添加或不添加亚硝酸盐或硝酸盐的铁盐对活性污泥微生物学的影响。

Sarah Philips, Willy Verstraete
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引用次数: 0

摘要

在活性污泥处理中,经常使用铁盐作为混凝剂或改善反应器性能。然而,铁盐对微生物学的影响却很少受到关注。此外,还没有考虑铁离子与污泥中亚硝酸盐或硝酸盐的相互作用。在本研究中,研究了亚铁和三铁的添加量,以及它们与亚硝酸盐或硝酸盐在几mM水平下可能的相互作用,对半连续实验规模反应器活性污泥微生物学的影响。传统和分子技术已被用于研究微生物群落。微观研究表明,重复添加2 mM的三铁会导致污泥絮凝体破碎,导致无根原生动物大量生长,硝化菌数量降低。相同掺量的亚铁产生较大的共融絮凝体。因此,亚硝酸盐似乎增强了三铁对絮凝体结构的有害作用,而硝酸盐则具有中和作用。16S rRNA基因分析显示,不同铁氮处理对细菌群落组成有明显的影响。对污泥样品的克隆发现,Fe(II)和Fe(III)反应器中反硝化氧化细菌的存在增加,表明混合液中Fe(II)和Fe(III)之间存在氧化还原状态循环。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Changes in the microbiology of activated sludge upon the addition of iron salts with or without nitrite or nitrate.

Iron salts are frequently used in activated sludge treatment as coagulants or to improve reactor performance. However, the effect of the iron salts on the microbiology has received little attention. Furthermore, the interaction of iron ions with nitrite or nitrate present in the sludge has not been considered. In this research, the influence of ferrous and ferric iron additions, and their possible interactions with nitrite or nitrate at levels of a few mM, on the activated sludge microbiology of semi-continuous bench-scale reactors were examined. Conventional as well as molecular techniques have been used to investigate the microbial communities. Microscopic investigations showed that repeated addition of ferric iron at 2 mM gave rise to breaking of the sludge flocs, resulting in massive growth of sessile-protozoa and lowering of the numbers of nitrifiers. Ferrous iron at the same dosage resulted in large coherent flocs. Nitrite hereby seemed to enhance the detrimental effect of the ferric iron on the floc structure, whereas nitrate had a neutralizing character. 16S rRNA gene analysis showed a clear impact of the different iron respectively nitrogen treatments on the composition of bacterial communities. Cloning the sludge samples revealed the increased presence of denitrifying Feoxidizing bacteria in both the Fe(II) and Fe(III) reactors, suggesting a redox-state cycling between Fe(II) and Fe(III) in the mixed liquor.

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