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The potential of denitrification for the stabilization of activated sludge processes affected by low alkalinity problems

机译:受低碱度问题影响的反硝化对稳定活性污泥工艺的潜力

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In this study, the problems provoked by nitrification of wastewater with low alkalinity were analyzed in a pilot sequencing batch activated sludge reactor (SBR). Decrease in pH resulted in disappearence of protozoa. De-flocculation of the activated sludge floc started below pH 6.5, resulting in enhanced effluent turbidity and loss of bacteria. Nitrification efficiency was affected below pH 6.2. The denitrification activity was not sufficient to keep up the pH, due to a low C/N ratio of the wastewater. Based on alkalinity and ammonia concentration of the wastewater and the necessary denitrification rate to prevent operational problems, was developed a prognostic diagram. The applicability of this diagram was tested for the SBR with excellent results. The diagram could be applied to optimize the operation of wastewater treatment plants affected by problems with low alkalinity wastewater.
机译:在这项研究中,对中性碱度低的废水硝化引发的问题进行了分析,并在一个先导顺序批式活性污泥反应器(SBR)中进行了分析。 pH值降低导致原生动物消失。活性污泥絮凝物的絮凝作用在pH 6.5以下开始进行,从而使污水的浊度增强,细菌损失。 pH 6.2以下会影响硝化效率。由于废水的C / N比低,反硝化活性不足以保持pH值。根据废水的碱度和氨浓度以及防止运行问题所需的反硝化率,制定了预后图。该图对SBR的适用性进行了测试,结果极好。该图可用于优化受低碱度废水影响的废水处理厂的运行。

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