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Preliminary study of Shortcut Nitrification and Denitrification Using Immobilized of Mixed Activated Sludge and Denitrifying Sludge

机译:混合活性污泥固定化和反硝化污泥的捷径硝化与脱氮的初步研究

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Biological removal of nitrogen in artificial domestic water was investigated using immobilized microbes, which were activated sludge and denitrifying sludge directly entrapped in polyvinylalcohol (PVA) gel beads in a suspended bead reactor (SBR). Immobilization was transformed into bioaugmented processes to enhance the removal efficiency to pollutants. Optimal environment should be provided for the bioaugmented bacteria during systems'start-up. In the present research, proper dissolved oxygen (DO) concentration, pH, and temperature were controled as a crucial environmental factor on the performances of the immobilized systems. Results showed that the system was efficient in CODCr removal with TN removal efficiency over 85%. This was the first attempt to evaluate the characters of immobilized sludge system in which shortcut nitrification and denitrification occurred.
机译:采用固定的微生物研究人造水中氮在人造水中的生物除去,其在悬浮珠反应器(SBR)中,在聚氯乙醇(PVA)凝胶珠中直接捕获的活性污泥和直接捕获的污泥。将固定化转化成生物沉积的方法,以增强污染物的去除效率。在Systems'Tart-Up期间,应为生物沉积细菌提供最佳环境。在本研究中,将适当的溶解氧(DO)浓度,pH和温度作为固定化系统性能的关键环境因素被控制。结果表明,该系统在CODCR中具有高效,TN去除效率超过85%。这是第一次评估固定化污泥系统的特征的尝试,其中发生了快捷硝化和反硝化。

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