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Cadmium removal at high concentration in aqueous medium: mediated by Desulfovibrio alaskensis

机译:在水介质中高浓度去除镉:阿拉斯加州脱硫弧菌

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Experimental studies were performed to evaluate the high capacity of cadmium removal by Desulfovibrio alaskensis strain 6SR, which is a sulfate-reducing bacterium. The study was conducted in batch cultures of D. alaskensis 6SR in a medium with a high cadmium concentration. The results indicated that bacterial growth was not dramatically affected by the presence of 170 mg/L of cadmium, following a similar behavior to that of the control culture. Besides, we observed a fast production of extracellular polymeric substances, which play an important role in cadmium removal. The bacterium was able to remove 99.9 % of cadmium at the tested concentration. The main mechanism of cadmium removal was its precipitation as cadmium sulfide (yellow precipitate), followed by its adsorption in the polymeric substances. Most cadmium up take occurred within the first 48 h, and the largest cadmium adsorption capacity was achieved at 144 h. Cadmium adsorption dynamics was evaluated by pseudo-first order and pseudo-second-order kinetic models; where the best adjustment was obtained with the pseudo-second-order model. The micrographs, obtained with transmission electron microscopy, showed a very low intracellular and periplasmic accumulation of cadmium in the cells. Thereby, this bacterium facilitates a process of removal and recovery of cadmium at high concentrations without the need of cellular lysis or special washes.
机译:进行了实验研究,以评估阿拉斯加脱硫弧菌菌株6SR去除镉的能力,该菌株是一种硫酸盐还原菌。该研究在高浓度镉的培养基中对阿拉斯加D. alaskensis 6SR进行分批培养。结果表明,存在170 mg / L的镉后,细菌的生长并没有受到显着影响,其行为与对照培养物相似。此外,我们观察到细胞外聚合物质的快速产生,这些物质在去除镉中起重要作用。在测试浓度下,细菌能够去除99.9%的镉。去除镉的主要机理是其以硫化镉的形式沉淀(黄色沉淀),然后被聚合物吸附。镉吸收最多发生在最初的48小时内,最大的镉吸附能力在144小时内达到。通过伪一级和伪二级动力学模型评估了镉的吸附动力学。其中使用伪二阶模型获得最佳调整。用透射电子显微镜获得的显微照片显示,细胞中镉的细胞内和周质积累非常低。因此,该细菌促进了高浓度镉的去除和回收过程,而无需细胞裂解或特殊洗涤。

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