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Research on the Effect and Kinetics Mechanism of Biological Iron-Removal from Groundwater

机译:地下水生物除铁的作用机理及动力学研究

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In the present article, the treatment of groundwater containing Fe(II) has been investigated. The oxidation processes were mediated by specific bacteria, namely the Leptothrix ochracea and Gallionella ferruginea, which belong to the general category of iron oxidizing bacteria. This work was focused on the characterization of the products of biological oxidation and to the examination of the kinetics of Fe(II) removal from groundwaters. When pH5.6~6.0, 0.5~1.5 mg/l DO, 8m/h velocity of filtration ,it has achieved good effluent quality with trace amount of total iron. By the sterilizing test and the bacterial count,the filter indicates that the effect of iron removal by biological oxidation is significant. And through the bed analysis method we test the iron concentration of the effluent to study the kinetics rule of biological removal of iron . The kinetic results indicated that the rates of iron oxidation were several orders of magnitude greater than the abiotic oxidation. The oxidation state of iron in the precipitates was found to be mainly in the form of amorphous ferrihydrite.
机译:在本文中,已经研究了含Fe(II)的地下水的处理方法。氧化过程是由特定细菌介导的,这些细菌为铁氧化细菌的大类,即och鱼Leptothrix ochracea和Gallionella ferruginea。这项工作的重点是生物氧化产物的表征以及对地下水中Fe(II)去除动力学的研究。在pH5.6〜6.0,DO0.5〜1.5 mg / l,过滤速度8m / h的条件下,废水中的总铁量极低,废水的质量良好。通过灭菌试验和细菌计数,该过滤器表明生物氧化去除铁的作用是显着的。通过床层分析法测试废水中铁的浓度,研究生物去除铁的动力学规律。动力学结果表明,铁的氧化速率比非生物的氧化速率高几个数量级。发现沉淀物中铁的氧化态主要为非晶亚铁酸盐的形式。

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