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A pilot study on accelerated sludge degradation by a high-concentration membrane bioreactor coupled with sludge pretreatment

机译:高浓度膜生物反应器结合污泥预处理加速污泥降解的中试研究

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A new sludge treatment process combining a high MLSS membrane bioreactor with sludge pretreatment techniques was studied in pilot-scale experiments. The membrane bioreactor (MBR) was adopted for high efficiency aerobic digestion. The combination of alkaline-ozone treatment of the mixed liquor in the MBR reactor accelerated the biodegradation process by enhancing biodegradability of the sludge. The hydraulic retention time (HRT) of the reactor was set as 3.1 days and the DO level was 1 mg/L on average. After 5 months of operation, the accumulative total solids reduction was more than 70%. Removal efficiency of volatile solids and non-volatile solids were 76% and 54%, respectively. It was found that a considerable portion of the non-volatile solids was dissolved into ions and then flushed out with the effluent. Also, about 41% and 28% of T-N and T-P in the raw sludge were removed although no biological nutrient removal process was adopted. The experiment was run smoothly without significant membrane fouling, even at the relatively high levels of MLSS concentration (11,000-25,000 mg/L). It is concluded that the newly proposed process can significantly increase the sludge reduction efficiency with much shorter retention times.
机译:在中试规模的实验中研究了一种新的污泥处理工艺,该工艺将高MLSS膜生物反应器与污泥预处理技术相结合。采用膜生物反应器(MBR)进行高效需氧消化。 MBR反应器中混合液的碱性臭氧处理相结合,通过提高污泥的生物降解能力,加速了生物降解过程。将反应器的水力停留时间(HRT)设置为3.1天,并且DO水平平均为1mg / L。运行5个月后,累积的总固体减少量超过70%。挥发性固体和非挥发性固体的去除效率分别为76%和54%。发现相当一部分的非挥发性固体溶解在离子中,然后用流出物冲洗掉。此外,尽管未采用生物营养去除工艺,但去除了原污泥中约41%和28%的T-N和T-P。即使在相对较高的MLSS浓度(11,000-25,000 mg / L)下,实验也可以顺利进行,而不会造成明显的膜污染。结论是,新提出的方法可以显着提高污泥的减少效率,而保留时间要短得多。

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