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A modified oxic-settling-anaerobic activated sludge process using gravity thickening for excess sludge reduction

机译:改进的含氧沉降-厌氧活性污泥工艺采用重力浓缩技术以减少过多的污泥

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摘要

Oxic-settling-anaerobic process (OSA) was known as a cost-effective way to reduce the excess sludge production with simple upgrade of conventional activated sludge process (CAS). A low oxidation-reduction potential (ORP) level was the key factor to sludge decay and lysis in the sludge holding tank of the OSA process. However, the ORP control with nitrogen purge or chemical dosing in the OSA process would induce extra expense and complicate the operation. Hence, in this study, a sludge holding tank using gravity thickening was applied to OSA process to reduce the excess sludge production without any ORP control. Results showed that the modified OSA process not only reduced the excess sludge production effectively but also improved the sludge settleability without affected the treatment capacity. The reduction of the excess sludge production in the modified OSA process resulted from interactions among lots of factors. The key element of the process was the gravity thickening sludge holding tank.
机译:氧沉降-厌氧工艺(OSA)是通过简单升级常规活性污泥工艺(CAS)来减少剩余污泥生产的一种经济有效的方法。低氧化还原电位(ORP)水平是OSA工艺污泥储存池中污泥腐烂和溶解的关键因素。但是,在OSA过程中使用氮气吹扫或化学加药进行ORP控制会导致额外费用,并使操作复杂化。因此,在这项研究中,采用重力浓缩的污泥储存罐被应用于OSA工艺,以减少多余的污泥产生,而无需任何ORP控制。结果表明,改进的OSA工艺不仅有效地减少了剩余污泥的产生,而且在不影响处理能力的情况下提高了污泥的沉降能力。改进的OSA工艺中过量污泥产生的减少是由许多因素之间的相互作用引起的。该过程的关键要素是重力浓缩污泥储存罐。

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