Kolda(塞内加尔)水处理站洗涤污泥过滤器中铁细菌的分离及铁的生物降解动力学研究(II)

M. Faye, F. Sambe, M. Dieng, A. Toure, Matar Faye, C. Diop
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引用次数: 1

摘要

本文对掺杂铁(II)的合成水的处理进行了研究。本研究中使用的处理机制是生物氧化,在试管中,将培养皿中分离的细菌与含有二价铁(II)的水接触。这些除铁细菌(非特异性细菌)用于在不同pH条件下(pH = 3.4 - 3.6,pH = 7.3 - 7.5和pH = 9.8 - 10)和可变浓度的铁(II)。生物处理试验包括在一天的时间间隔内不同浓度的铁。对铁(II)去除动力学的研究表明,当初始铁浓度为1 mg·L−1时,在碱性pH (pH = 9.8 ~ 10)下,铁(II)的去除率为59.453%。因此,用这种方法降解二价铁似乎是相当有效的,但应该注意的是,当铁浓度超过5 mg·L−1时,生物硝化作用会受到损害。
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Isolation of Iron Bacteria from Washing Sludge Filters Kolda (Senegal) Water Treatment Station and Study of the Kinetics of Biological Degradation of the Iron (II)
In the present work, the treatment of synthetic waters doped with iron (II) has been studied. The treatment mechanism used in this study is the biological oxidation which consists, in test tubes, of bringing bacteria isolated on Petri dishes into contact with water containing divalent iron (II). These de-ironing bacteria (non-specific bacteria) are used to carry out laboratory biological oxidation experiments on iron (II) under different pH conditions (pH = 3.4 - 3.6, pH = 7.3 - 7.5 and pH = 9.8 - 10) and variable concentration of iron (II). Biological treatment trials included different concentrations of iron during time intervals of a day. Examination of the elimination kinetics of Iron (II) indicates a removal rate of 59.453% for an initial iron concentration in the synthetic solution of 1 mg·L−1 at basic pH (pH = 9.8 - 10). Therefore, the degradation of divalent iron by this method seems to be quite effective, but it should be noted that biological nitrification is impaired by the presence of high iron concentrations above 5 mg·L−1.
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