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Ultrasonic reduction of excess sludge from the activated sludge system

机译:超声波减少活性污泥系统中的剩余污泥

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摘要

Sludge treatment has long become the most challenging problem in waste-water treatment plants. Previous studies showed that ozone or chlorine effectively liquefies sludge into substrates for bio-degradation in the aeration tank, and thus reduces the excess sludge. This paper employs ultrasound to reduce the excess sludge from the sequential batch reactor (SBR) system. Partial sludge was disintegrated into dissolved substrates by ultrasound in an external sono-tank and was then returned to the SBR for bio-degradation. The results showed that ultrasound (25 kHz) effectively liquefied the sludge. The most effective conditions for sludge reduction were as following: sludge sonication ratio of 3/14, ultrasound intensity of 120kW/kgDS, and sonication duration of 15 min. The amount of excess sludge was reduced by 91.1% to 17.8 mg/(Ld); the organic content and settleability of sludge in the SBR were not impacted. The chemical oxygen demand (COD) removal efficiency was 81.1%, the total nitrogen (TN) removal efficiency was 17-66%, and high phosphorus concentration in the effluent was observed.
机译:污泥处理长期以来一直是废水处理厂中最具挑战性的问题。先前的研究表明,臭氧或氯可以有效地将污泥液化为基质,以便在曝气池中进行生物降解,从而减少了多余的污泥。本文采用超声波来减少顺序分批反应器(SBR)系统产生的过量污泥。在外部声波罐中通过超声波将部分污泥分解成溶解的底物,然后返回到SBR中进行生物降解。结果表明,超声波(25 kHz)有效地液化了污泥。减少污泥的最有效条件如下:污泥超声处理率为3/14,超声强度为120kW / kgDS,超声处理持续时间为15分钟。剩余污泥量减少了91.1%,降至17.8 mg /(Ld); SBR中污泥的有机物含量和沉降性不受影响。化学需氧量(COD)去除效率为81.1%,总氮(TN)去除效率为17-66%,并且观察到废水中磷的浓度很高。

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