)胶体颗粒来测试模型的有效性。朗格缪尔等温线正式描述了纳米赤铁矿对细菌的附着。最初的铁还原速率显示与纳米赤铁矿颗粒对细胞表面的相对覆盖率线性相关,因此支持从膜结合还原酶到附着于细胞的矿物质颗粒的直接电子转移。使用内部一致的参数值来确定Fe(III)胶体对细胞的最大附着能力M-max,附着常数KP和一阶Fe(III)还原速率常数k,该模型将重现初始腐链霉菌降低各种细粒羟基氧化铁(III)的速率。该模型解释了所观察到的表观Fe(III)半饱和常数Km *对固相比的依赖性,并且该模型预测初始铁还原率相对于晶格密度和晶格丰度都表现出饱和。 Fe(III)羟基氧化物底物。 (c)2006 Elsevier Inc.保留所有权利。

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