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In situ bioaugmentation of nitrification in the regeneration zone: practical application and experiences at full-scale plants

机译:再生区硝化的原位生物强化:大规模工厂的实际应用和经验

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Nitrification is the rate-limiting process in the design of activated sludge process. It is especially unstable during the winter season (when the temperature of activated sludge mixed liquor drops below 13 degrees C). It is therefore difficult to meet the ammonia effluent standards in winter. The common way to compensate for low nitrification rates at low temperatures is to increase sludge retention time (SRT). However, the increase of SRT is accompanied by negative factors such as elevated sludge concentration, higher sludge loading of secondary clarifiers, formation of unsettleable microflocs, etc. The low performance of nitrification at low temperatures can also be compensated for by enhancing the nitrification population in activated sludge. This paper describes such a method called bioaugmentation of nitrification in situ. This procedure takes place in a so-called regeneration tank, which is situated in the return activated sludge stream. The results of the operation of two wastewater treatment plants with regeneration zones are described in this paper, together with some economic evaluation of the bioaugmentation method.
机译:硝化是活性污泥工艺设计中的限速工艺。在冬季(当活性污泥混合液的温度降至13摄氏度以下时),它尤其不稳定。因此,在冬天很难达到氨水排放标准。补偿低温下低硝化率的常用方法是增加污泥保留时间(SRT)。但是,SRT的增加伴随着负面因素,例如污泥浓度升高,二级澄清池污泥负荷增加,无法沉降的微絮凝物形成等。在低温下硝化性能低下还可以通过增加土壤中的硝化种群来弥补。活性污泥。本文介绍了一种称为原位硝化生物强化的方法。该过程在所谓的再生罐中进行,该再生罐位于返回的活性污泥流中。本文介绍了两个带有再生区的废水处理厂的运行结果,并对生物强化方法进行了一些经济评估。

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