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Effects of partial ozonation on activated sludge process for the minimization of excess sludge production during biological treatment

机译:部分臭氧化对活性污泥工艺的影响,以最大程度地减少生物处理过程中过量污泥的产生

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Minimization of excess sludge production may be achieved by either changes in operational conditions or by the treatment of recycled activated sludge. It was investigated using ozone-treated return activated sludge in lab-scale activated sludge process operated continuously with optimum conditions determined using Box-Behnken experimental design method as 400mg/L initial chemical oxygen demand concentration (CODi), 25 h hydraulic retention time, and 25 d solid retention time, respectively. Batch experiments were carried out in order to determine the optimum ozone dose of 0.05gO_3/g total solid considering disintegration degree (DD). Ozone reactor (OR) and control reactor (CR) were evaluated considering sludge reduction capacity, effluent quality, and sludge characteristics. About 61 and 40% reductions can be achieved in mixed liquor suspended solid concentration and observed sludge yield value in OR compared to CR, respectively. The effluent quality in terms of COD and NH_4-N removal in OR was not significantly affected by ozonation. The dewatering capacity was slightly weakened while little improvement was observed in filtering capacity in OR compared to CR, in terms of capillary suction time and specific resistance to filtration. Particle size changed and sludge destruction led to an increase of small particles.
机译:通过改变操作条件或处理回收的活性污泥,可以最大限度地减少剩余污泥的产生。在以Box-Behnken实验设计方法确定的最佳条件下连续操作的实验室规模活性污泥工艺中,使用臭氧处理的回流活性污泥进行了研究,最佳条件为400mg / L初始化学需氧量(CODi),25 h水力停留时间和固体保留时间分别为25 d。考虑到崩解度(DD),进行批处理实验以确定最佳臭氧剂量为0.05gO_3 / g总固体。考虑到污泥的减少能力,污水质量和污泥特性,对臭氧反应器(OR)和对照反应器(CR)进行了评估。与CR相比,混合液悬浮固体浓度和OR中观察到的污泥产率值分别降低了约61%和40%。臭氧处理对COD和NH_4-N去除的废水质量没有显着影响。相对于CR,脱水能力略有减弱,而OR的过滤能力几乎没有改善,就毛细抽吸时间和抗过滤性而言。粒径变化和污泥破坏导致小颗粒增加。

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