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Boosting nitrification by membrane-attached biofilm

机译:通过膜附着生物膜促进硝化作用

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摘要

Nitrification is a key step for reliable biological nitrogen removal. In order to enhance nitrification in the activated sludge (AS) process, membrane-attached biofilm (MAB) was incorporated in a conventional activated sludge tank. Simultaneous organic carbon removal and nitrification of the MAB incorporated activated sludge (AS + MAB) process was investigated with continuous wastewater treatment. The effluent TOC concentration of AS and the AS + MAB processes were about 6.3 mg/L and 7.9 mg/L, respectively. The TOC removal efficiency of both AS and AS + MAB were above 95% during the wastewater treatment, indicating excellent organic carbon removal performance in both processes. Little nitrification occurred in the AS process. On the contrary, successful nitrification was obtained with the AS + MAB process with nitrification efficiency of about 90%. The volumetric and surface nitrification rates were about 0.14 g/Ld and 6.5 g/m(2)d, respectively. The results clearly demonstrated that nitrification in the conventional AS process was boosted by MAR Furthermore, the microfaunal population in the AS + MAB process was different from that in the AS process. The high concentration of rotifers in the AS + MAB process was expected to decrease the generation of excess sludge in the process.
机译:硝化是可靠的生物脱氮的关键步骤。为了增强活性污泥(AS)工艺中的硝化作用,将膜附着生物膜(MAB)纳入了常规的活性污泥罐中。通过连续的废水处理,研究了掺入MAB的活性污泥(AS + MAB)工艺的同时去除有机碳和硝化的过程。 AS和AS + MAB工艺的出水TOC浓度分别约为6.3 mg / L和7.9 mg / L。在废水处理过程中,AS和AS + MAB的TOC去除效率均高于95%,这表明这两个过程均具有出色的有机碳去除性能。在AS过程中很少发生硝化作用。相反,通过AS + MAB工艺获得了成功的硝化作用,硝化效率约为90%。体积和表面硝化速率分别为约0.14 g / Ld和6.5 g / m(2)d。结果清楚地表明,MAR促进了常规AS工艺中的硝化作用。此外,AS + MAB工艺中的微动物种群与AS工艺中的不同。 AS + MAB工艺中轮虫的高浓度预计会减少该工艺中过量污泥的产生。

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