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Biological Reduction of Hydrogel-Encapsulated Fe(III) by Shewanella oneidensis MR-1: Incubation Experiment and Kinetic Modeling

机译:沙瓦氏菌MR-1对水凝胶包裹的Fe(III)的生物还原作用:孵育实验和动力学建模

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摘要

Dissimilatory Fe(III) reduction has a profound influence on the global cycling of elements and the decontamination of pollutants, depending on the interaction of various environmental conditions. Hydrogel-encapsulated goethite/soil was prepared in this study, and anaerobic incubation was conducted to investigate the biological Fe reduction of different encapsulated aggregates by Shewanella oneidensis MR-1. Results indicated that the release of Fe(II) ion was significant and insignificant in R-soil treatments with and without anthraquinone-2,6-disulfonate (AQDS), respectively. The increase in the cross-linker ratio in the hydrogel decreased iron reduction. The Fe(II) concentration followed the order of unencapsulated treatment < 0.3% encapsulated hydrogel treatment < 2% encapsulated hydrogel treatment with AQDS addition. The results of the goethite experiment suggested that the goethite level and the addition of AQDS changed the effect of mineral structure property on iron reduction. This result was consistent with the simulation of a reductive dissolution kinetic model, in which the initial iron reduction rate k and long-term Fe(II) ion release extent parameter log. were controlled by the interaction of the mineral structure property, iron mineral content, and electron shuttle compound distribution. Thus, site-specific environmental conditions should be fully considered in monitoring the performance and environmental effects of biological iron reduction.
机译:异化Fe(III)的还原对各种元素的整体循环和污染物的去污具有深远的影响,这取决于各种环境条件的相互作用。本研究制备了水凝胶包埋的针铁矿/土壤,并进行了厌氧培养,研究了沙瓦氏菌希瓦氏菌MR-1对不同包封的聚集体的铁还原作用。结果表明,在有和没有蒽醌-2,6-二磺酸盐(AQDS)的R土处理中,Fe(II)离子的释放是显着的,而微不足道的。水凝胶中交联剂比率的增加减少了铁的还原。 Fe(II)浓度遵循未封装处理的顺序<0.3%封装的水凝胶处理<2%的添加AQDS的封装水凝胶处理。针铁矿实验结果表明,针铁矿水平和AQDS的添加改变了矿物结构性质对铁还原的影响。该结果与还原溶出动力学模型的模拟一致,在该模型中,初始铁还原速率k和长期Fe(II)离子释放程度参数log均达到目标。通过矿物结构特性,铁矿物含量和电子穿梭化合物分布的相互作用来控制。因此,在监测生物还原铁的性能和环境影响时应充分考虑特定地点的环境条件。

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