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Hydrodynamic Characteristics in Aerobic Biofilm Reactor Treating High-Strength Trade Effluent

机译:好氧生物膜反应器处理高强度工业废水的流体力学特性

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Four 3-L aerobic biofilm reactors (ABR1, 2, 3, and 4) treating a high-strength food-processing waste water (10 g chemical oxygen demand [COD]/L) were subject to reactor liquor recirculation rates of 1,3,15, and 30 L/h, respectively. Treatment performance in terms of COD removal rates of ABR1,2, and 3 were similar at hydraulic loads of 2.0 g COD/L/d and below. At higher organic loads, ABR3 could achieve a COD removal rate that was over two times higher than that of ABR1 and 2. ABR3 could be operated at a maximum organic load that was two times higher than that of ABR1 and 2. ABR4 experienced a biofilm sloughing from the packing medium at the beginning of operation. Tracer studies showed that recirculation rate of 1 L/h resulted in a plug-flow pattern in the packed bed of the reactor. On the other hand, recirculation rate of 15 L/h, which was equivalent to recirculating the reactor liquor five times per hour, provided effective mixing in the packed bed. Superior performance of ABR3 was attributed to the effective recirculation of reactor liquor, which diluted and distributed the influent, particularly the oil and grease components.
机译:四个处理高强度食品加工废水(10 g化学需氧量[COD] / L)的3-L好氧生物膜反应器(ABR1、2、3和4)的反应器液体再循环速率为1.3分别为15和30 L / h。在2.0 g COD / L / d及以下的水力负荷下,就ABR1,2和3的COD去除率而言,处理性能相似。在较高的有机负荷下,ABR3的COD去除率是ABR1和2的两倍以上。ABR3可以在最大有机负荷下运行,其最大有机负荷是ABR1和2的两倍。操作开始时会从包装介质中脱落。示踪剂研究表明,以1 L / h的再循环速度在反应器填充床中产生活塞流模式。另一方面,相当于每小时将反应液循环五次的15 L / h的循环速度可在填充床中提供有效的混合。 ABR3的卓越性能归因于反应器液的有效再循环,该反应器液稀释并分配了进水,特别是油脂成分。

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