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Removal of carbon and nutrients from wastewater in a moving bed membrane biofilm reactor: the influence of the sludge retention time

机译:在移动床膜生物膜反应器中去除废水中的碳和养分:污泥保留时间的影响

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摘要

A University of Cape Town (UCT) pilot plant combining both membrane bioreactor (MBR) and moving bed biofilm reactor (MBBR) technology was monitored. Three experimental Phases were carried out by varying the mixed liquor sludge retention time (SRT) (indefinite, 30 and 15 days, respectively). The system performance has been investigated during experiments in terms of: organic carbon, nitrogen and phosphorus removal, biokinetic/stoichiometric constants, membrane fouling tendency and sludge dewaterability.udThe observed results showed that by decreasing the SRT the UCT pilot plant was able to maintain very high total COD removal efficiencies, whilst the biological COD removal efficiency showed a slight decrease. Nitrification was only slightly affected by the decrease of the mixed liquor SRT, showing high performance (as average). This result could be related to the presence of the biofilm able to sustain nitrification throughout experiments. Conversely, the average P removal efficiency was quite moderate, likely due to the increase of the ammonium loading rate that could promote an increased NO3-N recycled from the anoxic to the anaerobic tank, interfering with phosphorus accumulating organisms (PAOs) activity inside the anaerobic tank. Membrane fouling increased at 30 days SRT likely due to a reduction of protective cake pre-filter effect. Moreover, it was noticed the increase of the resistance due to pore blocking and a general worsening of the membrane filtration properties.
机译:开普敦大学(UCT)中试工厂结合了膜生物反应器(MBR)和移动床生物膜反应器(MBBR)技术进行了监控。通过更改混合液污泥的保留时间(SRT)(分别为30天和15天),进行了三个实验阶段。实验过程中对系统性能进行了以下研究:有机碳,氮和磷的去除,生物动力学/化学计量常数,膜结垢趋势和污泥的脱水性。 ud观察到的结果表明,通过降低SRT,UCT中试装置能够保持总的COD去除效率非常高,而生物COD去除效率则略有下降。硝化作用仅受混合液SRT降低的轻微影响,表现出较高的性能(平均)。该结果可能与整个实验过程中能够维持硝化作用的生物膜的存在有关。相反,平均磷去除效率相当适中,这可能是由于铵加载速率的提高可能促进从厌氧槽再循环到厌氧池的NO3-N的增加,从而干扰了厌氧池中的磷累积生物(PAOs)活性。罐。 SRT在30天时膜污染增加,可能是由于保护性滤饼的预过滤效果降低所致。此外,已经注意到由于孔阻塞和膜过滤性能的普遍恶化而导致的阻力增加。

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