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Application of excess activated sludge ozonation in an SBR plant. Effects on substrate fractioning and solids production

机译:过量活性污泥臭氧化在SBR工厂中的应用。对底物分馏和固体产生的影响

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This paper provides new insights on the application of the ozonation process for the reduction of the activated sludge production in a sequencing batch reactor (SBR). The study was performed in two identical lab-scale SBRs plant, one for experimental activities (Exp SBR) and one used as control (Control SBR), both fed with domestic sewage. A fraction of the activated sludge collected from the Exp SBR at the end of the aerobic react phase was periodically subjected to ozonation for 30 minutes at three different specific dosages (0.05, 0.07 and 0.37 g O-3/gSS) and then recirculated before the beginning of the following cycle. Recirculation of the ozonated sludge to the Exp SBR did not appreciably affect the efficiency of the biological nitrogen and carbon removal processes. Nonetheless, an improvement of the denitrification kinetic was observed. Mixed liquor volatile and suspended solids (MLSS and MLVSS, respectively) concentrations in the reactor decreased significantly with time for long term application of the ozonation treatment. Kinetic batch tests on unstressed sludge taken from Control SBR indicated that the different oxidant dosages (0.05, 0.07 and 0.37 g O-3/gSS) and durations of the ozonation process (10, 20 and 30 minutes) used remarkably affected chemical oxygen demand (COD) and organic nitrogen fractioning. In particular, soluble and biodegradable fractions seemed to be higher at lower dosage and longer contact time.
机译:本文提供了有关臭氧化工艺在减少顺序批处理反应器(SBR)中活性污泥产生方面的应用的新见解。这项研究是在两个规模相同的实验室规模SBR工厂中进行的,一个用于实验活动(Exp SBR),另一个用作对照(Control SBR),均以生活污水为食。在好氧反应阶段结束时,将从Exp SBR收集的一部分活性污泥定期以三种不同的特定剂量(0.05、0.07和0.37 g O-3 / gSS)进行臭氧化处理30分钟,然后在再循环之前进行再循环下一个周期的开始。将臭氧化污泥再循环至Exp SBR不会明显影响生物氮和碳去除过程的效率。然而,观察到反硝化动力学的改善。对于长期应用臭氧化处理,反应器中的混合液挥发性和悬浮固体(分别为MLSS和MLVSS)浓度会随着时间显着降低。从对照SBR提取的无应力污泥的动力学分批测试表明,使用不同的氧化剂剂量(0.05、0.07和0.37 g O-3 / gSS)和臭氧化过程的持续时间(10、20和30分钟)会显着影响化学需氧量( COD)和有机氮分馏。特别地,在较低剂量和较长接触时间下可溶性和可生物降解级分似乎较高。

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