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通过缺氧-好氧消化过程实现废弃活性污泥的稳定化。

Stabilization of waste-activated sludge through the anoxic-aerobic digestion process.

作者信息

Hashimoto S, Fujita M, Terai K

机构信息

Department of Environmental Engineering, Faculty of Engineering, Osaka University 2-1, Yamadaoka, Suita, Osaka 565, Japan.

出版信息

Biotechnol Bioeng. 1982 Aug;24(8):1789-802. doi: 10.1002/bit.260240806.

Abstract

During the aerobic digestion process, the nitrogen which had been embedded in the activated sludge is solubilized to form ammoniacal and nitric nitrogen which are in turn transferred to the liquor and cause the increase of nitrogen loading in the sewage treatment plant. In this study, the anoxic-aerobic sludge digestion system which is a modified form of the conventional aerobic sludge digestion is made up of aerobic and anoxic tanks and are designed to remove both the volatile suspended solids and the total nitrogen (TN) simultaneously. The removal efficiencies of both VSS and TN were investigated by feeding waste-activated sludge continuously and semicontinuously. The maximum percent reduction of both VSS and TN was achieved at a Q(r)/Q(s) ratio of 2 in the continuous process. The semicontinuous process was used to improve the nitrogen removal efficiency further. In the semicontinuous process, the VSS reduction efficiency as well as the nitrogen removal efficiency increased remarkably under a constant Q(r)/Q(s) ratio of 2. This process also achieved a VSS reduction efficiency higher than the aerobic digestion process (control). It was suggested that the additional anoxic tank enhanced the sludge digestion. Furthermore, the anoxic-aerobic digestion system can be applied to other treatment media like the primary sludge, industrial sludge, animal manure, etc.

摘要

在好氧消化过程中,活性污泥中所含的氮被溶解形成氨氮和硝态氮,进而转移至液体中,导致污水处理厂的氮负荷增加。在本研究中,缺氧-好氧污泥消化系统是传统好氧污泥消化的一种改良形式,由好氧池和缺氧池组成,旨在同时去除挥发性悬浮固体和总氮(TN)。通过连续和半连续投加废弃活性污泥,研究了挥发性悬浮固体(VSS)和总氮的去除效率。在连续过程中,当Q(r)/Q(s) 比为2时,VSS和总氮的最大去除率得以实现。采用半连续过程进一步提高脱氮效率。在半连续过程中,在恒定的Q(r)/Q(s) 比为2的情况下,VSS去除效率以及脱氮效率均显著提高。该过程还实现了高于好氧消化过程(对照)的VSS去除效率。研究表明,增设的缺氧池增强了污泥消化。此外,缺氧-好氧消化系统可应用于其他处理介质,如初沉污泥、工业污泥、动物粪便等。

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