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Biological iron oxidation by Thiobacillus ferrooxidans and Leptospirillum ferrooxidans in a biofilm airlift reactor

机译:生物氧化物铁氧化物的生物铁氧化在生物膜空运反应器中的硫辛嘧啶和leptospirillum铁氧播网

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In this study, the oxidation of ferrous iron by a mixed culture of Thiobacillus ferrooxidans and Leptospirillum ferrooxidans bacteria was investigated in a continuous biofilm airlift reactor. Small basalt particles (0.2 mm) were used as carrier material for biofilm formation. The reactor was operated at a constant temperature of 30°C and at pH values ranging from 1.3 to 1.7. The reactor was fed with a nutrient solution containing 5.6 g l~(-1) ferrous iron, at various loading rates. Feasibility and engineering aspect of biological ferrous oxidation in an airlift reactor were investigated. Specific attention was paid to biofilm formation and competition between both types of bacteria. It was found that both types of acidophilic bacteria were capable of effective colonization of the carrier material, resulting in ferrous iron removal capacities of more than 0.05 mol l~(-1) hr~(-1). Coexistence of T. ferrooxidans and L. ferrooxidans in the system was observed by fluorescent in situ hybridization (FISH) measurement.
机译:在这项研究中,在连续的生物膜空气含量反应器中研究了通过硫赤氧化物的混合培养物的铁铁氧化氧化铁。使用小玄武岩颗粒(0.2mm)作为生物膜形成的载体材料。将反应器在30℃的恒定温度下操作,在1.3至1.7的pH值下操作。用含有5.6g L〜(-1)亚铁铁的营养溶液以各种加载率加入反应器。研究了在空运反应器中生物亚铁氧化的可行性和工程方面。对两种类型的细菌之间的生物膜形成和竞争有特别注意。结果发现,两种类型的嗜酸性细菌能够有效地定植载体材料,导致铁的铁氧化亚铁除去容量大于0.05mol L〜(-1)HR〜(-1)。通过荧光原位杂交(鱼类)测量,观察到该系统中的铁氧化单和L.Frooxidans的共存。

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